| PestLCICrop_AI_0501_I000_M05_A03_DR0 |
— |
— |
(2,3,2,3,1,na) - Primary partitioning fraction of AlSubstance deposited on crop. Calculated using consensus model based on PEST LCI.
|
| NAAR_FERT |
0.541663713710008 |
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)
|
| EF_Carbon_monoxide |
59.0 |
— |
(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)
|
| Fburnt |
0.015 |
— |
(1,3,2,1,1,na) - Fraction of residues burnt for the AER - source : National Inventory Report 2014, Vol 1 (2016)
|
| 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)
|
| fracGW_AI_1176_I000_M10_A03_DR0 |
— |
Switch_PestSP*PestLCIGWII_AI_1176_I000_M10_A03_DR0 |
Fraction of AlSubstance reaching ground water - data from PESTLCI.
|
| fracOffField_AI_0501_I000_M05_A03_DR0 |
0.16156377 |
(1-Switch_PestSP)*PestLCIOF_AI_0501_I000_M05_A03_DR0+Switch_PestSP*PestLCIOFII_AI_0501_I000_M05_A03_DR0 |
Fraction of AlSubstance released Off Field - data from PESTLCI.
|
| NAAR_Cropimport |
— |
0 |
kg H+ accounts and nitrogen irons imported with other biogenic material such as stubble or compost from outside the field
|
| PestLCIOFII_AI_1176_I000_M10_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.
|
| NCbg_forage_crops_Resi |
0.01 |
— |
(1,3,2,1,1,na) - N content of below-ground crop residues for forage_crops residues - National Inventory Report 2014, Vol 1 (2016)
|
| Replace2ndGlyphosate |
— |
iff(No_add_tillage>1;No_add_tillage-1;0) |
Additional tillage
|
| Seed_input |
80.0 |
— |
(3,3,2,2,2,na) - [kg/ha] of seed
|
| EF_Lead |
0.000434 |
— |
(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)
|
| Frac_Multi_till |
0.14 |
— |
(3,1,1,1,1,na) - From GRDC farm survery
|
| Frac_No_till |
0.76 |
— |
(3,1,1,1,1,na) - From GRDC farm survery
|
| Frac_Min_till |
0.1 |
— |
(3,1,1,1,1,na) - From GRDC farm survery
|
| Yield |
2730.0 |
— |
(2,2,1,1,1,na) - [kg/ha] yield
|
| PestLCIAir_AI_0501_I000_M05_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.
|
| EF_Manganese |
0.00107 |
— |
(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
|
| EF_Cadmium |
0.000527 |
— |
(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_1176_I000_M10_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.
|
| fracOffField_AI_1176_I000_M10_A03_DR0 |
0.16156377 |
(1-Switch_PestSP)*PestLCIOF_AI_1176_I000_M10_A03_DR0+Switch_PestSP*PestLCIOFII_AI_1176_I000_M10_A03_DR0 |
Fraction of AlSubstance released Off Field - data from PESTLCI.
|
| EF_Nickel |
0.000153 |
— |
(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)
|
| 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)
|
| 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.
|
| Nb_Spraying |
1.0 |
— |
(2,3,1,1,1,na) - Number of times the field is processed with Spraying, pre & post-emergence
|
| PestLCIGWII_AI_0501_I000_M05_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.
|
| 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)
|
| DM_forage_crops_Resi |
0.88 |
— |
(2,3,3,1,1,na) - Dry matter content of forage_crops residues - National Inventory Report 2014, Vol 1 (2016)
|
| Pb_in_MAP |
3.1 |
— |
(2,3,2,3,1,na) - mg/kg Lead content - Vic DPI fertiliser survey 2008-09
|
| Cd_in_Urea |
0.5 |
— |
(2,3,2,3,1,na) - mg/kg Cadmium content - Vic DPI fertiliser survey 2008-09
|
| 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)
|
| Pb_in_Urea |
0.01 |
— |
(2,3,2,3,1,na) - mg/kg Lead content - Vic DPI fertiliser survey 2008-09
|
| PestLCISoil_AI_1176_I000_M10_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.
