Barley grain, dryland, Western Downs and NW Slopes and Plains, NSW_Qld, at farm {AU}|_obsolete | AusLCI, U

Unit process Australia v00.00.000

Included processes: The inventory includes the processes for growing barley without irrigation on arable land in the agro-ecological region AER 15, Western Downs and North West Slopes and Plains, in New South Wales and QueenslandInputs of fertilisers, pesticides as well as the transports to the farm are considered. All tractor operations, fuel supply and machine infrastructure is included. The direct emissions on the field are also included. The system boundary ends at the field gate with all further processes such as transport, storage, packaging are excluded. Inventory refers to the production of a crop on 1 ha over 1 year from the end of the previous crop to the point of harvesting of the next crop. Remark: This inventory has been developed with support from the Australian Commonwealth Government through the National Landcare Programme Innovation Grant and the Grains Research and Development Corporation (GRDC). The inventory was developed by CSIRO, the Department of Primary Industries NSW and Lifecycles. More detail on inventory development can be found in the Methodology for Developing Life Cycle Inventory' documents located at http://auslci.com.au/index.php/AusAgLCI. ; Geography: Refers to an average production in the agro-ecological region AER 15, Western Downs and North West Slopes and Plains, in New South Wales and Queensland, AustraliaTechnology: AverageTime period: Data collected for 2011-2016. Record: Data entry by: Bharat Sharma; Tel: +61(0)3 8669 2048; email: brett@lifecycles.com.au; company: Life Cycle Strategies; Country: AU Generator: Data entry by: Aaron Simmons Tel: ; email: aaron.simmons@dpi.nsw.gov.au; company: NSW Department of Primary Industries ; Country: AU

Sector
Material
Contributor
—
Last updated
29 May 2017
Reference ID
9d7a51d8-50fd-35f6-a488-5c4e8cad5d6d

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Documentation

Quantitative reference
Barley grain, dryland, Western Downs and NW Slopes and Plains, NSW_Qld, at farm {AU}|_obsolete | AusLCI, U
Sampling procedure
Sampling procedure: Face-to-face interviews with regional experts
Creation date
29 May 2017
Is copyright protected
No
Is infrastructure process
No
Tags
material
Sources
—

Product outputs

Flow AmountUnitComment
Barley grain, dryland, Western Downs and NW Slopes and Plains, NSW_Qld, at farm {AU}|_obsolete | AusLCI, U 1920.0 kg —

Technical inputs

Flow AmountUnitComment
Cultivating, broadacre crop, conventional {AU}| | AusLCI, U 0.38 ha Surface x number of times ha is processed
Fertilizing, broadacre crop, pre & post-emergence, conventional {AU}| | AusLCI, U 1.0 ha nb of times ha is processed x surface
Glyphosate {GLO}| market for glyphosate | Cut-off, U 0.44639999999999996 kg Mass glyphosate
Glyphosate {GLO}| market for glyphosate | Cut-off, U 0.72 kg Mass glyphosate
Glyphosate {GLO}| market for glyphosate | Cut-off, U 0.72 kg Mass glyphosate
Grain collection, broadacre, in-field with tractor and bin, conventional {AU}| | AusLCI, U 1.0 ha nb of times ha is processed x surface
Harvesting, broadacre crop, combine less than 200kW, conventional {AU}| | AusLCI, U 1.0 ha nb of times ha is processed x surface
Monoammonium phosphate {AU}| market for monoammonium phosphate | AusLCI, U 41.0 kg mass monoammonium phosphate
Pesticide, unspecified {GLO}| market for pesticide, unspecified | Cut-off, U 0.003 kg mass metsulfuron-methyl
Pesticide, unspecified {GLO}| market for pesticide, unspecified | Cut-off, U 0.4 kg mass paraquat
Pesticide, unspecified {GLO}| market for pesticide, unspecified | Cut-off, U 1.875 kg sum of mass 2,4-D
Pesticide, unspecified {GLO}| market for pesticide, unspecified | Cut-off, U 0.798 kg mass MCPA
Pesticide, unspecified {GLO}| market for pesticide, unspecified | Cut-off, U 0.9375 kg mass 2,4-D
Pesticide, unspecified {GLO}| market for pesticide, unspecified | Cut-off, U 0.045 kg mass clopyralid
Pesticide, unspecified {GLO}| market for pesticide, unspecified | Cut-off, U 0.0999 kg mass fluroxypyr
Pesticide, unspecified {GLO}| market for pesticide, unspecified | Cut-off, U 0.1247 kg mass tebuconazole
Planting, broadacre crop, soil clay content greater than 20%, conventional {AU}| | AusLCI, U 1.0 ha nb of times ha is processed x surface
Spraying, broadacre crop, pre & post-emergence, conventional {AU}| | AusLCI, U 5.0 ha nb of times ha is processed x surface
Transport, truck, 28t, fleet average {AU}| | AusLCI, U 28495.61999999999 kg*km total mass of ingredients supplied to farm x average supply distance
Urea {AU}| market for urea | AusLCI, U 91.0 kg mass urea

Elementary flow inputs

Flow Sub-compartment AmountUnitComment
Carbon dioxide, in air in air 5695.453866666667 kg atmospheric CO2 absorbed by the plant yield * drymatter content of crop * carbon content of crop + plant residue x dry matter content of residue x carbon content of residue all multiplied by carbon to carbon dioxide conversion factor
Occupation, annual crop, non-irrigated land 1.0 ha*a Actual land used for the cropping
Occupation, annual crop, non-irrigated, fallow land 0.19999999999999996 ha*a Crop fallow as a part of crop rotation allocated across all crops in the rotation

