Canola straw, dryland, Mallee {AU-SA}| canola seed production | AusLCI, U
Unit process v00.00.000
This dataset represents the production of 1 kg of canola. The yield is 1547 t/ha. Documentation for this dataset can be found in the 'LCAgMetrics Methodology for developing Life Cycle Inventory' report, available at https://agrifutures.com.au/. (Hume, I., Renouf, M.A., Eady, S.J., Grant, T., 2025). It was developed as part of the LCAgMetrics project, a partnership between Agrifutures Australia and Lifecycles, funded by the Australian Government’s Sustainability Reporting Uplift Grant as part of the National Agriculture Traceability Grants Program. Production Volume: 375326 t/yr. Activities included: This activity starts after the harvest of the previous crop. Activities included are: the inputs of seeds, mineral fertilisers, pesticides and irrigation water, all machine operations and corresponding machine infrastructure and sheds. It is assumed that no organic fertilisers are applied. Machine operations are: soil cultivation, sowing, fertilisation, irrigation, weed control, pest and pathogen control, combine-harvest, and drying of grains. Direct field emissions are included. This activity ends after harvest and drying of grains at the farm gate. Energy values: 28.8MJ/kg (gross). Nutritional values: Protein: 21%. Carbohydrate: 0%. Fat: 46%. Geography: Mallee Murray and central North South Australia, SA, AU. Technology level: Represents current practices as per gross margins reports (AgMargins 2024 & SA Gross Margin Guide 2022). Time period: 2017-2021. Record: Data entry by: Isobel Hume; Tel: +61(0)3 9417 1190; E-mail: office@lifecycles.com.au; Company: Life Cycle Strategies; Country: AU Generator: Data entry by: Isobel Hume; Tel: +61(0)3 9417 1190; E-mail: office@lifecycles.com.au; Company: Life Cycle Strategies; Country: AU
- Sector
- Material
- Contributor
- —
- Last updated
- 30 May 2025
- Reference ID
2ca9716d-1e9a-374c-8d7f-e6c40b97b3ee
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Documentation
- Quantitative reference
- Canola straw, dryland, Mallee {AU-SA}| canola seed production | AusLCI, U
- Sampling procedure
- Secondray data compiled from publicly available resources. Validated by expert knowledge to represent typical representative practices and inputs.
- Creation date
- 30 May 2025
- Is copyright protected
- No
- Is infrastructure process
- No
- Tags
- material
- Sources
- —
Product outputs
| Flow | Amount | Unit | Comment |
|---|---|---|---|
| Canola straw, dryland, Mallee {AU-SA}| canola seed production | AusLCI, U | 289.646136 | kg | Carbon content, fossil: 0.0 kg C/kg dry mass. Carbon content, non-fossil: 0.4 kg C/kg dry mass. Dry mass: 0.92 kg/kg wet mass. Wet mass: 1 kg/kg wet mass. Heating value, gross: 18.9 MJ/kg |
Technical inputs
| Flow | Amount | Unit | Comment |
|---|---|---|---|
| Canola straw, dryland, Mallee , biogenic C not balanced {AU-SA}| canola seed production | AusLCI, U | 289.646136 | kg | — |
| Carbon correction factor {AU}| | AusLCI, U | 96.8576678784 | kg | Atmospheric CO2 absorbed by the plant. Calculated. |
Parameters
| Name | Value | Formula | Description |
|---|---|---|---|
| EFburn_CO | 0.078 | — | (2,3,2,3,1,na) - [Gg element in species/Gg element in fuel burnt] Emission factor from crop residues burning for CO - NIR 2023 (DCCEEW, 2025). |