|
| DM_crop |
0.88 |
DM_forage_crops_Crop |
Dry matter content of forage_crops crop - set same as value for residue based on National Inventory Report 2014, Vol 1 (2016)
|
| RUSLE_LS |
1.582135 |
— |
(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
|
| OTHERDATA |
1.0 |
— |
OTHER DATA
|
| fracCrop_AI_1176_I000_M10_A03_DR0 |
— |
(1-Switch_PestSP)*PestLCICrop_AI_1176_I000_M10_A03_DR0+Switch_PestSP*PestLCICropII_AI_1176_I000_M10_A03_DR0 |
Fraction of AlSubstance remaining on crop - data from PESTLCI.
|
| NAAR_Crop |
0.19110000000000002 |
AshAlkalinity*Yield/1000 |
[kg H+] Added due to plant removal
|
| Burn_efficiency |
0.96 |
— |
(2,3,2,3,1,na) - Default burning efficiency for residue from crop - National Inventory Report 2014, Vol 1 (2016)
|
| P_in_soil |
0.000366 |
— |
(1,3,3,1,1,na) - [kgP/tsoil] P content in soil in the AER of Cropping - source: Soil and Landscape Grid of Australia
|
| Soil_C_Loss_value |
236.86 |
— |
(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)”
|
| 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}
|
| Res_crop |
1.34 |
Res_forage_crops |
residue/crop ratio for forage_crops - National Inventory Report 2014, Vol 1 (2016)
|
| CC_crop |
0.4 |
CC_forage_crops_Crop |
Carbon mass fraction in dry matter for forage_crops crop - set same as value for residue based on National Inventory Report 2014, Vol 1 (2016)
|
| 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)
|
| EF_Mercury |
0.000111 |
— |
(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)
|
| PbFERT |
128.18 |
M_MAP*Pb_in_MAP+ M_Urea*Pb_in_Urea |
[kgC] Total amount of Pb applied with MAP: mass of fertilizer x Pbcontent in fertilizer
|
| AF_Urea0L |
— |
— |
(2,2,2,2,1,na) - Acid Factor in kMol/kg N in Urea. Based on Upjohn, Fenton & Conyers (2005)
|
| Duration |
1.222222222 |
— |
(3,1,1,1,1,na) - [y] duration that one cycle of the crop uses the land, including fallow period.
|
| PestLCICropII_AI_0501_I000_M05_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.
|
| NCbg_residue |
0.01 |
NCbg_forage_crops_Resi |
N content of below-ground crop residues for forage_crops residues - National Inventory Report 2014, Vol 1 (2016)
|
| EF_Butadieneb |
0.0492 |
— |
(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)
|
| NCag_residue |
0.006 |
NCag_forage_crops_Resi |
N content of above-ground crop residues for forage_crops residues - National Inventory Report 2014, Vol 1 (2016)
|
| Nb_Cultivating |
1.0 |
— |
(2,3,1,1,1,na) - Number of times the field is processed with Scarifying
|
| 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
|
| PestLCIAirII_AI_1176_I000_M10_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.
|
| CdFERT |
222.1 |
M_MAP*Cd_in_MAP+ M_Urea*Cd_in_Urea |
[kgC] Total amount of Cd applied with MAP: mass of fertilizer x Cdcontent in fertilizer
|
| DM_residue |
0.88 |
DM_forage_crops_Resi |
Dry matter content of forage_crops residues - National Inventory Report 2014, Vol 1 (2016)
|
| fracS_Pb |
1.0 |
— |
(2,3,2,3,1,na) - Fraction of heavy metals from fertilizers released in soil
|
| fracS_Hg |
1.0 |
— |
(2,3,2,3,1,na) - Fraction of heavy metals from fertilizers released in soil
|
| 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)
|
| M_lime |
180.0 |
— |
(3,3,2,2,2,na) - [kg] limestone (adjusted to account for purity: 900 g/kg)
|
| AF_MAP |
0.07820200752439999 |
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.