Elementary flow outputs

Flow CompartmentSub-compartment AmountUnitComment
2,4-D Emissions to waterriver 0.002332576929375 kg mass of active ingredient 2,4-D applied x fraction released off field and redeposited to freshwater - Primary partitioning from PestLCI
2,4-D Emissions to watergroundwater 0.0 kg mass of active ingredient 2,4-D applied x fraction released off field and redeposited to freshwater - Primary partitioning from PestLCI
2,4-D Emissions to waterriver 0.0011662884646875 kg mass of active ingredient 2,4-D applied x fraction released off field and redeposited to freshwater - Primary partitioning from PestLCI
2,4-D Emission to soilagricultural 0.8638882548215625 kg mass of active ingredient 2,4-D applied x fraction released off field and redeposited to other agricultural land and fraction reaching soil - Primary partitioning from PestLCI
2,4-D Emission to airunspecified 0.009375 kg mass of active ingredient 2,4-D applied x fraction released in air - Primary partitioning from PESTLCI
2,4-D Emission to airunspecified 0.01875 kg mass of active ingredient 2,4-D applied x fraction released in air - Primary partitioning from PESTLCI
2,4-D Emissions to soilforestry 0.1261409134275 kg mass of active ingredient 2,4-D applied x fraction released off field and redeposited to natural land - Primary partitioning from PestLCI
2,4-D Emissions to soilforestry 0.06307045671375 kg mass of active ingredient 2,4-D applied x fraction released off field and redeposited to natural land - Primary partitioning from PestLCI
2,4-D Emission to soilagricultural 1.727776509643125 kg mass of active ingredient 2,4-D applied x fraction released off field and redeposited to other agricultural land and fraction reaching soil - Primary partitioning from PestLCI
2,4-D Emissions to watergroundwater 0.0 kg mass of active ingredient 2,4-D applied x fraction released off field and redeposited to freshwater - Primary partitioning from PestLCI
2-Methyl-4-chlorophenoxyacetic acid Emission to waterriver 0.000992744741142 kg mass of active ingredient MCPA applied x fraction released off field and redeposited to freshwater - Primary partitioning from PestLCI
2-Methyl-4-chlorophenoxyacetic acid Emissions to soilforestry 0.053685572754744 kg mass of active ingredient MCPA applied x fraction released off field and redeposited to natural land - Primary partitioning from PestLCI
2-Methyl-4-chlorophenoxyacetic acid Emission to waterground water 0.0 kg mass of active ingredient MCPA applied x fraction released off field and redeposited to freshwater - Primary partitioning from PestLCI
Ammonia Emission to airlow population density 5.579544 kg Direct emissions from fertilizers - Ammonia emissions Nitrogen applied x fraction of nitrogen volatilized x conversion factor
Antimony, ion Emissions to airlow. pop. 0.0000078316558848 kg emissions from burning residues = yield x quantity of plant residue x fraction of residues remaining at time of burning x dry matter content x burning efficiency x fraction burnt* emission factor from NPI workbook/1000. (pg 13 Environment Australia, Aggregated Emmissions from Prescribed burning and Wildfires.1999)
Arsenic, ion Emissions to airlow. pop. 0.0000005107601664 kg emissions from burning residues = yield x quantity of plant residue x fraction of residues remaining at time of burning x dry matter content x burning efficiency x fraction burnt* emission factor from NPI workbook/1000. (pg 13 Environment Australia, Aggregated Emmissions from Prescribed burning and Wildfires.1999)
Butadiene Emission to airlow population density 0.00103854567168 kg emissions from burning residues = yield x quantity of plant residue x fraction of residues remaining at time of burning x dry matter content x burning efficiency x fraction burnt* emission factor from NPI workbook/1000. (pg 13 Environment Australia, Aggregated Emmissions from Prescribed burning and Wildfires.1999)
Cadmium (II) Emissions to airlow. pop. 0.0000105557101056 kg emissions from burning residues = yield x quantity of plant residue x fraction of residues remaining at time of burning x dry matter content x burning efficiency x fraction burnt* emission factor from NPI workbook/1000. (pg 13 Environment Australia, Aggregated Emmissions from Prescribed burning and Wildfires.1999)
Cadmium (II) Emissions to soilagricultural 0.0002136 kg mass of metal Cadmium contained in fertilizer x fraction released in soil
Carbon dioxide Emission to airlow population density 0.0 kg Annual soil carbon change. By default the switch is set to 0 to not soil carbon change. To include the value for soil carbon change set the switch to 1. The results still contain significant uncertainty and should be used with extreme care. This value was calculated using APSIM for the agroecological region for the current rotations of crops in this area.
Carbon dioxide, from soil or biomass stock Emission to airlow population density 0.0 kg By default land-use change is not included in the inventory due to high uncertainties in the calculation. However a value from the land-use change calculator developed by Blonk consultants has been included and can be switched on by changing the value of DLUC_switch to 1 calculated average LUC emissions if included
Carbon dioxide, non-fossil Emission to airlow population density 3153.1271552 kg emissions from burning residues - Residue which is not removed, and not burnt is assumed to degrade to biogenic carbon dioxide.
Carbon dioxide, non-fossil Emission to airlow population density 0.0 kg emissions from burning residues = yield x quantity of plant residue x fraction of residues remaining at time of burning x dry matter content x burning efficiency x carbon content x CH4 emission factor x conversion factor
Carbon dioxide, non-fossil Emission to airlow population density 66.73333333333333 kg emissions from urea application - reported as biogenic due to the ecoinvent background process used. Carbon applied with urea x conversion factor
Carbon monoxide Emission to airlow population density 1.2072513024 kg emissions from burning residues = yield x quantity of plant residue x fraction of residues remaining at time of burning x dry matter content x burning efficiency x fraction burnt* emission factor from NPI workbook/1000. (pg 13 Environment Australia, Aggregated Emmissions from Prescribed burning and Wildfires.1999)
Carbon monoxide, non-fossil Emission to airlow population density 1.12660691539968 kg emissions from burning residues = yield x quantity of plant residue x fraction of residues remaining at time of burning x dry matter content x burning efficiency x carbon content x CO emission factor x conversion factor
Chromium (VI) Emissions to airlow. pop. 0.0000052778550528 kg emissions from burning residues = yield x quantity of plant residue x fraction of residues remaining at time of burning x dry matter content x burning efficiency x fraction burnt* emission factor from NPI workbook/1000. (pg 13 Environment Australia, Aggregated Emmissions from Prescribed burning and Wildfires.1999)
Clopyralid Emission to soilagricultural 0.04149169589754 kg mass of active ingredient clopyralid applied x fraction released off field and redeposited to other agricultural land and fraction reaching soil - Primary partitioning from PestLCI
Clopyralid Emissions to watergroundwater 0.0 kg mass of active ingredient clopyralid applied x fraction released off field and redeposited to freshwater - Primary partitioning from PestLCI
Clopyralid Emissions to soilforestry 0.0030027772418399997 kg mass of active ingredient clopyralid applied x fraction released off field and redeposited to natural land - Primary partitioning from PestLCI
Clopyralid Emission to airunspecified 0.00045 kg mass of active ingredient clopyralid applied x fraction released in air - Primary partitioning from PESTLCI
Clopyralid Emissions to waterriver 0.00005552686062 kg mass of active ingredient clopyralid applied x fraction released off field and redeposited to freshwater - Primary partitioning from PestLCI
Cobalt II Emission to airlow population density 0.0000018727872767999998 kg emissions from burning residues = yield x quantity of plant residue x fraction of residues remaining at time of burning x dry matter content x burning efficiency x fraction burnt* emission factor from NPI workbook/1000. (pg 13 Environment Australia, Aggregated Emmissions from Prescribed burning and Wildfires.1999)
Copper, ion Emissions to airlow. pop. 0.0000037455745535999997 kg emissions from burning residues = yield x quantity of plant residue x fraction of residues remaining at time of burning x dry matter content x burning efficiency x fraction burnt* emission factor from NPI workbook/1000. (pg 13 Environment Australia, Aggregated Emmissions from Prescribed burning and Wildfires.1999)
Dinitrogen monoxide Emission to airlow population density 0.01810438490745243 kg Fertilizers leaching - Nitrous oxide emissions Nitrogen applied x fraction of nitrogen available for leaching x fraction of nitrogen leaching x emission factor x conversion factor
Dinitrogen monoxide Emission to airlow population density 0.01550390682456538 kg Indirect emissions from fertilizers - Nitrous oxide emissions Nitrogen applied x fraction of nitrogen volatilized x emission factor x conversion factor
Dinitrogen monoxide Emission to airlow population density 0.033837142857142864 kg Emissions from Mineralisation of N is loss of soil organic matter
Dinitrogen monoxide Emission to airlow population density 0.26716413281184004 kg emissions from residues above ground nitrogen yield x quantity of plant residue x dry matter content x carbon content x nitrogen content x (1-fraction of residues burnt - fraction of residues removed) x emission factor x conversion factor
Dinitrogen monoxide Emission to airlow population density 0.1550390682456538 kg Direct emissions from fertilizers - Nitrous oxide emissions Nitrogen applied x emission factor x conversion factor
Dinitrogen monoxide Emission to airlow population density 0.00129392575488 kg emissions from burning residues = yield x quantity of plant residue x fraction of residues remaining at time of burning x dry matter content x burning efficiency x nitrogen content above ground x N2O emission factor x conversion factor
Fluroxypyr Emission to soilagricultural 0.09205593243378571 kg mass of active ingredient fluroxypyr applied x fraction released off field and redeposited to other agricultural land and fraction reaching soil - Primary partitioning from PestLCI
Fluroxypyr Emissions to soilforestry 0.0067207878674171995 kg mass of active ingredient fluroxypyr applied x fraction released off field and redeposited to natural land - Primary partitioning from PestLCI
Fluroxypyr Emissions to watergroundwater 0.0 kg mass of active ingredient fluroxypyr applied x fraction released off field and redeposited to freshwater - Primary partitioning from PestLCI
Fluroxypyr Emission to airunspecified 0.000999 kg mass of active ingredient fluroxypyr applied x fraction released in air - Primary partitioning from PESTLCI
Fluroxypyr Emissions to waterriver 0.0001242796987971 kg mass of active ingredient fluroxypyr applied x fraction released off field and redeposited to freshwater - Primary partitioning from PestLCI
Glyphosate Emissions to soilforestry 0.048438110756159995 kg mass of active ingredient glyphosate applied x fraction released off field and redeposited to natural land - Primary partitioning from PestLCI
Glyphosate Emission to soilagricultural 0.66346617970296 kg mass of active ingredient glyphosate applied x fraction released off field and redeposited to other agricultural land and fraction reaching soil - Primary partitioning from PestLCI
