Soybean, seed (whole) - Argentina - 2010-2025
Life cycle assessment data for Soybean, seed (whole) - Argentina - 2010-2025: environmental impacts, inputs and productivity — free and open on HESTIA.
- Functional unit: 1 ha
- Start date: 2010
- End date: 2025
- Cycles aggregated: 101
- Data quality score: 2
Products
Emissions
- NH3, to air, inputs production: 0.19561303217413417 kg NH3
- CO2, to air, inputs production: 190.99252201928604 kg CO2
- N2O, to air, inputs production: 0.5509627391235286 kg N2O
- CH4, to air, inputs production, fossil: 0.4980062814094004 kg CH4
- CH4, to air, inputs production, non-fossil: 0.004856494387797385 kg CH4
- NOx, to air, inputs production: 0.7378939493505006 kg NOx
- SO2, to air, inputs production: 0.9433835148121872 kg SO2
- Bromochlorodifluoromethane, to air, inputs production: 6.616672273673164e-7 kg CBrClF2
- Chlorodifluoromethane, to air, inputs production: 0.000006519393506964066 kg CHClF2
- Dichlorodifluoromethane, to air, inputs production: 0.00000374208968593333 kg CCl2F2
- 1,1,2-Trichlorotrifluoroethane, to air, inputs production: 4.436930404451231e-8 kg C2Cl3F3
- 1,1-Dichlorotetrafluoroethane, to air, inputs production: 0.0000011155468695984517 kg C2Cl2F4
- CO2, to air, below ground biomass stock change, management change: 33.41413068316832 kg CO2
- CO2, to air, below ground biomass stock change, land use change: 0 kg CO2
- CO2, to air, soil organic carbon stock change, land use change: 0 kg CO2
- CO2, to air, above ground biomass stock change, management change: 32.10089724752475 kg CO2
- CO2, to air, above ground biomass stock change, land use change: 0 kg CO2
- N2O, to air, inorganic fertiliser, direct: 0.1446966842709411 kg N2O
- N2O, to air, organic fertiliser, direct: 0.001625283417404598 kg N2O
- NH3, to air, organic fertiliser: 0.016385298924394536 kg NH3
- NOx, to air, organic fertiliser: 0.0013409993793103447 kg NOx
- NOx, to air, inorganic fertiliser: 0.11938727837724138 kg NOx
- CO2, to air, urea hydrolysis: 15.788570133620732 kg CO2
- NOx, to air, crop residue burning: 0.022562588118811882 kg NOx
- N2O, to air, crop residue burning, direct: 0.0005078396039603961 kg N2O
- CH4, to air, crop residue burning: 0.042223235643564366 kg CH4
- NH3, to air, inorganic fertiliser: 2.098408393148695 kg NH3
- NH3, to air, crop residue burning: 0.015743027722772276 kg NH3
- N2O, to air, organic soil cultivation, direct: 0 kg N2O
- NO3, to groundwater, inorganic fertiliser: 0 kg NO3
- NO3, to groundwater, organic fertiliser: 0 kg NO3
- NO3, to groundwater, crop residue decomposition: 1.2474964295129234 kg NO3
- N2O, to air, crop residue decomposition, direct: 0.20896659706322454 kg N2O
- NH3, to air, crop residue decomposition: 0 kg NH3
- NOx, to air, crop residue decomposition: 0.13011206185281424 kg NOx
- NOx, to air, fuel combustion: 0.8343115919763158 kg NOx
- SO2, to air, fuel combustion: 0.025084113157894737 kg SO2
- N2O, to air, fuel combustion, direct: 0.0034114393894736843 kg N2O
- N2O, to air, organic fertiliser, indirect: 0.0003381652573915934 kg N2O
- CO2, to air, fuel combustion: 79.42997534210527 kg CO2
- N2O, to air, crop residue decomposition, indirect: 0.006825645340488926 kg N2O
- CO2, to air, lime hydrolysis: 7.030296 kg CO2
- N2O, to air, inorganic fertiliser, indirect: 0.004102845776147743 kg N2O
- P, to surface water, soil flux: 0 kg P
- N, erosion, soil flux: 14.742121510578551 kg N
- P, to groundwater, soil flux: 0.07 kg P
- P, erosion, soil flux: 1.488788933666333 kg P
- P, to drainage water, soil flux: 0 kg P
- CO2, to air, organic soil cultivation: 0 kg CO2
Inputs
Practices