|
| PestLCIOFII_AI_0501_I000_M05_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.
|
| FracWet |
0.205980761 |
— |
(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
|
| M_tot_supply |
329.3 |
M_MAP+M_Urea+M_lime+M_AI_0501_I000_M05_A03_DR0+M_AI_1176_I000_M10_A03_DR0 |
[kg] products transported to the farm gate
|
| fracGW_AI_0501_I000_M05_A03_DR0 |
— |
Switch_PestSP*PestLCIGWII_AI_0501_I000_M05_A03_DR0 |
Fraction of AlSubstance reaching ground water - data from PESTLCI.
|
| fracAir_AI_1176_I000_M10_A03_DR0 |
0.01 |
(1-Switch_PestSP)*PestLCIAir_AI_1176_I000_M10_A03_DR0+Switch_PestSP*PestLCIAirII_AI_1176_I000_M10_A03_DR0 |
Fraction of AlSubstance released in air - data from PESTLCI.
|
| Supply_distance |
200.0 |
— |
(4,3,1,3,1,na) - [km] average distance to supply farm inputs (fertilizers, pesticides, lime)
|
| 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)
|
| PestLCIOF_AI_0501_I000_M05_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.
|
| RUSLE_K |
0.026981 |
— |
(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
|
| EF_Particulate_matter |
8.5 |
— |
(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)
|
| CC_forage_crops_Crop |
0.4 |
— |
(2,3,3,1,1,na) - Carbon mass fraction in dry matter for forage_crops crop - set same as value for residue based on National Inventory Report 2014, Vol 1 (2016)
|
| CUrea |
21.6 |
M_Urea*C_in_Urea |
[kgC] Total amount of Carbon applied with urea: mass of urea x carbon content in urea
|
| Res_ab_forage_crops |
0.37 |
— |
(1,3,2,1,1,na) - below ground/above ground residue ratio for forage_crops - National Inventory Report 2014, Vol 1 (2016)
|
| 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)
|
| EF_Arsenic |
0.0000255 |
— |
(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)
|
| Switch_PestLCI |
1.0 |
— |
if = 1, switch to use PestLCI values
|
| 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
|
| PestDefaultSoil_AI_0501_I000_M05_A03_DR0 |
1.0 |
— |
(2,3,2,3,1,na) - Default fraction of AlSubstance released in soil.
|
| PestDefaultSoil_AI_1176_I000_M10_A03_DR0 |
1.0 |
— |
(2,3,2,3,1,na) - Default fraction of AlSubstance released in soil.
|
| NFERT |
53.78 |
M_MAP*N_in_MAP+M_Urea*N_in_Urea |
Total amount of N applied: sum of (mass of nitrogen fertilizer x nitrogen content)
|
| C_in_urea |
0.2 |
— |
(2,3,3,1,1,na) - C content in urea
|
| Switch_PestSP |
— |
— |
if = 1, switch to use PestLCI secondary partitioning
|
| 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)
|
| DM_forage_crops_Crop |
0.88 |
— |
(2,3,3,1,1,na) - Dry matter content of forage_crops crop - set same as value for residue based on National Inventory Report 2014, Vol 1 (2016)
|
| Nb_Haybaling_round |
1.0 |
— |
(2,3,1,1,1,na) - Number of times the field is processed with Hay baling, round bales.
|
| EFC_lime_nonirrc |
0.12 |
— |
(1,3,2,1,1,na) - kgC Emission factor for lime - National Inventory Report 2014, Vol 1 (2016)
|
| 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)
|
| M_Urea |
108.0 |
— |
(3,1,1,1,3,na) - [kg] urea
|
| M_AI_0501_I000_M05_A03_DR0 |
0.015 |
— |
(3,3,1,1,1,na) - applied month May with leaf interception of Stage I and drift reduction method None and application method Bare soil & crops <20cm (DE, Ganzelmeier&Rautmann).