Glyphosate Emissions to waterriver 0.00089570954088 kg mass of active ingredient glyphosate applied x fraction released off field and redeposited to freshwater - Primary partitioning from PestLCI
Glyphosate Emissions to waterriver 0.00179141908176 kg mass of active ingredient glyphosate applied x fraction released off field and redeposited to freshwater - Primary partitioning from PestLCI
Glyphosate Emissions to waterriver 0.00089570954088 kg mass of active ingredient glyphosate applied x fraction released off field and redeposited to freshwater - Primary partitioning from PestLCI
Glyphosate Emissions to soilforestry 0.048438110756159995 kg mass of active ingredient glyphosate applied x fraction released off field and redeposited to natural land - Primary partitioning from PestLCI
Glyphosate Emissions to watergroundwater 0.0 kg mass of active ingredient glyphosate applied x fraction released off field and redeposited to freshwater - Primary partitioning from PestLCI
Glyphosate Emissions to watergroundwater 0.0 kg mass of active ingredient glyphosate applied x fraction released off field and redeposited to freshwater - Primary partitioning from PestLCI
Glyphosate Emission to soilagricultural 0.66346617970296 kg mass of active ingredient glyphosate applied x fraction released off field and redeposited to other agricultural land and fraction reaching soil - Primary partitioning from PestLCI
Glyphosate Emission to soilagricultural 1.32693235940592 kg mass of active ingredient glyphosate applied x fraction released off field and redeposited to other agricultural land and fraction reaching soil - Primary partitioning from PestLCI
Glyphosate Emission to airunspecified 0.0072 kg mass of active ingredient glyphosate applied x fraction released in air - Primary partitioning from PESTLCI
Glyphosate Emission to airunspecified 0.0144 kg mass of active ingredient glyphosate applied x fraction released in air - Primary partitioning from PESTLCI
Glyphosate Emissions to soilforestry 0.09687622151231999 kg mass of active ingredient glyphosate applied x fraction released off field and redeposited to natural land - Primary partitioning from PestLCI
Glyphosate Emissions to watergroundwater 0.0 kg mass of active ingredient glyphosate applied x fraction released off field and redeposited to freshwater - Primary partitioning from PestLCI
Glyphosate Emission to airunspecified 0.0072 kg mass of active ingredient glyphosate applied x fraction released in air - Primary partitioning from PESTLCI
Lead (II) Emissions to soilagricultural 0.00012801000000000002 kg mass of metal Lead contained in fertilizer x fraction released in soil
Lead (II) Emissions to airlow. pop. 0.000008682922828799999 kg emissions from burning residues = yield x quantity of plant residue x fraction of residues remaining at time of burning x dry matter content x burning efficiency x fraction burnt* emission factor from NPI workbook/1000. (pg 13 Environment Australia, Aggregated Emmissions from Prescribed burning and Wildfires.1999)
MCPA Emission to soilagricultural 0.735341682504114 kg mass of active ingredient MCPA applied x fraction released off field and redeposited to other agricultural land and fraction reaching soil - Primary partitioning from PestLCI
MCPA Emission to airunspecified 0.007980000000000001 kg mass of active ingredient MCPA applied x fraction released in air - Primary partitioning from PESTLCI
Manganese (II) Emissions to airlow. pop. 0.000021513837311999997 kg emissions from burning residues = yield x quantity of plant residue x fraction of residues remaining at time of burning x dry matter content x burning efficiency x fraction burnt* emission factor from NPI workbook/1000. (pg 13 Environment Australia, Aggregated Emmissions from Prescribed burning and Wildfires.1999)
Mercury (II) Emissions to soilagricultural 0.0000004873500000000001 kg mass of metal Mercury contained in fertilizer x fraction released in soil
Mercury (II) Emissions to airlow. pop. 0.0000022132940543999997 kg emissions from burning residues = yield x quantity of plant residue x fraction of residues remaining at time of burning x dry matter content x burning efficiency x fraction burnt* emission factor from NPI workbook/1000. (pg 13 Environment Australia, Aggregated Emmissions from Prescribed burning and Wildfires.1999)
Methane, non-fossil Emission to airlow population density 0.02888426128896 kg emissions from burning residues = yield x quantity of plant residue x fraction of residues remaining at time of burning x dry matter content x burning efficiency x carbon content x CH4 emission factor x conversion factor
Metsulfuron-methyl Emissions to waterriver 0.0000037017907080000005 kg mass of active ingredient metsulfuron-methyl applied x fraction released off field and redeposited to freshwater - Primary partitioning from PestLCI
Metsulfuron-methyl Emissions to soilforestry 0.000200185149456 kg mass of active ingredient metsulfuron-methyl applied x fraction released off field and redeposited to natural land - Primary partitioning from PestLCI
Metsulfuron-methyl Emission to soilagricultural 0.002766113059836 kg mass of active ingredient metsulfuron-methyl applied x fraction released off field and redeposited to other agricultural land and fraction reaching soil - Primary partitioning from PestLCI
Metsulfuron-methyl Emission to airunspecified 0.00003 kg mass of active ingredient metsulfuron-methyl applied x fraction released in air - Primary partitioning from PESTLCI
Metsulfuron-methyl Emissions to watergroundwater 0.0 kg mass of active ingredient metsulfuron-methyl applied x fraction released off field and redeposited to freshwater - Primary partitioning from PestLCI
NMVOC, non-methane volatile organic compounds Emissions to airlow. pop. 0.065746905928704 kg emissions from burning residues = yield x quantity of plant residue x fraction of residues remaining at time of burning x dry matter content x burning efficiency x carbon content x NMVOC emission factor x conversion factor
Nickel (II) Emissions to airlow. pop. 0.0000030645609983999995 kg emissions from burning residues = yield x quantity of plant residue x fraction of residues remaining at time of burning x dry matter content x burning efficiency x fraction burnt* emission factor from NPI workbook/1000. (pg 13 Environment Australia, Aggregated Emmissions from Prescribed burning and Wildfires.1999)
Nitrate Emission to waterriver 6.754333829785149 kg Fertilizers leaching - Nitrous oxide emissions Nitrogen applied x fraction of nitrogen available for leaching x fraction of nitrogen leaching from NIR x (1-nitrogen reemitted to air) x conversion factor
Nitrogen oxides Emission to airlow population density 0.07476321584793601 kg emissions from burning residues = yield x quantity of plant residue x fraction of residues remaining at time of burning x dry matter content x burning efficiency x nitrogen content above ground x NOx emission factor x conversion factor
Nitrogen oxides Emission to airlow population density 0.034205453568 kg emissions from burning residues = yield x quantity of plant residue x fraction of residues remaining at time of burning x dry matter content x burning efficiency x fraction burnt* emission factor from NPI workbook/1000. (pg 13 Environment Australia, Aggregated Emmissions from Prescribed burning and Wildfires.1999)
Nitrogen, atmospheric Emissions to airlow. pop. 11.78 kg Amount calcualted from APSIM runs for full rotation in AER.
Paraquat Emission to airunspecified 0.004 kg mass of active ingredient paraquat applied x fraction released in air - Primary partitioning from PESTLCI
Paraquat Emission to soilagricultural 0.36859232205720005 kg mass of active ingredient paraquat applied x fraction released off field and redeposited to other agricultural land and fraction reaching soil - Primary partitioning from PestLCI
Paraquat Emissions to waterriver 0.0004976164116000001 kg mass of active ingredient paraquat applied x fraction released off field and redeposited to freshwater - Primary partitioning from PestLCI
Paraquat Emissions to soilforestry 0.0269100615312 kg mass of active ingredient paraquat applied x fraction released off field and redeposited to natural land - Primary partitioning from PestLCI
Paraquat Emissions to watergroundwater 0.0 kg mass of active ingredient paraquat applied x fraction released off field and redeposited to freshwater - Primary partitioning from PestLCI
Particulates, < 10 um Emission to airlow population density 0.1702533888 kg emissions from burning residues = yield x quantity of plant residue x fraction of residues remaining at time of burning x dry matter content x burning efficiency x fraction burnt* emission factor from NPI workbook/1000. (pg 13 Environment Australia, Aggregated Emmissions from Prescribed burning and Wildfires.1999)
Phosphate Emission to watersurface water 0.02501746321620819 kg P run-off to surface waters ecoinvent report on agriculture
Phosphate Emission to waterground water 0.028644797981520004 kg Phosphorus leaching to ground water 0.07kg P per ha.a as phosphate PO4 - Ecoinvent report on agriculture
Phosphorus Emission to waterriver 0.00926404258514158 kg P emissions through erosion by water to surface waters ecoinvent report on agriculture
Selenium IV Emission to airlow population density 0.000000851266944 kg emissions from burning residues = yield x quantity of plant residue x fraction of residues remaining at time of burning x dry matter content x burning efficiency x fraction burnt* emission factor from NPI workbook/1000. (pg 13 Environment Australia, Aggregated Emmissions from Prescribed burning and Wildfires.1999)
Soil loss by erosion into water Emissions to water— 5086.466560996457 kg [kg ha-1 y-1] Average annual soil erosions to water in kg ha-1 y-1. Based on Revised universal soil loss equation (RUSLE) (Teng. Viscarra etal 2016) forAER16_Brisbane_Moreton; QLD
TOC, Total Organic Carbon Emissions to airlow. pop. 0.11608185599999998 kg emissions from burning residues = yield x quantity of plant residue x fraction of residues remaining at time of burning x dry matter content x burning efficiency x fraction burnt* emission factor from NPI workbook/1000. (pg 13 Environment Australia, Aggregated Emmissions from Prescribed burning and Wildfires.1999)
Tebuconazole Emissions to soilforestry 0.008321029379054401 kg mass of active ingredient tebuconazole applied x fraction released off field and redeposited to natural land - Primary partitioning from PestLCI
Tebuconazole Emissions to waterriver 0.0001538711004292 kg mass of active ingredient tebuconazole applied x fraction released off field and redeposited to freshwater - Primary partitioning from PestLCI
Tebuconazole Emission to soilagricultural 0.11497809952051641 kg mass of active ingredient tebuconazole applied x fraction released off field and redeposited to other agricultural land and fraction reaching soil - Primary partitioning from PestLCI
Tebuconazole Emissions to watergroundwater 0.0 kg mass of active ingredient tebuconazole applied x fraction released off field and redeposited to freshwater - Primary partitioning from PestLCI
Tebuconazole Emission to airunspecified 0.001247 kg mass of active ingredient tebuconazole applied x fraction released in air - Primary partitioning from PESTLCI
Zinc (II) Emissions to airlow. pop. 0.000014301284659199999 kg emissions from burning residues = yield x quantity of plant residue x fraction of residues remaining at time of burning x dry matter content x burning efficiency x fraction burnt* emission factor from NPI workbook/1000. (pg 13 Environment Australia, Aggregated Emmissions from Prescribed burning and Wildfires.1999)
hydrogen ions Emissions to soilagricultural 0.768083215697608 kg Acidity added due to entire crop system Crops addition, fertiliser addition, imported crop addition and addition from lime