| All_Eco | 99.07089496499371 | (m_grain*P_Crop)/(P_Straw*m_straw+m_grain*P_Crop)*100 | Economic allocation fraction for the primary crop |
| Allocation | 1.0 | — | Allocation switch, 1 = Economic alocation (default for AusLCI), 2 = Energy allocation, 3 = Mass allocation, - |
| All_Straw_En | 14.99133177151603 | (straw_DM*ed_straw)/(ed_Straw*straw_DM+grain_DM*ED_Crop)*100 | Allocation fraction for straw based on energy content |
| EFburn_CH4 | 0.004 | — | (2,3,2,3,1,na) - [Gg element in species/Gg element in fuel burnt] Emission factor from crop residues burning for CH4 - NIR 2023 (DCCEEW, 2025). |
| Grain_DM | 1358.9444 | m_grain*DM_Crop | kg DM of grain - |
| EFburn_CO2 | — | — | (2,3,2,3,1,na) - [Gg element in species/Gg element in fuel burnt] Emission factor from crop residues burning for CO2 - NIR 2023 (DCCEEW, 2025). |
| Carbon_Residue_remaining | 3281.454712917334 | Yield*Res_crop*((1-Fburnt-Fremoved))*DM_residue*CC_residue*44/12 | [kg CO2] Carbon emission from residue remaining - |
| Carbon_Straw | 373.836612864 | Straw_DM*CC_residue*44/12 | [kg CO2] Biogenic carbon absorbed by straw CO2 - |
| Straw_DM | 254.88859968 | m_straw*DM_residue | kg DM of straw - |
| Yield | 1547.255 | — | (1,2,1,1,1,na) -[kg/ha] yield, calculated from five year average ('18 - '22) - Australian Bureau of Statistics 2017-2022 |
| All_Mass | 84.20601141936366 | (grain_DM/(straw_DM+grain_DM))*100 | Mass allocation fraction for the primary crop |
| NCag_residue | 0.009 | — | (1,3,2,1,1,na) - [kgN/kgDM] Nitrogen content of above-ground canola crop residue - NIR 2023 (DCCEEW, 2025). |
| CC_residue | 0.4 | — | (2,3,3,1,1,na) - [KgC/kgDM] Carbon mass fraction in dry matter for canola straw - NIR 2023 (DCCEEW, 2025). |
| Biogenic_CO2sent_out_with_straw | 18.691830643200007 | (Carbon_Grain+Carbon_Straw+Biogenic_carbon_Allocation_adjust_grain)*All_straw/100 | [kg CO2] biogenic carbon exported in canola straw - |
| Carbon_not_burnt_in_burn_deg | 9.968976343040008 | Yield*Res_crop*Fresremaining*DM_residue*(1-Burn_efficiency)*Fburnt*CC_residue*44/12 | [kg CO2] Carbon emission from fraction of carbon not burnt in the burn kg CO2 - |
| All_Straw | 0.9291050350062745 | iff(Allocation=2; All_straw_EN; iff(Allocation =3; All_straw_Mass;All_straw_Eco)) | Allocation to straw - |
| All_Grain | 99.07089496499371 | iff(Allocation=2; All_EN; iff(Allocation =3; All_Mass;All_Eco)) | Allocation to wheat - |
| m_grain | 1544.255 | yield-Seed_input | kg Grain - wet mass - |
| DM_crop | 0.88 | — | (2,3,3,1,1,na) - [kg dry weight/kg crop] Dry matter content of canola crop - NIR 2023 (DCCEEW, 2025). |
| P_Crop | 400.0 | — | (1,1,1,2,1,na) -[AUD] Australian dollars per tonne - CSIRO, 2025 |
| All_En | 85.00866822848397 | (grain_DM*ED_Crop)/(straw_DM*ed_Straw+grain_DM*ED_Crop)*100 | Allocation fraction for the primary crop based on energy content |
| Fburnt | 0.12 | — | (1,3,2,1,1,na) - Fraction of residues burnt for the AER - NIR 2023 (DCCEEW, 2025). |
| Carbon_burning | — | Yield*Res_crop*Fresremaining*DM_residue*Fburnt*CC_residue*Burn_efficiency*EFburn_CO2*44/12 | [kg CO2] Carbon emission from residue burnt - |
| Carbon_deg_before_burn | 249.224408576 | Yield*Res_crop*Fburnt*(1-Fresremaining)*DM_residue*CC_residue*44/12 | [kg CO2] Carbon emission from residue set to be burnt by degraded before burn - |