|
| EF_N_Direct |
0.008186939184 |
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 AER13_Central
|
| AF_Urea100L |
0.072 |
— |
(2,2,2,2,1,na) - Acid Factor in kMol/kg N in Urea. Based on Upjohn, Fenton & Conyers (2005)
|
| fracSoil_AI_0501_I000_M05_A03_DR0 |
0.82843623 |
(1-Switch_PestSP)*PestLCISoil_AI_0501_I000_M05_A03_DR0+Switch_PestSP*PestLCISoilII_AI_0501_I000_M05_A03_DR0 |
Default fraction of AlSubstance released in soil.
|
| AshAlkalinity |
0.07 |
— |
(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.
|
| RUSLE |
2.2529062907781108 |
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) forAER13_Central
|
| PestLCIGWII_AI_1176_I000_M10_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.
|
| P_in_MAP |
0.22 |
— |
Phosphorus fraction in Mono ammonium phosphate - FIFA Fertilizer Industry Federation of Australia Environment report 2010.
|
| HgFERT |
0.5018 |
M_MAP*Hg_in_MAP+ M_Urea*Hg_in_Urea |
[kgC] Total amount of Hg applied with MAP: mass of fertilizer x Hgcontent in fertilizer
|
| fracCrop_AI_0501_I000_M05_A03_DR0 |
— |
(1-Switch_PestSP)*PestLCICrop_AI_0501_I000_M05_A03_DR0+Switch_PestSP*PestLCICropII_AI_0501_I000_M05_A03_DR0 |
Fraction of AlSubstance remaining on crop - data from PESTLCI.
|
| 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}
|
| M_MAP |
41.0 |
— |
(3,1,1,1,3,na) - [kg] monoammonium phosphate
|
| CC_forage_crops_Resi |
0.4 |
— |
(2,3,3,1,1,na) - Carbon mass fraction in dry matter for forage_crops residues - National Inventory Report 2014, Vol 1 (2016)
|
| EF_Copper |
0.000187 |
— |
(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)
|
| Hg_in_Urea |
0.00085 |
— |
(2,3,2,3,1,na) - mg/kg Mercury content - Vic DPI fertiliser survey 2008-09
|
| PestLCISoilII_AI_0501_I000_M05_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.
|
| Nb_Planting_clay10_20 |
1.0 |
— |
Number of times the field is processed with Planting, soil clay content 10-20%.
|
| DLUC_value |
— |
— |
(2,2,1,1,1,na) - [tCO2eq/ha/year] Annual direct CO2 emissions from land use change. Source: Blonk 2016
|
| 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
|
| 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)
|
| NAAR_Lime |
-3.6 |
m_lime*AF_Lime |
kg H+ Added due to lime addition
|
| PFERT |
9.02 |
M_MAP*P_in_MAP |
Total amount of P applied: sum of (mass of phosphorus fertilizer x phosphorus content)
|
| NCag_forage_crops_Resi |
0.006 |
— |
(1,3,2,1,1,na) - N content of above-ground crop residues for forage_crops residues - National Inventory Report 2014, Vol 1 (2016)
|
| 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
|
| 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}
|
| Total_area |
16940.0 |
— |
Total area of cropping in the AER
|
| 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)
|
| 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)
|
| EF_Chromium_VI |
0.000264 |
— |
(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)
|
| Replace1stGlyphosate |
0.38 |
iff(No_add_tillage<1;No_add_tillage;1) |
Additional tillage
|
| EF_Zinc |
0.000714 |
— |
(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)
|
| EF_TOC |
5.5 |
— |
(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)
|
| fracS_Cd |
1.0 |
— |
(2,3,2,3,1,na) - Fraction of heavy metals from fertilizers released in soil
|
| N_in_MAP |
0.1 |
— |
Nitrogen fraction in MAP fertiliser - FIFA Fertilizer Industry Federation of Australia Environment report 2010.