Parameters

NameValueFormulaDescription
EFburn_N2O 0.0076 — (2,3,2,3,1,na) - Emission factor from crop residues burning for N2O - National Inventory Report 2014, Vol 1 (2016)
PestLCIAir_AI_1661_I000_M09_A06_DR0 0.01 — (2,3,2,3,1,na) - Primary partitioning fraction of AlSubstance released to Air. Calculated using consensus model based on PEST LCI.
RUSLE_P 1.0 — (1,3,3,1,1,na) - [] Revised universal soil loss equation (RUSLE). P = Practice factor (Teng, Viscarra etal 2016). Data derrived from GIS layer provided with the paper for the AER
PestLCISoilII_AI_0998_I000_M02_A03_DR0 — — (2,3,2,3,1,na) - Partitioning fraction accouting both primary and secondary processes for AlSubstance remaing on field soil. Calculated using consensus model based on PEST LCI.
EF_Cadmium 0.000682 — (3,1,5,3,2,na) - [g/kg] emission factor from NPI workbook/1000. (pg 13 Environment Australia, Aggregated Emmissions from Prescribed burning and Wildfires.1999)
PestDefaultSoil_AI_1661_I000_M09_A06_DR0 1.0 — (2,3,2,3,1,na) - Default fraction of AlSubstance released in soil.
PestLCIDegrII_AI_0942_I000_M04_A03_DR0 — — (2,3,2,3,1,na) - Partitioning fraction accouting both primary and secondary processes for AlSubstance degradation. Calculated using consensus model based on PEST LCI.
PestLCIGWII_AI_1661_I000_M09_A06_DR0 — — (2,3,2,3,1,na) - Partitioning fraction accouting both primary and secondary processes for AlSubstance released to groundwater Calculated using consensus model based on PEST LCI.
AF_MAP0L 0.074 — (2,2,2,2,1,na) - Acid Factor in kMol/kg N in Mono Ammonium Phosphate. Based on Upjohn, Fenton & Conyers (2005)
PestLCICrop_AI_0068_I000_M01_A03_DR0 — — (2,3,2,3,1,na) - Primary partitioning fraction of pesticide deposited on crop. Calculated using consensus model based on PEST LCI. - 2,4-D
fracOffField_AI_0942_I000_M04_A03_DR0 0.16156377 (1-Switch_PestSP)*PestLCIOF_AI_0942_I000_M04_A03_DR0+Switch_PestSP*PestLCIOFII_AI_0942_I000_M04_A03_DR0 fraction released Off Field - data from PESTLCI - fluroxypyr
Nb_Spraying 5.0 — (2,3,1,1,1,na) - Number of times the field is processed with Spraying, pre & post-emergence
NAAR_Cropimport — 0 kg H+ accounts and nitrogen irons imported with other biogenic material such as stubble or compost from outside the field
fracGW_AI_1391_I000_M03_A03_DR0 — Switch_PestSP*PestLCIGWII_AI_1391_I000_M03_A03_DR0 fraction reaching ground water - data from PESTLCI - paraquat
PestDefaultSoil_AI_0540_I000_M01_A06_DR0 1.0 — (2,3,2,3,1,na) - Default fraction of AlSubstance released in soil.
EFsoilCminN2ON 0.002 — (1,3,2,1,1,na) - (Gg N2O-N/Gg N) Emission factor for N mineralisation due to SOC change in cropping. National Inventory Report 2014, Vol 1 (2016), pg 298
fracGW_AI_1266_I000_M08_A06_DR0 — Switch_PestSP*PestLCIGWII_AI_1266_I000_M08_A06_DR0 fraction reaching ground water - data from PESTLCI - metsulfuron-methyl
PestLCIAir_AI_0998_I000_M03_A03_DR0 0.01 — (2,3,2,3,1,na) - Primary partitioning fraction of pesticide released to Air. Calculated using consensus model based on PEST LCI. - glyphosate
PestLCIGWII_AI_0998_I000_M01_A03_DR0 — — (2,3,2,3,1,na) - Partitioning fraction accouting both primary and secondary processes for pesticide released to groundwater Calculated using consensus model based on PEST LCI. - glyphosate
PestLCISoilII_AI_0998_I000_M01_A03_DR0 — — (2,3,2,3,1,na) - Partitioning fraction accouting both primary and secondary processes for pesticide remaing on field soil. Calculated using consensus model based on PEST LCI. - glyphosate
fracOffField_AI_0540_I000_M01_A06_DR0 0.16025068 (1-Switch_PestSP)*PestLCIOF_AI_0540_I000_M01_A06_DR0+Switch_PestSP*PestLCIOFII_AI_0540_I000_M01_A06_DR0 fraction released Off Field - data from PESTLCI - clopyralid
FracWet 0.111441013 — (1,3,2,1,1,na) - Fraction of area of AER where leaching occurs i.e. evapo-transpiration:rainfall ratio is <0.8 or >1. Climate data sourced from the Soil and Landscape Grid of Australia
fracSoil_AI_1266_I000_M08_A06_DR0 0.82974932 (1-Switch_PestSP)*PestLCISoil_AI_1266_I000_M08_A06_DR0+Switch_PestSP*PestLCISoilII_AI_1266_I000_M08_A06_DR0 default fraction released in soil - metsulfuron-methyl
fracAir_AI_1661_I000_M09_A06_DR0 0.01 (1-Switch_PestSP)*PestLCIAir_AI_1661_I000_M09_A06_DR0+Switch_PestSP*PestLCIAirII_AI_1661_I000_M09_A06_DR0 fraction released in air - data from PESTLCI - tebuconazole
PestLCIAir_AI_0540_I000_M01_A06_DR0 0.01 — (2,3,2,3,1,na) - Primary partitioning fraction of AlSubstance released to Air. Calculated using consensus model based on PEST LCI.
fracOffField_AI_1391_I000_M03_A03_DR0 0.16156377 (1-Switch_PestSP)*PestLCIOF_AI_1391_I000_M03_A03_DR0+Switch_PestSP*PestLCIOFII_AI_1391_I000_M03_A03_DR0 fraction released Off Field - data from PESTLCI - paraquat
RUSLE_R 1553.474452 — (1,3,3,1,1,na) - [MJ mm ha-1 hr-1 y-1] Revised universal soil loss equation (RUSLE). R= Rainfail - runoff erosivity factor MJ mm ha-1 hr-1 y-1, (Teng, Viscarra etal 2016). Data derrived from GIS layer provided with the paper for the AER
Frac_Min_till 0.1 — (3,1,1,1,1,na) - From GRDC farm survery
M_AI_0540_I000_M01_A06_DR0 0.045 — (3,3,1,1,1,na) - applied month January with leaf interception of Stage I and drift reduction method None and application method Crops >20cm (DE, Ganzelmeier-Rautmann).
PestLCIAir_AI_1176_I000_M07_A03_DR0 0.01 — (2,3,2,3,1,na) - Primary partitioning fraction of AlSubstance released to Air. Calculated using consensus model based on PEST LCI.
fracCrop_AI_0998_I000_M03_A03_DR0 — (1-Switch_PestSP)*PestLCICrop_AI_0998_I000_M03_A03_DR0+Switch_PestSP*PestLCICropII_AI_0998_I000_M03_A03_DR0 fraction remaining on crop - data from PESTLCI - glyphosate
PestLCISoil_AI_0998_I000_M01_A03_DR0 0.82843623 — (2,3,2,3,1,na) - Primary partitioning fraction of pesticide deposited to agricultural soil on the field of application. Calculated using consensus model based on PEST LCI. - glyphosate
fracAir_AI_0998_I000_M03_A03_DR0 0.01 (1-Switch_PestSP)*PestLCIAir_AI_0998_I000_M03_A03_DR0+Switch_PestSP*PestLCIAirII_AI_0998_I000_M03_A03_DR0 fraction released in air - data from PESTLCI - glyphosate
M_AI_0068_I000_M02_A03_DR0_2 0.9375 — (3,3,1,1,1,na) - applied month February with leaf interception of Stage I and drift reduction method None and application method Bare soil & crops <20cm (DE, Ganzelmeier&Rautmann).
PestLCIGWII_AI_0998_I000_M03_A03_DR0 — — (2,3,2,3,1,na) - Partitioning fraction accouting both primary and secondary processes for pesticide released to groundwater Calculated using consensus model based on PEST LCI. - glyphosate
Soil_C_Change_Switch — — By default the switch is set to 0 to not soil carbon change. To include the value for soil carbon change set the switch to 1. The results still contain significant uncertainty and should be used with extreme care.
PestLCICrop_AI_0998_I000_M03_A03_DR0 — — (2,3,2,3,1,na) - Primary partitioning fraction of pesticide deposited on crop. Calculated using consensus model based on PEST LCI. - glyphosate
fracOffField_AI_1661_I000_M09_A06_DR0 0.16025068 (1-Switch_PestSP)*PestLCIOF_AI_1661_I000_M09_A06_DR0+Switch_PestSP*PestLCIOFII_AI_1661_I000_M09_A06_DR0 fraction released Off Field - data from PESTLCI - tebuconazole
fracSoil_AI_1391_I000_M03_A03_DR0 0.82843623 (1-Switch_PestSP)*PestLCISoil_AI_1391_I000_M03_A03_DR0+Switch_PestSP*PestLCISoilII_AI_1391_I000_M03_A03_DR0 default fraction released in soil - paraquat
EF_Copper 0.000242 — (3,1,5,3,2,na) - [g/kg] emission factor from NPI workbook/1000. (pg 13 Environment Australia, Aggregated Emmissions from Prescribed burning and Wildfires.1999)
PestDefaultSoil_AI_1176_I000_M07_A03_DR0 1.0 — (2,3,2,3,1,na) - Default fraction of AlSubstance released in soil.
PestLCICrop_AI_1266_I000_M08_A06_DR0 — — (2,3,2,3,1,na) - Primary partitioning fraction of AlSubstance deposited on crop. Calculated using consensus model based on PEST LCI.
M_lime — — (3,3,2,2,2,na) - [kg] limestone (adjusted to account for purity: 900 g/kg)
fracAir_AI_0942_I000_M04_A03_DR0 0.01 (1-Switch_PestSP)*PestLCIAir_AI_0942_I000_M04_A03_DR0+Switch_PestSP*PestLCIAirII_AI_0942_I000_M04_A03_DR0 fraction released in air - data from PESTLCI - fluroxypyr
PestLCIGWII_AI_1266_I000_M08_A06_DR0 — — (2,3,2,3,1,na) - Partitioning fraction accouting both primary and secondary processes for AlSubstance released to groundwater Calculated using consensus model based on PEST LCI.
PestLCICropII_AI_1391_I000_M03_A03_DR0 — — (2,3,2,3,1,na) - Partitioning fraction accouting both primary and secondary processes for AlSubstance remaing on plant leaf. Calculated using consensus model based on PEST LCI.
fracS_Hg 1.0 — (2,3,2,3,1,na) - Fraction of heavy metals from fertilizers released in soil
PestLCISoil_AI_0998_I000_M03_A03_DR0 0.82843623 — (2,3,2,3,1,na) - Primary partitioning fraction of pesticide deposited to agricultural soil on the field of application. Calculated using consensus model based on PEST LCI. - glyphosate
PestLCIAirII_AI_0942_I000_M04_A03_DR0 — — (2,3,2,3,1,na) - Partitioning fraction accouting both primary and secondary processes for AlSubstance released to air. Calculated using consensus model based on PEST LCI.
PestLCIAirII_AI_1661_I000_M09_A06_DR0 0.01 — (2,3,2,3,1,na) - Partitioning fraction accouting both primary and secondary processes for AlSubstance released to air. Calculated using consensus model based on PEST LCI.
RUSLE_LS 9.752859 — (1,3,3,1,1,na) - [] Revised universal soil loss equation (RUSLE). L = Slope length factor and S is slope steepness factor. (Teng, Viscarra etal 2016). Data derrived from GIS layer provided with the paper for the AER
Frac_No_till 0.76 — (3,1,1,1,1,na) - From GRDC farm survery
PestLCIOF_AI_0068_I000_M01_A03_DR0 0.16156377 — (2,3,2,3,1,na) - Primary partitioning fraction of pesticide deposited outside the field of application. Calculated using consensus model based on PEST LCI. - 2,4-D
AF_Urea100L 0.072 — (2,2,2,2,1,na) - Acid Factor in kMol/kg N in Urea. Based on Upjohn, Fenton & Conyers (2005)
PestLCIDegrII_AI_0068_I000_M02_A03_DR0 — — (2,3,2,3,1,na) - Partitioning fraction accouting both primary and secondary processes for AlSubstance degradation. Calculated using consensus model based on PEST LCI.
PestLCICropII_AI_1266_I000_M08_A06_DR0 — — (2,3,2,3,1,na) - Partitioning fraction accouting both primary and secondary processes for AlSubstance remaing on plant leaf. Calculated using consensus model based on PEST LCI.
PestLCISoil_AI_0540_I000_M01_A06_DR0 0.82974932 — (2,3,2,3,1,na) - Primary partitioning fraction of AlSubstance deposited to agricultural soil on the field of application. Calculated using consensus model based on PEST LCI.
M_tot_supply 142.47809999999996 M_MAP+M_Urea+M_AI_0998_I000_M01_A03_DR0+M_AI_0068_I000_M01_A03_DR0+M_AI_0540_I000_M01_A06_DR0+M_AI_0998_I000_M02_A03_DR0_1+M_AI_0068_I000_M02_A03_DR0_1+M_AI_0998_I000_M03_A03_DR0+M_AI_1391_I000_M03_A03_DR0+M_AI_0998_I000_M02_A03_DR0_2+M_AI_0068_I000_M02_A03_DR0_2+M_AI_0942_I000_M04_A03_DR0+M_AI_1176_I000_M07_A03_DR0+M_AI_1266_I000_M08_A06_DR0+M_AI_1661_I000_M09_A06_DR0+M_AI_0998_I000_M02_A03_DR0+M_AI_0068_I000_M02_A03_DR0 [kg] products transported to the farm gate
DM_crop 0.88 DM_barley_Crop dry matter content of barley crop - set same as value for residue based on National Inventory Report 2014, Vol 1 (2016)
NCag_residue 0.007 NCag_barley_Resi N content of above-ground crop residues for barley residues - National Inventory Report 2014, Vol 1 (2016)