| ED_Crop | 18.4 | — | (1,1,3,3,2,na) -[MJ/kg DM ] Energy density of canola crop - Feedipedia |
| Biogenic_CO2sent_out_with_grain | 2344.9635675009577 | (Carbon_Grain+Carbon_Straw)*All_Grain/100 | [kg CO2] biogenic carbon exported in canola - |
| P_Straw | 20.0 | — | (4,1,1,2,1,na) -[AUD] Australian dollars per tonne - |
| Carbon_Absorb_Residue | 4153.740142933334 | (Yield*Res_crop*DM_residue*CC_residue)*44/12 | [kg CO2] Carbon dioxide absorbtion in residue production - |
| Fresremaining | 0.5 | — | (1,3,2,1,1,na) - Fraction remaining at the time of burning for the AER - NIR 2023 (DCCEEW, 2025). |
| Carbon_Absorb_Crop | 1993.1184533333335 | (((Yield-seed_input)*DM_crop*CC_crop))*44/12 | [kg CO2] Carbon dioxide absorbtion in grain net grain production (excluding seed input) kg - |
| Carbon_balance | 219.63648678985746 | Carbon_Absorb_Crop+Carbon_Absorb_Residue-Carbon_burning-Carbon_not_burnt_in_burn_deg-Carbon_deg_before_burn-Carbon_Residue_remaining-Carbon_Grain-Carbon_Straw-Carbon_monoxide_in_burn-Methane_in_burn | Balance check of all biogenic carbons. - |
| Seed_input | 3.0 | — | (3,3,2,3,2,na) - [kg/ha] of seed - |
| Biogenic_carbon_Allocation_adjust_grain | -355.1447822207997 | (Carbon_Grain-Biogenic_CO2sent_out_with_grain)/(All_Grain/100) | [kg CO2] kg carbon correction factor for the determning product (canola) - |
| CC_crop | 0.4 | — | (2,3,3,1,1,na) - [KgC/kgDM] Carbon mass fraction in dry matter for canola crop - NIR 2023 (DCCEEW, 2025). |
| Carbon_Grain | 1993.1184533333335 | Grain_DM*CC_crop*44/12 | [kg CO2] Biogenic carbon absorbed by grain CO2 - |
| Biogenic_carbon_Allocation_adjust_straw | 355.14478222080004 | (Carbon_Straw-Biogenic_CO2sent_out_with_straw) | [kg CO2] kg carbon correction factor for the determning product (canola) straw - |
| Carbon_monoxide_in_burn | 18.661923714170882 | Yield*Res_crop*Fresremaining*DM_crop*Burn_efficiency*Fburnt*CC_residue*EFburn_CO*44/12 | [kg CO2] Carbon monoxide as CO2 for balance purposes - |
| m_straw | 289.646136 | yield*Res_crop*fremoved | kg Straw - wet mass - |
| Fremoved | 0.09 | — | (1,3,2,1,1,na) - Fraction of the crop removed in the AER - NIR 2023 (DCCEEW, 2025). |
| NCbg_residue | 0.01 | — | (1,3,2,1,1,na) - [kgN/kgDM] Nitrogen content of below-ground canola crop residues - NIR 2023 (DCCEEW, 2025). |
| Res_crop | 2.08 | — | (1,3,2,1,1,na) - [kg crop residue/kg crop]] Residue/crop ratio for canola - NIR 2023 (DCCEEW, 2025). |
| All_Straw_Mass | 15.793988580636334 | (straw_DM)/(straw_DM+grain_DM)*100 | Mass allocation fraction for straw |
| DM_residue | 0.88 | — | (2,3,3,1,1,na) - [kg dry weight/kg residue] Dry matter content of canola residues - NIR 2023 (DCCEEW, 2025). |
| Lime_purity | 0.9 | — | (2,1,1,1,1,na) - fractional purity of limestone NIR 2023 (DCCEEW 2025). |
| Burn_efficiency | 0.96 | — | (2,3,2,3,1,na) - Default burning efficiency for residue from crop - NIR 2023 (DCCEEW, 2025). |
| Methane_in_burn | 0.9570217289318402 | Yield*Res_crop*Fresremaining*DM_crop*Burn_efficiency*Fburnt*CC_residue*EFburn_CH4*44/12 | [kg CO2] Methane as CO2 for balance purposes - |
| ED_Straw | 17.3 | — | (1,1,3,3,2,na) -[MJ/kg DM ] energy density of canola straw - Feedipedia |
| All_Straw_Eco | 0.9291050350062745 | (m_straw*P_straw)/(P_Straw*m_straw+m_grain*P_Crop)*100 | Economic allocation fraction for straw |
| OTHERDATA | 1.0 | — | OTHER DATA - - |