|
| RUSLE_R |
1507.257373 |
— |
(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
|
| EF_Antimony |
0.000391 |
— |
(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)
|
| PestLCIAirII_AI_0501_I000_M05_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.
|
| N_in_urea |
0.46 |
— |
(2,3,2,3,1,na) nitrogen fraction in urea
|
| M_AI_1176_I000_M10_A03_DR0 |
0.285 |
— |
(3,3,1,1,1,na) - applied month October with leaf interception of Stage I and drift reduction method None and application method Bare soil & crops <20cm (DE, Ganzelmeier&Rautmann).
|
| Hg_in_MAP |
0.01 |
— |
(2,3,2,3,1,na) - mg/kg Mercury content - Vic DPI fertiliser survey 2008-09
|
| EF_Selenium |
0.0000425 |
— |
(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)
|
| No_add_tillage |
0.38 |
Frac_No_till*0+Frac_Min_till*1+Frac_Multi_till*2 |
Additional tillage
|
| PestLCICrop_AI_1176_I000_M10_A03_DR0 |
— |
— |
(2,3,2,3,1,na) - Primary partitioning fraction of AlSubstance deposited on crop. Calculated using consensus model based on PEST LCI.
|
| NAAR_Tot |
-2.867236286289992 |
NAAR_Crop + NAAR_Cropimport+NAAR_Lime+NAAR_fert |
[kg H+] Added due to the system - Net addition (-ve = subtraction) of H+ in kg
|
| RUSLE_C |
0.035015 |
— |
(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
|
| EF_Cobalt |
0.0000935 |
— |
(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)
|
| 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)
|
| 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)
|
| Res_ab_crop |
0.37 |
Res_ab_forage_crops |
below ground/above ground residue ratio for forage_crops - National Inventory Report 2014, Vol 1 (2016)
|
| 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)
|
| PestLCIDegrII_AI_0501_I000_M05_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.
|
| PestLCISoil_AI_0501_I000_M05_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.
|
| PestLCICropII_AI_1176_I000_M10_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.
|
| Res_forage_crops |
1.34 |
— |
(1,3,2,1,1,na) - residue/crop ratio for forage_crops - National Inventory Report 2014, Vol 1 (2016)
|
| AF_Urea |
0.0044491844376 |
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.
|
| FracRainb600mm |
0.039132602 |
0.039132602 |
percentage of cultivation area with rainfall <600mm = 0.3 - source: climate data source fromQueensland Government, 2016
|
| PestLCIDegrII_AI_1176_I000_M10_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.
|
| EFC_lime |
0.12 |
EFC_lime_nonirrc |
kgC
|
| CC_residue |
0.4 |
CC_forage_crops_Resi |
Carbon mass fraction in dry matter for forage_crops residues - National Inventory Report 2014, Vol 1 (2016)
|
| fracSoil_AI_1176_I000_M10_A03_DR0 |
0.82843623 |
(1-Switch_PestSP)*PestLCISoil_AI_1176_I000_M10_A03_DR0+Switch_PestSP*PestLCISoilII_AI_1176_I000_M10_A03_DR0 |
Default fraction of AlSubstance released in soil.
|
| Surface |
1.0 |
— |
[ha] of land use
|
| PestLCISoilII_AI_1176_I000_M10_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.
|
| fracAir_AI_0501_I000_M05_A03_DR0 |
0.01 |
(1-Switch_PestSP)*PestLCIAir_AI_0501_I000_M05_A03_DR0+Switch_PestSP*PestLCIAirII_AI_0501_I000_M05_A03_DR0 |
Fraction of AlSubstance released in air - data from PESTLCI.
|
| PestLCIOF_AI_1176_I000_M10_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
|