EFburn_NMVOC 0.0091 — (2,3,2,3,1,na) - Emission factor from crop residues burning for NMVOC - National Inventory Report 2014, Vol 1 (2016)
fracOffField_AI_0068_I000_M01_A03_DR0 0.16156377 (1-Switch_PestSP)*PestLCIOF_AI_0068_I000_M01_A03_DR0+Switch_PestSP*PestLCIOFII_AI_0068_I000_M01_A03_DR0 fraction released Off Field - data from PESTLCI - 2
PestDefaultSoil_AI_0942_I000_M04_A03_DR0 1.0 — (2,3,2,3,1,na) - Default fraction of AlSubstance released in soil.
C_in_urea 0.2 — (2,3,3,1,1,na) - C content in urea
PestLCISoilII_AI_0068_I000_M02_A03_DR0 — — (2,3,2,3,1,na) - Partitioning fraction accouting both primary and secondary processes for AlSubstance remaing on field soil. Calculated using consensus model based on PEST LCI.
RUSLE_C 0.012436 — (1,3,3,1,1,na) - []Revised universal soil loss equation (RUSLE). C = COverf factor (Teng, Viscarra etal 2016). Data derrived from GIS layer provided with the paper for the AER
fracGW_AI_1176_I000_M07_A03_DR0 — Switch_PestSP*PestLCIGWII_AI_1176_I000_M07_A03_DR0 fraction reaching ground water - data from PESTLCI - MCPA
Switch_PestLCI 1.0 — if = 1, switch to use PestLCI values
M_AI_1266_I000_M08_A06_DR0 0.003 — (3,3,1,1,1,na) - applied month August with leaf interception of Stage II and drift reduction method None and application method Crops >20cm (DE, Ganzelmeier-Rautmann).
Yield 1970.0 — (2,2,1,1,1,na) - [kg/ha] yield
PestLCIOFII_AI_1176_I000_M07_A03_DR0 0.16156377 — (2,3,2,3,1,na) - Partitioning fraction accouting both primary and secondary processes for AlSubstance deposited outside the field. Calculated using consensus model based on PEST LCI.
FracRainb600mm 0.794092308 0.794092308 percentage of cultivation area with rainfall <600mm = 0.3 - source: climate data source fromQueensland Government, 2016
PestLCISoilII_AI_1391_I000_M03_A03_DR0 — — (2,3,2,3,1,na) - Partitioning fraction accouting both primary and secondary processes for AlSubstance remaing on field soil. Calculated using consensus model based on PEST LCI.
CC_barley_Crop 0.4 — (2,3,3,1,1,na) - Carbon mass fraction in dry matter for barley crop - set same as value for residue based on National Inventory Report 2014, Vol 1 (2016)
fracGW_AI_0942_I000_M04_A03_DR0 — Switch_PestSP*PestLCIGWII_AI_0942_I000_M04_A03_DR0 fraction reaching ground water - data from PESTLCI - fluroxypyr
PestLCISoil_AI_1266_I000_M08_A06_DR0 0.82974932 — (2,3,2,3,1,na) - Primary partitioning fraction of AlSubstance deposited to agricultural soil on the field of application. Calculated using consensus model based on PEST LCI.
EF_Manganese 0.00139 — (3,1,5,3,2,na) - [g/kg] emission factor from NPI workbook/1000. (pg 13 Environment Australia, Aggregated Emmissions from Prescribed burning and Wildfires.1999)
PestLCICrop_AI_0942_I000_M04_A03_DR0 — — (2,3,2,3,1,na) - Primary partitioning fraction of AlSubstance deposited on crop. Calculated using consensus model based on PEST LCI.
PestLCIOF_AI_1391_I000_M03_A03_DR0 0.16156377 — (2,3,2,3,1,na) - Primary partitioning fraction of AlSubstance deposited outside the field of application. Calculated using consensus model based on PEST LCI.
Frac_Multi_till 0.14 — (3,1,1,1,1,na) - From GRDC farm survery
PestLCIDegrII_AI_1266_I000_M08_A06_DR0 0.0444862 — (2,3,2,3,1,na) - Partitioning fraction accouting both primary and secondary processes for AlSubstance degradation. Calculated using consensus model based on PEST LCI.
M_AI_1391_I000_M03_A03_DR0 0.4 — (3,3,1,1,1,na) - applied month March with leaf interception of Stage I and drift reduction method None and application method Bare soil & crops <20cm (DE, Ganzelmeier&Rautmann).
EF_Particulate_matter 11.0 — (3,1,5,3,2,na) - [g/kg] emission factor from NPI workbook/1000. (pg 13 Environment Australia, Aggregated Emmissions from Prescribed burning and Wildfires.1999)
Cd_in_Urea 0.5 — (2,3,2,3,1,na) - mg/kg Cadmium content - Vic DPI fertiliser survey 2008-09
fracS_Pb 1.0 — (2,3,2,3,1,na) - Fraction of heavy metals from fertilizers released in soil
PestLCIAirII_AI_0998_I000_M02_A03_DR0 — — (2,3,2,3,1,na) - Partitioning fraction accouting both primary and secondary processes for AlSubstance released to air. Calculated using consensus model based on PEST LCI.
EFN_DS_nonirrc_a600mm 0.0085 — (1,3,2,1,1,na) - kgN2O-N/kgN - N2O emission factor for direct emissions from synthetic fertilizers applied on non-irrigated crop with rainfall >600mm - National Inventory Report 2014, Vol 1 (2016)
fracAir_AI_1266_I000_M08_A06_DR0 0.01 (1-Switch_PestSP)*PestLCIAir_AI_1266_I000_M08_A06_DR0+Switch_PestSP*PestLCIAirII_AI_1266_I000_M08_A06_DR0 fraction released in air - data from PESTLCI - metsulfuron-methyl
fracAir_AI_0998_I000_M01_A03_DR0 0.01 (1-Switch_PestSP)*PestLCIAir_AI_0998_I000_M01_A03_DR0+Switch_PestSP*PestLCIAirII_AI_0998_I000_M01_A03_DR0 fraction released in air - data from PESTLCI - glyphosate
EFN_leachS 0.0075 — (1,3,2,1,1,na) - kgN2O-N/kgN - IPCC emission factor for N leaching and runoff from synthetic fertiliser - National Inventory Report 2014, Vol 1 (2016)
PestLCIOFII_AI_0942_I000_M04_A03_DR0 0.16156377 — (2,3,2,3,1,na) - Partitioning fraction accouting both primary and secondary processes for AlSubstance deposited outside the field. Calculated using consensus model based on PEST LCI.
PestDefaultSoil_AI_0998_I000_M02_A03_DR0 1.0 — (2,3,2,3,1,na) - Default fraction of AlSubstance released in soil.
Fburnt 0.015 — (1,3,2,1,1,na) - Fraction of residues burnt for the AER - source : National Inventory Report 2014, Vol 1 (2016)
PestLCIOFII_AI_0068_I000_M02_A03_DR0 0.16156377 — (2,3,2,3,1,na) - Partitioning fraction accouting both primary and secondary processes for AlSubstance deposited outside the field. Calculated using consensus model based on PEST LCI.
PestLCIGWII_AI_1176_I000_M07_A03_DR0 — — (2,3,2,3,1,na) - Partitioning fraction accouting both primary and secondary processes for AlSubstance released to groundwater Calculated using consensus model based on PEST LCI.
Nb_Fertilizer 1.0 — (2,3,1,1,1,na) - Number of times the field is processed with Fertilizing, pre & post-emergence
Res_ab_barley 0.32 — (1,3,2,1,1,na) - below ground/above ground residue ratio for barley - National Inventory Report 2014, Vol 1 (2016)
fracGW_AI_0540_I000_M01_A06_DR0 — Switch_PestSP*PestLCIGWII_AI_0540_I000_M01_A06_DR0 fraction reaching ground water - data from PESTLCI - clopyralid
fracS_Cd 1.0 — (2,3,2,3,1,na) - Fraction of heavy metals from fertilizers released in soil
PestLCIDegrII_AI_0540_I000_M01_A06_DR0 — — (2,3,2,3,1,na) - Partitioning fraction accouting both primary and secondary processes for AlSubstance degradation. Calculated using consensus model based on PEST LCI.
EF_Cobalt 0.000121 — (3,1,5,3,2,na) - [g/kg] emission factor from NPI workbook/1000. (pg 13 Environment Australia, Aggregated Emmissions from Prescribed burning and Wildfires.1999)
M_AI_0998_I000_M03_A03_DR0 0.72 — (3,3,1,1,1,na) - decrease to 1L
AF_Urea 0.0024071258807999998 AF_Urea0L*(1-FracN_Leach*FracWET)+AF_Urea100L*(FracN_Leach*FracWET) [kmol+/kg N] Acid factor (kmol+/kg N) for Urea taking account of the fraction of N being leached.
PestLCIOFII_AI_0068_I000_M01_A03_DR0 0.16156377 — (2,3,2,3,1,na) - Partitioning fraction accouting both primary and secondary processes for pesticide deposited outside the field. Calculated using consensus model based on PEST LCI. - 2,4-D
PestLCIOFII_AI_0540_I000_M01_A06_DR0 0.16025068 — (2,3,2,3,1,na) - Partitioning fraction accouting both primary and secondary processes for AlSubstance deposited outside the field. Calculated using consensus model based on PEST LCI.
PestDefaultSoil_AI_0068_I000_M01_A03_DR0 1.0 — (2,3,2,3,1,na) - default fraction released in soil - 2,4-D
PestLCICropII_AI_0068_I000_M01_A03_DR0 — — (2,3,2,3,1,na) - Partitioning fraction accouting both primary and secondary processes for pesticide remaing on plant leaf. Calculated using consensus model based on PEST LCI. - 2,4-D
DLUC_switch — — By default the switch is set to 0 to not include direct land use change. To include the value for direct land use change set the switch to 1. Direct land use change calculation approach is still uncertain
EFburn_CO 0.078 — (2,3,2,3,1,na) - Emission factor from crop residues burning for CO - National Inventory Report 2014, Vol 1 (2016)
Nb_Grain_collection 1.0 — Number of times the field is processed with Grain collection, in field, tractor + bin
NCbg_barley_Resi 0.01 — (1,3,2,1,1,na) - N content of below-ground crop residues for barley residues - National Inventory Report 2014, Vol 1 (2016)
fracAir_AI_0068_I000_M01_A03_DR0 0.01 (1-Switch_PestSP)*PestLCIAir_AI_0068_I000_M01_A03_DR0+Switch_PestSP*PestLCIAirII_AI_0068_I000_M01_A03_DR0 fraction released in air - data from PESTLCI - 2
Switch_PestSP — — if = 1, switch to use PestLCI secondary partitioning
PestLCIOF_AI_0998_I000_M01_A03_DR0 0.16156377 — (2,3,2,3,1,na) - Primary partitioning fraction of pesticide deposited outside the field of application. Calculated using consensus model based on PEST LCI. - glyphosate
PestLCIGWII_AI_0998_I000_M02_A03_DR0 — — (2,3,2,3,1,na) - Partitioning fraction accouting both primary and secondary processes for AlSubstance released to groundwater Calculated using consensus model based on PEST LCI.
HgFERT 0.0000004873500000000001 (M_MAP*Hg_in_MAP+ M_Urea*Hg_in_Urea)*1e-6 [kgC] Total amount of Hg applied with MAP: mass of fertilizer x Hgcontent in fertilizer
M_Urea 91.0 — (3,1,1,1,3,na) - [kg] urea
FracN_GASF 0.1 — (1,3,2,1,1,na) - kgN/kgN - IPCC default fraction of synthetic fertiliser N that volatilised as NH3- N and NOx-N - National Inventory Report 2014, Vol 1 (2016)
PestLCIGWII_AI_1391_I000_M03_A03_DR0 — — (2,3,2,3,1,na) - Partitioning fraction accouting both primary and secondary processes for AlSubstance released to groundwater Calculated using consensus model based on PEST LCI.
Res_barley 1.24 — (1,3,2,1,1,na) - residue/crop ratio for barley - National Inventory Report 2014, Vol 1 (2016)
EF_TOC 7.5 — (3,1,5,3,2,na) - [g/kg] emission factor from NPI workbook/1000. (pg 13 Environment Australia, Aggregated Emmissions from Prescribed burning and Wildfires.1999)
Duration 1.2 — (3,1,1,1,1,na) - [y] duration that one cycle of the crop uses the land, including fallow period.
M_AI_1176_I000_M07_A03_DR0 0.798 — (3,3,1,1,1,na) - applied month July with leaf interception of Stage II and drift reduction method None and application method Bare soil & crops <20cm (DE, Ganzelmeier&Rautmann).
NAAR_Tot 0.768083215697608 NAAR_Crop + NAAR_Cropimport+NAAR_fert [kg H+] Added due to the system - Net addition (-ve = subtraction) of H+ in kg
PbFERT 0.00012801000000000002 (M_MAP*Pb_in_MAP+ M_Urea*Pb_in_Urea)*1e-6 [kgC] Total amount of Pb applied with MAP: mass of fertilizer x Pbcontent in fertilizer
PestLCICrop_AI_0068_I000_M02_A03_DR0 — — (2,3,2,3,1,na) - Primary partitioning fraction of AlSubstance deposited on crop. Calculated using consensus model based on PEST LCI.
PestLCISoilII_AI_1266_I000_M08_A06_DR0 0.78526312 — (2,3,2,3,1,na) - Partitioning fraction accouting both primary and secondary processes for AlSubstance remaing on field soil. Calculated using consensus model based on PEST LCI.
Nb_Harvesting_200kW 1.0 — Number of times the field is processed with Harvesting, <200kW combine
PestLCIOF_AI_0068_I000_M02_A03_DR0 0.16156377 — (2,3,2,3,1,na) - Primary partitioning fraction of AlSubstance deposited outside the field of application. Calculated using consensus model based on PEST LCI.
M_AI_0998_I000_M02_A03_DR0_1 0.72 — (3,3,1,1,1,na) - applied month February with leaf interception of Stage I and drift reduction method None and application method Bare soil & crops <20cm (DE, Ganzelmeier&Rautmann).
PestDefaultSoil_AI_1391_I000_M03_A03_DR0 1.0 — (2,3,2,3,1,na) - Default fraction of AlSubstance released in soil.
fracSoil_AI_0998_I000_M03_A03_DR0 0.82843623 (1-Switch_PestSP)*PestLCISoil_AI_0998_I000_M03_A03_DR0+Switch_PestSP*PestLCISoilII_AI_0998_I000_M03_A03_DR0 default fraction released in soil - glyphosate
PestLCICropII_AI_0068_I000_M02_A03_DR0 — — (2,3,2,3,1,na) - Partitioning fraction accouting both primary and secondary processes for AlSubstance remaing on plant leaf. Calculated using consensus model based on PEST LCI.
PestLCISoil_AI_1391_I000_M03_A03_DR0 0.82843623 — (2,3,2,3,1,na) - Primary partitioning fraction of AlSubstance deposited to agricultural soil on the field of application. Calculated using consensus model based on PEST LCI.
PestLCIOFII_AI_0998_I000_M01_A03_DR0 — — (2,3,2,3,1,na) - Partitioning fraction accouting both primary and secondary processes for pesticide deposited outside the field. Calculated using consensus model based on PEST LCI. - glyphosate
PestLCISoil_AI_0942_I000_M04_A03_DR0 0.82843623 — (2,3,2,3,1,na) - Primary partitioning fraction of AlSubstance deposited to agricultural soil on the field of application. Calculated using consensus model based on PEST LCI.
PestLCICrop_AI_0998_I000_M01_A03_DR0 — — (2,3,2,3,1,na) - Primary partitioning fraction of pesticide deposited on crop. Calculated using consensus model based on PEST LCI. - glyphosate
Surface 1.0 — [ha] of land use
fracAir_AI_1391_I000_M03_A03_DR0 0.01 (1-Switch_PestSP)*PestLCIAir_AI_1391_I000_M03_A03_DR0+Switch_PestSP*PestLCIAirII_AI_1391_I000_M03_A03_DR0 fraction released in air - data from PESTLCI - paraquat
fracGW_AI_0068_I000_M01_A03_DR0 — Switch_PestSP*PestLCIGWII_AI_0068_I000_M01_A03_DR0 fraction reaching ground water - data from PESTLCI - 2
fracOffField_AI_0998_I000_M03_A03_DR0 0.16156377 (1-Switch_PestSP)*PestLCIOF_AI_0998_I000_M03_A03_DR0+Switch_PestSP*PestLCIOFII_AI_0998_I000_M03_A03_DR0 fraction released Off Field - data from PESTLCI - glyphosate
EFburn_CO2 — — (2,3,2,3,1,na) - Emission factor from crop residues burning for CO2 - As per the IPCC Guidelines (IPCC 2006) the CO2 emissions from burning of agricultural residues are not included in the inventory total since it is assumed that an equivalent amount of CO2 was removed by the growing crop, National Inventory Report 2014, Vol 1 (2016)
PestLCIAirII_AI_1391_I000_M03_A03_DR0 — — (2,3,2,3,1,na) - Partitioning fraction accouting both primary and secondary processes for AlSubstance released to air. Calculated using consensus model based on PEST LCI.
fracAir_AI_0068_I000_M02_A03_DR0 0.01 (1-Switch_PestSP)*PestLCIAir_AI_0068_I000_M02_A03_DR0+Switch_PestSP*PestLCIAirII_AI_0068_I000_M02_A03_DR0 fraction released in air - data from PESTLCI - 2
PestLCIDegrII_AI_1391_I000_M03_A03_DR0 — — (2,3,2,3,1,na) - Partitioning fraction accouting both primary and secondary processes for AlSubstance degradation. Calculated using consensus model based on PEST LCI.
fracCrop_AI_1661_I000_M09_A06_DR0 — (1-Switch_PestSP)*PestLCICrop_AI_1661_I000_M09_A06_DR0+Switch_PestSP*PestLCICropII_AI_1661_I000_M09_A06_DR0 fraction remaining on crop - data from PESTLCI - tebuconazole
P_in_soil 0.000408 — (1,3,3,1,1,na) - [kgP/tsoil] P content in soil in the AER of Cropping - source: Soil and Landscape Grid of Australia
Hg_in_MAP 0.01 — (2,3,2,3,1,na) - mg/kg Mercury content - Vic DPI fertiliser survey 2008-09
EF_Antimony 0.000506 — (3,1,5,3,2,na) - [g/kg] emission factor from NPI workbook/1000. (pg 13 Environment Australia, Aggregated Emmissions from Prescribed burning and Wildfires.1999)
AF_Lime -0.02 — (2,2,2,2,1,na) - [kg H+] added due to the system (-ve means removed). 50 kg lime removes 1 kMol H which is same as 1 kg Hydrogen ions. (Baldock Building a foundation for soil condition assessment J.A. Baldock et al 2009
PestLCICropII_AI_0998_I000_M02_A03_DR0 — — (2,3,2,3,1,na) - Partitioning fraction accouting both primary and secondary processes for AlSubstance remaing on plant leaf. Calculated using consensus model based on PEST LCI.
fracSoil_AI_0068_I000_M01_A03_DR0 0.82843623 (1-Switch_PestSP)*PestLCISoil_AI_0068_I000_M01_A03_DR0+Switch_PestSP*PestLCISoilII_AI_0068_I000_M01_A03_DR0 default fraction released in soil - 2
NAAR_FERT 0.413483215697608 M_MAP*AF_MAP*N_In_MAP+M_Urea*AF_Urea*N_in_Urea Total amount of H+ applied with fertilizers: sum of (mass of nitrogen fertilizer x Acid Factor per Fertiliser)
EFN_residues 0.01 — (1,3,2,1,1,na) - kgN2O-N/kgN - IPCC emission factor for N emissions from residues - National Inventory Report 2014, Vol 1 (2016)
Replace1stGlyphosate 0.38 iff(No_add_tillage<1;No_add_tillage;1) Additional tillage
fracSoil_AI_0540_I000_M01_A06_DR0 0.82974932 (1-Switch_PestSP)*PestLCISoil_AI_0540_I000_M01_A06_DR0+Switch_PestSP*PestLCISoilII_AI_0540_I000_M01_A06_DR0 default fraction released in soil - clopyralid
NCbg_residue 0.01 NCbg_barley_Resi N content of below-ground crop residues for barley residues - National Inventory Report 2014, Vol 1 (2016)
PestLCIAirII_AI_0540_I000_M01_A06_DR0 — — (2,3,2,3,1,na) - Partitioning fraction accouting both primary and secondary processes for AlSubstance released to air. Calculated using consensus model based on PEST LCI.
PestLCICrop_AI_1176_I000_M07_A03_DR0 — — (2,3,2,3,1,na) - Primary partitioning fraction of AlSubstance deposited on crop. Calculated using consensus model based on PEST LCI.
PestLCIDegrII_AI_0998_I000_M02_A03_DR0 — — (2,3,2,3,1,na) - Partitioning fraction accouting both primary and secondary processes for AlSubstance degradation. Calculated using consensus model based on PEST LCI.
EF_Arsenic 0.000033 — (3,1,5,3,2,na) - [g/kg] emission factor from NPI workbook/1000. (pg 13 Environment Australia, Aggregated Emmissions from Prescribed burning and Wildfires.1999)
Soil_C_Loss_value 118.43 — (2,1,1,1,1,na) - [kgC/ha/a] Annual soil carbon change. This value was calculated using APSIM for the agroecological region for the current rotations of crops in this area. The results still contain significant uncertainty and should be used with extreme care. - Source: Zhongkui Liu (CSIRO, unpublished)”
NFERT 45.96 M_MAP*N_in_MAP+M_Urea*N_in_Urea Total amount of N applied: sum of (mass of nitrogen fertilizer x nitrogen content)
EFC_lime_nonirrc 0.12 — (1,3,2,1,1,na) - kgC Emission factor for lime - National Inventory Report 2014, Vol 1 (2016)
PestLCICropII_AI_1176_I000_M07_A03_DR0 — — (2,3,2,3,1,na) - Partitioning fraction accouting both primary and secondary processes for AlSubstance remaing on plant leaf. Calculated using consensus model based on PEST LCI.
PestLCIAir_AI_0998_I000_M02_A03_DR0 0.01 — (2,3,2,3,1,na) - Primary partitioning fraction of AlSubstance released to Air. Calculated using consensus model based on PEST LCI.
Res_crop 1.24 Res_barley residue/crop ratio for barley - National Inventory Report 2014, Vol 1 (2016)
fracOffField_AI_0998_I000_M02_A03_DR0 0.16156377 (1-Switch_PestSP)*PestLCIOF_AI_0998_I000_M02_A03_DR0+Switch_PestSP*PestLCIOFII_AI_0998_I000_M02_A03_DR0 fraction released Off Field - data from PESTLCI - glyphosate
fracOffField_AI_0068_I000_M02_A03_DR0 0.16156377 (1-Switch_PestSP)*PestLCIOF_AI_0068_I000_M02_A03_DR0+Switch_PestSP*PestLCIOFII_AI_0068_I000_M02_A03_DR0 fraction released Off Field - data from PESTLCI - 2
EF_Oxides_of_nitrogen 2.21 — (3,1,5,3,2,na) - [g/kg] emission factor from NPI workbook/1000. (pg 13 Environment Australia, Aggregated Emmissions from Prescribed burning and Wildfires.1999)
PestDefaultSoil_AI_0998_I000_M03_A03_DR0 1.0 — (2,3,2,3,1,na) - default fraction released in soil - glyphosate
PestLCIAir_AI_0068_I000_M02_A03_DR0 0.01 — (2,3,2,3,1,na) - Primary partitioning fraction of AlSubstance released to Air. Calculated using consensus model based on PEST LCI.
PestLCIDegrII_AI_0998_I000_M01_A03_DR0 — — (2,3,2,3,1,na) - Partitioning fraction accouting both primary and secondary processes for pesticide degradation. Calculated using consensus model based on PEST LCI. - glyphosate
N_in_urea 0.46 — (2,3,2,3,1,na) nitrogen fraction in urea
fracSoil_AI_1661_I000_M09_A06_DR0 0.82974932 (1-Switch_PestSP)*PestLCISoil_AI_1661_I000_M09_A06_DR0+Switch_PestSP*PestLCISoilII_AI_1661_I000_M09_A06_DR0 default fraction released in soil - tebuconazole
Res_ab_crop 0.32 Res_ab_barley below ground/above ground residue ratio for barley - National Inventory Report 2014, Vol 1 (2016)
NCag_barley_Resi 0.007 — (1,3,2,1,1,na) - N content of above-ground crop residues for barley residues - National Inventory Report 2014, Vol 1 (2016)
Nb_Planting_clay20 1.0 — Number of times the field is processed with Planting, soil clay content >20%.
DLUC_value 1.698169294 — (2,2,1,1,1,na) - [tCO2eq/ha/year] Annual direct CO2 emissions from land use change. Source: Blonk 2016
Seed_input 50.0 — (3,3,2,2,2,na) - [kg/ha] of seed
Total_area 245766.0 — Total area of cropping in the AER
PestLCIGWII_AI_0942_I000_M04_A03_DR0 — — (2,3,2,3,1,na) - Partitioning fraction accouting both primary and secondary processes for AlSubstance released to groundwater Calculated using consensus model based on PEST LCI.
M_AI_0068_I000_M02_A03_DR0_1 0.9375 — (3,3,1,1,1,na) - applied month February with leaf interception of Stage I and drift reduction method None and application method Bare soil & crops <20cm (DE, Ganzelmeier&Rautmann).
PestLCIGWII_AI_0068_I000_M01_A03_DR0 — — (2,3,2,3,1,na) - Partitioning fraction accouting both primary and secondary processes for pesticide released to groundwater Calculated using consensus model based on PEST LCI. - 2,4-D
PestLCISoil_AI_0068_I000_M02_A03_DR0 0.82843623 — (2,3,2,3,1,na) - Primary partitioning fraction of AlSubstance deposited to agricultural soil on the field of application. Calculated using consensus model based on PEST LCI.
fracCrop_AI_1391_I000_M03_A03_DR0 — (1-Switch_PestSP)*PestLCICrop_AI_1391_I000_M03_A03_DR0+Switch_PestSP*PestLCICropII_AI_1391_I000_M03_A03_DR0 fraction remaining on crop - data from PESTLCI - paraquat
EFC_lime 0.12 EFC_lime_nonirrc kgC
M_MAP 41.0 — (3,1,1,1,3,na) - [kg] monoammonium phosphate
Burn_efficiency 0.96 — (2,3,2,3,1,na) - Default burning efficiency for residue from crop - National Inventory Report 2014, Vol 1 (2016)
PestLCIAir_AI_0942_I000_M04_A03_DR0 0.01 — (2,3,2,3,1,na) - Primary partitioning fraction of AlSubstance released to Air. Calculated using consensus model based on PEST LCI.
DM_barley_Resi 0.88 — (2,3,3,1,1,na) - dry matter content of barley residues - National Inventory Report 2014, Vol 1 (2016)
Hg_in_Urea 0.00085 — (2,3,2,3,1,na) - mg/kg Mercury content - Vic DPI fertiliser survey 2008-09
fracOffField_AI_1176_I000_M07_A03_DR0 0.16156377 (1-Switch_PestSP)*PestLCIOF_AI_1176_I000_M07_A03_DR0+Switch_PestSP*PestLCIOFII_AI_1176_I000_M07_A03_DR0 fraction released Off Field - data from PESTLCI - MCPA
EFburn_CH4 0.0035 — (2,3,2,3,1,na) - Emission factor from crop residues burning for CH4 - National Inventory Report 2014, Vol 1 (2016)
PestLCIOF_AI_1266_I000_M08_A06_DR0 0.16025068 — (2,3,2,3,1,na) - Primary partitioning fraction of AlSubstance deposited outside the field of application. Calculated using consensus model based on PEST LCI.
Pb_in_Urea 0.01 — (2,3,2,3,1,na) - mg/kg Lead content - Vic DPI fertiliser survey 2008-09
PestLCIOF_AI_1661_I000_M09_A06_DR0 0.16025068 — (2,3,2,3,1,na) - Primary partitioning fraction of AlSubstance deposited outside the field of application. Calculated using consensus model based on PEST LCI.
Frac_OF_agr 0.5759 — (2,3,2,3,1,na) - Fraction of active substance deposited into agricultural land offsite Default value calculated with PestLCI 2.0 {Dijkman, 2012 #973} and multiplied by % of land next to the field that is agricultural land for the region - based on Global Land Cover GIS layer {Latham, 2014 #3214}
fracGW_AI_1661_I000_M09_A06_DR0 — Switch_PestSP*PestLCIGWII_AI_1661_I000_M09_A06_DR0 fraction reaching ground water - data from PESTLCI - tebuconazole
PestLCICropII_AI_0998_I000_M01_A03_DR0 — — (2,3,2,3,1,na) - Partitioning fraction accouting both primary and secondary processes for pesticide remaing on plant leaf. Calculated using consensus model based on PEST LCI. - glyphosate
Fresremaining 0.5 — (1,3,2,1,1,na) - Fraction remaining at the time of burning for the AER - source : National Inventory Report 2014, Vol 1 (2016)
EF_Chromium_VI 0.000341 — (3,1,5,3,2,na) - [g/kg] emission factor from NPI workbook/1000. (pg 13 Environment Australia, Aggregated Emmissions from Prescribed burning and Wildfires.1999)
Pb_in_MAP 3.1 — (2,3,2,3,1,na) - mg/kg Lead content - Vic DPI fertiliser survey 2008-09
M_AI_1661_I000_M09_A06_DR0 0.1247 — (3,3,1,1,1,na) - applied month September with leaf interception of Stage III and drift reduction method None and application method Crops >20cm (DE, Ganzelmeier-Rautmann).
CUrea 18.2 M_Urea*C_in_Urea [kgC] Total amount of Carbon applied with urea: mass of urea x carbon content in urea
fracSoil_AI_0068_I000_M02_A03_DR0 0.82843623 (1-Switch_PestSP)*PestLCISoil_AI_0068_I000_M02_A03_DR0+Switch_PestSP*PestLCISoilII_AI_0068_I000_M02_A03_DR0 default fraction released in soil - 2
CC_residue 0.4 CC_barley_Resi Carbon mass fraction in dry matter for barley residues - National Inventory Report 2014, Vol 1 (2016)
AF_MAP100L 0.142 — (2,2,2,2,1,na) - Acid Factor in kMol/kg N in Mono Ammonium Phosphate. Based on Upjohn, Fenton & Conyers (2005)
PestLCIDegrII_AI_1176_I000_M07_A03_DR0 — — (2,3,2,3,1,na) - Partitioning fraction accouting both primary and secondary processes for AlSubstance degradation. Calculated using consensus model based on PEST LCI.
fracGW_AI_0998_I000_M02_A03_DR0 — Switch_PestSP*PestLCIGWII_AI_0998_I000_M02_A03_DR0 fraction reaching ground water - data from PESTLCI - glyphosate
fracSoil_AI_1176_I000_M07_A03_DR0 0.82843623 (1-Switch_PestSP)*PestLCISoil_AI_1176_I000_M07_A03_DR0+Switch_PestSP*PestLCISoilII_AI_1176_I000_M07_A03_DR0 default fraction released in soil - MCPA
N_in_MAP 0.1 — Nitrogen fraction in MAP fertiliser - FIFA Fertilizer Industry Federation of Australia Environment report 2010.
EF_Nickel 0.000198 — (3,1,5,3,2,na) - [g/kg] emission factor from NPI workbook/1000. (pg 13 Environment Australia, Aggregated Emmissions from Prescribed burning and Wildfires.1999)
PestLCICropII_AI_0540_I000_M01_A06_DR0 — — (2,3,2,3,1,na) - Partitioning fraction accouting both primary and secondary processes for AlSubstance remaing on plant leaf. Calculated using consensus model based on PEST LCI.
PestLCICropII_AI_1661_I000_M09_A06_DR0 — — (2,3,2,3,1,na) - Partitioning fraction accouting both primary and secondary processes for AlSubstance remaing on plant leaf. Calculated using consensus model based on PEST LCI.
PestLCIOF_AI_0998_I000_M02_A03_DR0 0.16156377 — (2,3,2,3,1,na) - Primary partitioning fraction of AlSubstance deposited outside the field of application. Calculated using consensus model based on PEST LCI.
Cd_in_MAP 4.1 — (2,3,2,3,1,na) - mg/kg Cadmium content - Vic DPI fertiliser survey 2008-09
DM_residue 0.88 DM_barley_Resi dry matter content of barley residues - National Inventory Report 2014, Vol 1 (2016)
PestDefaultSoil_AI_0068_I000_M02_A03_DR0 1.0 — (2,3,2,3,1,na) - Default fraction of AlSubstance released in soil.
PestLCIOF_AI_0942_I000_M04_A03_DR0 0.16156377 — (2,3,2,3,1,na) - Primary partitioning fraction of AlSubstance deposited outside the field of application. Calculated using consensus model based on PEST LCI.
Frac_OF_nat 0.4164 — (2,3,2,3,1,na) - Fraction of active substance deposited into natural land offsite. Default value calculated with PestLCI 2.0 {Dijkman, 2012 #973} and multiplied by % of land next to the field that is natural land for the region – based on Global Land Cover GIS layer {Latham, 2014 #3214}
PestLCISoil_AI_1661_I000_M09_A06_DR0 0.82974932 — (2,3,2,3,1,na) - Primary partitioning fraction of AlSubstance deposited to agricultural soil on the field of application. Calculated using consensus model based on PEST LCI.
PestLCIOFII_AI_0998_I000_M03_A03_DR0 — — (2,3,2,3,1,na) - Partitioning fraction accouting both primary and secondary processes for pesticide deposited outside the field. Calculated using consensus model based on PEST LCI. - glyphosate
PestLCIAir_AI_1266_I000_M08_A06_DR0 0.01 — (2,3,2,3,1,na) - Primary partitioning fraction of AlSubstance released to Air. Calculated using consensus model based on PEST LCI.
fracSoil_AI_0942_I000_M04_A03_DR0 0.82843623 (1-Switch_PestSP)*PestLCISoil_AI_0942_I000_M04_A03_DR0+Switch_PestSP*PestLCISoilII_AI_0942_I000_M04_A03_DR0 default fraction released in soil - fluroxypyr
EFN_DS_nonirrc_b600mm 0.0005 — (1,3,2,1,1,na) - kgN2O-N/kgN - N2O emission factor for direct emissions from synthetic fertilizers applied on non-irrigated crop with rainfall <600mm - National Inventory Report 2014, Vol 1 (2016)
PestDefaultSoil_AI_0998_I000_M01_A03_DR0 1.0 — (2,3,2,3,1,na) - default fraction released in soil - glyphosate
AF_Urea0L — — (2,2,2,2,1,na) - Acid Factor in kMol/kg N in Urea. Based on Upjohn, Fenton & Conyers (2005)
PestLCIAirII_AI_0998_I000_M01_A03_DR0 — — (2,3,2,3,1,na) - Partitioning fraction accouting both primary and secondary processes for pesticide released to air. Calculated using consensus model based on PEST LCI. - glyphosate
fracCrop_AI_0998_I000_M02_A03_DR0 — (1-Switch_PestSP)*PestLCICrop_AI_0998_I000_M02_A03_DR0+Switch_PestSP*PestLCICropII_AI_0998_I000_M02_A03_DR0 fraction remaining on crop - data from PESTLCI - glyphosate
fracSoil_AI_0998_I000_M01_A03_DR0 0.82843623 (1-Switch_PestSP)*PestLCISoil_AI_0998_I000_M01_A03_DR0+Switch_PestSP*PestLCISoilII_AI_0998_I000_M01_A03_DR0 default fraction released in soil - glyphosate
PestLCISoilII_AI_0540_I000_M01_A06_DR0 — — (2,3,2,3,1,na) - Partitioning fraction accouting both primary and secondary processes for AlSubstance remaing on field soil. Calculated using consensus model based on PEST LCI.
PestLCIOFII_AI_0998_I000_M02_A03_DR0 — — (2,3,2,3,1,na) - Partitioning fraction accouting both primary and secondary processes for AlSubstance deposited outside the field. Calculated using consensus model based on PEST LCI.
AF_MAP 0.0762733966652 AF_MAP0L*(1-FracN_Leach*FracWET)+AF_MAP100L*(FracN_Leach*FracWET) [kmol+/kg N] Acid factor (kmol+/kg N) for MAP taking account of the fraction of N being leached.
PestLCIDegrII_AI_0998_I000_M03_A03_DR0 — — (2,3,2,3,1,na) - Partitioning fraction accouting both primary and secondary processes for pesticide degradation. Calculated using consensus model based on PEST LCI. - glyphosate
NAAR_Crop 0.35459999999999997 AshAlkalinity*Yield/1000 [kg H+] Added due to plant removal
EF_Selenium 0.000055 — (3,1,5,3,2,na) - [g/kg] emission factor from NPI workbook/1000. (pg 13 Environment Australia, Aggregated Emmissions from Prescribed burning and Wildfires.1999)
PestLCIOFII_AI_1661_I000_M09_A06_DR0 0.16025068 — (2,3,2,3,1,na) - Partitioning fraction accouting both primary and secondary processes for AlSubstance deposited outside the field. Calculated using consensus model based on PEST LCI.
fracGW_AI_0998_I000_M03_A03_DR0 — Switch_PestSP*PestLCIGWII_AI_0998_I000_M03_A03_DR0 fraction reaching ground water - data from PESTLCI - glyphosate
fracCrop_AI_0540_I000_M01_A06_DR0 — (1-Switch_PestSP)*PestLCICrop_AI_0540_I000_M01_A06_DR0+Switch_PestSP*PestLCICropII_AI_0540_I000_M01_A06_DR0 fraction remaining on crop - data from PESTLCI - clopyralid
PestLCICropII_AI_0942_I000_M04_A03_DR0 — — (2,3,2,3,1,na) - Partitioning fraction accouting both primary and secondary processes for AlSubstance remaing on plant leaf. Calculated using consensus model based on PEST LCI.
EF_Butadieneb 0.0671 — (3,1,5,3,2,na) - [g/kg] emission factor from NPI workbook/1000. (pg 13 Environment Australia, Aggregated Emmissions from Prescribed burning and Wildfires.1999)
Supply_distance 200.0 — (4,3,1,3,1,na) - [km] average distance to supply farm inputs (fertilizers, pesticides, lime)
OTHERDATA 1.0 — OTHER DATA
PestLCISoil_AI_0998_I000_M02_A03_DR0 0.82843623 — (2,3,2,3,1,na) - Primary partitioning fraction of AlSubstance deposited to agricultural soil on the field of application. Calculated using consensus model based on PEST LCI.
PestLCISoilII_AI_1661_I000_M09_A06_DR0 0.81712422 — (2,3,2,3,1,na) - Partitioning fraction accouting both primary and secondary processes for AlSubstance remaing on field soil. Calculated using consensus model based on PEST LCI.
Replace2ndGlyphosate — iff(No_add_tillage>1;No_add_tillage-1;0) Additional tillage
PestLCIGWII_AI_0540_I000_M01_A06_DR0 — — (2,3,2,3,1,na) - Partitioning fraction accouting both primary and secondary processes for AlSubstance released to groundwater Calculated using consensus model based on PEST LCI.
M_AI_0998_I000_M01_A03_DR0 0.72 — (3,3,1,1,1,na) - applied month January with leaf interception of Stage I and drift reduction method None and application method Bare soil & crops <20cm (DE, Ganzelmeier&Rautmann)
M_AI_0998_I000_M02_A03_DR0 1.44 M_AI_0998_I000_M02_A03_DR0_1+M_AI_0998_I000_M02_A03_DR0_2 sum of mass glyphosate
PestLCISoil_AI_1176_I000_M07_A03_DR0 0.82843623 — (2,3,2,3,1,na) - Primary partitioning fraction of AlSubstance deposited to agricultural soil on the field of application. Calculated using consensus model based on PEST LCI.
EF_Zinc 0.000924 — (3,1,5,3,2,na) - [g/kg] emission factor from NPI workbook/1000. (pg 13 Environment Australia, Aggregated Emmissions from Prescribed burning and Wildfires.1999)
PestLCISoilII_AI_0942_I000_M04_A03_DR0 — — (2,3,2,3,1,na) - Partitioning fraction accouting both primary and secondary processes for AlSubstance remaing on field soil. Calculated using consensus model based on PEST LCI.
fracCrop_AI_0068_I000_M02_A03_DR0 — (1-Switch_PestSP)*PestLCICrop_AI_0068_I000_M02_A03_DR0+Switch_PestSP*PestLCICropII_AI_0068_I000_M02_A03_DR0 fraction remaining on crop - data from PESTLCI - 2
M_AI_0998_I000_M02_A03_DR0_2 0.72 — (3,3,1,1,1,na) - applied month February with leaf interception of Stage I and drift reduction method None and application method Bare soil & crops <20cm (DE, Ganzelmeier&Rautmann).
P_in_MAP 0.22 — Phosphorus fraction in Mono ammonium phosphate - FIFA Fertilizer Industry Federation of Australia Environment report 2010.
PestLCIOF_AI_0998_I000_M03_A03_DR0 0.16156377 — (2,3,2,3,1,na) - Primary partitioning fraction of pesticide deposited outside the field of application. Calculated using consensus model based on PEST LCI. - glyphosate
PestLCIDegrII_AI_0068_I000_M01_A03_DR0 — — (2,3,2,3,1,na) - Partitioning fraction accouting both primary and secondary processes for pesticide degradation. Calculated using consensus model based on PEST LCI. - 2,4-D
EF_Lead 0.000561 — (3,1,5,3,2,na) - [g/kg] emission factor from NPI workbook/1000. (pg 13 Environment Australia, Aggregated Emmissions from Prescribed burning and Wildfires.1999)
PestLCIAir_AI_0068_I000_M01_A03_DR0 0.01 — (2,3,2,3,1,na) - Primary partitioning fraction of pesticide released to Air. Calculated using consensus model based on PEST LCI. - 2,4-D
PestLCISoilII_AI_1176_I000_M07_A03_DR0 — — (2,3,2,3,1,na) - Partitioning fraction accouting both primary and secondary processes for AlSubstance remaing on field soil. Calculated using consensus model based on PEST LCI.
CC_barley_Resi 0.4 — (2,3,3,1,1,na) - Carbon mass fraction in dry matter for barley residues - National Inventory Report 2014, Vol 1 (2016)
fracAir_AI_1176_I000_M07_A03_DR0 0.01 (1-Switch_PestSP)*PestLCIAir_AI_1176_I000_M07_A03_DR0+Switch_PestSP*PestLCIAirII_AI_1176_I000_M07_A03_DR0 fraction released in air - data from PESTLCI - MCPA
M_AI_0942_I000_M04_A03_DR0 0.0999 — (3,3,1,1,1,na) - applied month April with leaf interception of Stage I and drift reduction method None and application method Bare soil & crops <20cm (DE, Ganzelmeier&Rautmann).
EF_N_Direct 0.0021472615360000006 EFN_DS_nonirrc_b600mm*fracRainb600mm+(1-fracRainb600mm)*EFN_DS_nonirrc_a600mm kgN2O-N/kgN - N2O emission factor for direct emissions from synthetic fertilizers applied - National Inventory Report 2014, Vol 1 (2016) - value for Non-irrigated crop in AER15_Western Downs and North West Slopes and Plains where percentage of cultivation area with rainfall <600mm = 0.3 - source: climate data source from Queensland Government, 2016
Fremoved 0.312 — (1,3,2,1,1,na) - Fraction of the crop removed in the AER - source : National Inventory Report 2014, Vol 1 (2016)
DM_barley_Crop 0.88 — (2,3,3,1,1,na) - dry matter content of barley crop - set same as value for residue based on National Inventory Report 2014, Vol 1 (2016)
fracCrop_AI_1176_I000_M07_A03_DR0 — (1-Switch_PestSP)*PestLCICrop_AI_1176_I000_M07_A03_DR0+Switch_PestSP*PestLCICropII_AI_1176_I000_M07_A03_DR0 fraction remaining on crop - data from PESTLCI - MCPA
fracOffField_AI_0998_I000_M01_A03_DR0 0.16156377 (1-Switch_PestSP)*PestLCIOF_AI_0998_I000_M01_A03_DR0+Switch_PestSP*PestLCIOFII_AI_0998_I000_M01_A03_DR0 fraction released Off Field - data from PESTLCI - glyphosate
PestLCISoilII_AI_0068_I000_M01_A03_DR0 — — (2,3,2,3,1,na) - Partitioning fraction accouting both primary and secondary processes for pesticide remaing on field soil. Calculated using consensus model based on PEST LCI. - 2,4-D
PestLCICropII_AI_0998_I000_M03_A03_DR0 — — (2,3,2,3,1,na) - Partitioning fraction accouting both primary and secondary processes for pesticide remaing on plant leaf. Calculated using consensus model based on PEST LCI. - glyphosate
PestLCIAirII_AI_0068_I000_M01_A03_DR0 — — (2,3,2,3,1,na) - Partitioning fraction accouting both primary and secondary processes for pesticide released to air. Calculated using consensus model based on PEST LCI. - 2,4-D
PestLCIAirII_AI_0068_I000_M02_A03_DR0 — — (2,3,2,3,1,na) - Partitioning fraction accouting both primary and secondary processes for AlSubstance released to air. Calculated using consensus model based on PEST LCI.
PestLCIOF_AI_0540_I000_M01_A06_DR0 0.16025068 — (2,3,2,3,1,na) - Primary partitioning fraction of AlSubstance deposited outside the field of application. Calculated using consensus model based on PEST LCI.
PestLCICrop_AI_1391_I000_M03_A03_DR0 — — (2,3,2,3,1,na) - Primary partitioning fraction of AlSubstance deposited on crop. Calculated using consensus model based on PEST LCI.
PestLCISoilII_AI_0998_I000_M03_A03_DR0 — — (2,3,2,3,1,na) - Partitioning fraction accouting both primary and secondary processes for pesticide remaing on field soil. Calculated using consensus model based on PEST LCI. - glyphosate
PFERT 9.02 M_MAP*P_in_MAP Total amount of P applied: sum of (mass of phosphorus fertilizer x phosphorus content)
fracAir_AI_0998_I000_M02_A03_DR0 0.01 (1-Switch_PestSP)*PestLCIAir_AI_0998_I000_M02_A03_DR0+Switch_PestSP*PestLCIAirII_AI_0998_I000_M02_A03_DR0 fraction released in air - data from PESTLCI - glyphosate
fracCrop_AI_0998_I000_M01_A03_DR0 — (1-Switch_PestSP)*PestLCICrop_AI_0998_I000_M01_A03_DR0+Switch_PestSP*PestLCICropII_AI_0998_I000_M01_A03_DR0 fraction remaining on crop - data from PESTLCI - glyphosate
fracCrop_AI_1266_I000_M08_A06_DR0 — (1-Switch_PestSP)*PestLCICrop_AI_1266_I000_M08_A06_DR0+Switch_PestSP*PestLCICropII_AI_1266_I000_M08_A06_DR0 fraction remaining on crop - data from PESTLCI - metsulfuron-methyl
PestLCICrop_AI_0998_I000_M02_A03_DR0 — — (2,3,2,3,1,na) - Primary partitioning fraction of AlSubstance deposited on crop. Calculated using consensus model based on PEST LCI.
CC_crop 0.4 CC_barley_Crop Carbon mass fraction in dry matter for barley crop - set same as value for residue based on National Inventory Report 2014, Vol 1 (2016)
No_add_tillage 0.38 Frac_No_till*0+Frac_Min_till*1+Frac_Multi_till*2 Additional tillage
Frac_OF_freshwater 0.0077 — (2,3,2,3,1,na) - Fraction of active substance deposited into surface water Default value calculated with PestLCI 2.0 {Dijkman, 2012 #973} and multiplied by % of land next to the field that is fresh waste for the region - source: based on Global Land Cover GIS layer {Latham, 2014 #3214}
PestLCIDegrII_AI_1661_I000_M09_A06_DR0 0.0126251 — (2,3,2,3,1,na) - Partitioning fraction accouting both primary and secondary processes for AlSubstance degradation. Calculated using consensus model based on PEST LCI.
PestLCICrop_AI_0540_I000_M01_A06_DR0 — — (2,3,2,3,1,na) - Primary partitioning fraction of AlSubstance deposited on crop. Calculated using consensus model based on PEST LCI.
fracSoil_AI_0998_I000_M02_A03_DR0 0.82843623 (1-Switch_PestSP)*PestLCISoil_AI_0998_I000_M02_A03_DR0+Switch_PestSP*PestLCISoilII_AI_0998_I000_M02_A03_DR0 default fraction released in soil - glyphosate
RUSLE 5.086466560996457 RUSLE_R*RUSLE_K*RUSLE_LS*RUSLE_P*RUSLE_C [t ha-1 y-1] Average anual soil erosions to water in t ha-1 y-1. Based on Revised universal soil loss equation (RUSLE) (Teng. Viscarra etal 2016) for
PestLCICrop_AI_1661_I000_M09_A06_DR0 — — (2,3,2,3,1,na) - Primary partitioning fraction of AlSubstance deposited on crop. Calculated using consensus model based on PEST LCI.
PestDefaultSoil_AI_1266_I000_M08_A06_DR0 1.0 — (2,3,2,3,1,na) - Default fraction of AlSubstance released in soil.
fracGW_AI_0998_I000_M01_A03_DR0 — Switch_PestSP*PestLCIGWII_AI_0998_I000_M01_A03_DR0 fraction reaching ground water - data from PESTLCI - glyphosate
fracAir_AI_0540_I000_M01_A06_DR0 0.01 (1-Switch_PestSP)*PestLCIAir_AI_0540_I000_M01_A06_DR0+Switch_PestSP*PestLCIAirII_AI_0540_I000_M01_A06_DR0 fraction released in air - data from PESTLCI - clopyralid
FracN_Leach 0.3 — (1,3,2,1,1,na) - kgN/kgN - default fraction of N lost through leaching and runoff - National Inventory Report 2014, Vol 1 (2016
M_AI_0068_I000_M02_A03_DR0 1.875 M_AI_0068_I000_M02_A03_DR0_1+M_AI_0068_I000_M02_A03_DR0_2 sum of mass 2
PestLCIOFII_AI_1391_I000_M03_A03_DR0 — — (2,3,2,3,1,na) - Partitioning fraction accouting both primary and secondary processes for AlSubstance deposited outside the field. Calculated using consensus model based on PEST LCI.
PestLCIGWII_AI_0068_I000_M02_A03_DR0 — — (2,3,2,3,1,na) - Partitioning fraction accouting both primary and secondary processes for AlSubstance released to groundwater Calculated using consensus model based on PEST LCI.
PestLCIAir_AI_1391_I000_M03_A03_DR0 0.01 — (2,3,2,3,1,na) - Primary partitioning fraction of AlSubstance released to Air. Calculated using consensus model based on PEST LCI.
PestLCIAirII_AI_1266_I000_M08_A06_DR0 0.01 — (2,3,2,3,1,na) - Partitioning fraction accouting both primary and secondary processes for AlSubstance released to air. Calculated using consensus model based on PEST LCI.
fracGW_AI_0068_I000_M02_A03_DR0 — Switch_PestSP*PestLCIGWII_AI_0068_I000_M02_A03_DR0 fraction reaching ground water - data from PESTLCI - 2
RUSLE_K 0.026996 — (1,3,3,1,1,na) - [t ha hr ha-1 MJ-1 mm-1] Revised universal soil loss equation (RUSLE). K= Soil erodibility factor (t ha hr ha-1 MJ-1 mm-1), (Teng, Viscarra etal 2016). Data derrived from GIS layer provided with the paper for the AER
PestLCIAirII_AI_1176_I000_M07_A03_DR0 — — (2,3,2,3,1,na) - Partitioning fraction accouting both primary and secondary processes for AlSubstance released to air. Calculated using consensus model based on PEST LCI.
M_AI_0068_I000_M01_A03_DR0 0.9375 — (3,3,1,1,1,na) - applied month January with leaf interception of Stage I and drift reduction method None and application method Bare soil & crops <20cm (DE, Ganzelmeier&Rautmann)
PestLCISoil_AI_0068_I000_M01_A03_DR0 0.82843623 — (2,3,2,3,1,na) - Primary partitioning fraction of pesticide deposited to agricultural soil on the field of application. Calculated using consensus model based on PEST LCI. - 2,4-D
fracOffField_AI_1266_I000_M08_A06_DR0 0.16025068 (1-Switch_PestSP)*PestLCIOF_AI_1266_I000_M08_A06_DR0+Switch_PestSP*PestLCIOFII_AI_1266_I000_M08_A06_DR0 fraction released Off Field - data from PESTLCI - metsulfuron-methyl
PestLCIOFII_AI_1266_I000_M08_A06_DR0 0.16025068 — (2,3,2,3,1,na) - Partitioning fraction accouting both primary and secondary processes for AlSubstance deposited outside the field. Calculated using consensus model based on PEST LCI.
EFburn_NOx 0.21 — (2,3,2,3,1,na) - Emission factor from crop residues burning for NOx - National Inventory Report 2014, Vol 1 (2016)
fracCrop_AI_0942_I000_M04_A03_DR0 — (1-Switch_PestSP)*PestLCICrop_AI_0942_I000_M04_A03_DR0+Switch_PestSP*PestLCICropII_AI_0942_I000_M04_A03_DR0 fraction remaining on crop - data from PESTLCI - fluroxypyr
PestLCIAirII_AI_0998_I000_M03_A03_DR0 — — (2,3,2,3,1,na) - Partitioning fraction accouting both primary and secondary processes for pesticide released to air. Calculated using consensus model based on PEST LCI. - glyphosate
AshAlkalinity 0.18 — (4,3,1,1,1,na)kmol/t - Baldock et al. 2009. Building a foundation for soil condition assessment. CSIRO Land and Water Science Report.
PestLCIOF_AI_1176_I000_M07_A03_DR0 0.16156377 — (2,3,2,3,1,na) - Primary partitioning fraction of AlSubstance deposited outside the field of application. Calculated using consensus model based on PEST LCI.
EF_Carbon_monoxide 78.0 — (3,1,5,3,2,na) - [g/kg] emission factor from NPI workbook/1000. (pg 13 Environment Australia, Aggregated Emmissions from Prescribed burning and Wildfires.1999)
CdFERT 0.0002136 (M_MAP*Cd_in_MAP+ M_Urea*Cd_in_Urea)*1e-6 [kgC] Total amount of Cd applied with MAP: mass of fertilizer x Cdcontent in fertilizer
fracCrop_AI_0068_I000_M01_A03_DR0 — (1-Switch_PestSP)*PestLCICrop_AI_0068_I000_M01_A03_DR0+Switch_PestSP*PestLCICropII_AI_0068_I000_M01_A03_DR0 fraction remaining on crop - data from PESTLCI - 2
PestLCIAir_AI_0998_I000_M01_A03_DR0 0.01 — (2,3,2,3,1,na) - Primary partitioning fraction of pesticide released to Air. Calculated using consensus model based on PEST LCI. - glyphosate
EF_Mercury 0.000143 — (3,1,5,3,2,na) - [g/kg] emission factor from NPI workbook/1000. (pg 13 Environment Australia, Aggregated Emmissions from Prescribed burning and Wildfires.1999)