Scores › ecoinvent 3.12 cutoff
treatment of wastewater from pig iron production, wastewater treatment RoW
-1 cubic meter of wastewater from pig iron production; an inventory of 2,771 flows, of which 2,771 reached a consensus flow and 0 did not.
143fb28e-a47e-58cd-966a-c10a21018a8b · brightway 76fe5b1654d33ff23de1f1916dfbc31a · ISIC rev.4 ecoinvent: 3700:Sewerage · CPC: 39990: Other wastes n.e.c.
| Category | Vendor | This list | Ours ÷ theirs | Band | Unmapped share |
|---|---|---|---|---|---|
|
acidification
mol H+-Eq
|
-5.0998e-04 | -5.0998e-04 | 1.000 | within tolerance | 0.00 |
|
climate change
kg CO2-Eq
|
-0.120334 | -0.120346 | 1.000 | within tolerance | 0.00 |
|
climate change: biogenic
kg CO2-Eq
|
-0.015283 | -0.015283 | 1.000 | within tolerance | 0.00 |
|
climate change: fossil
kg CO2-Eq
|
-0.10491 | -0.104923 | 1.000 | within tolerance | 0.00 |
|
climate change: land use and land use change
kg CO2-Eq
|
-1.4122e-04 | -1.4122e-04 | 1.000 | within tolerance | 0.00 |
|
ecotoxicity: freshwater
CTUe
|
-0.575326 | -0.5753 | 1.000 | within tolerance | 0.00 |
|
ecotoxicity: freshwater, inorganics
CTUe
|
-0.564164 | -0.564164 | 1.000 | within tolerance | 0.00 |
|
ecotoxicity: freshwater, organics
CTUe
|
-0.011162 | -0.011136 | 0.998 | within tolerance | 0.00 |
|
energy resources: non-renewable
MJ, net calorific value
|
-1.162547 | -1.162529 | 1.000 | within tolerance | 0.00 |
|
eutrophication: freshwater
kg P-Eq
|
-3.9513e-05 | -3.9513e-05 | 1.000 | within tolerance | 0.00 |
|
eutrophication: marine
kg N-Eq
|
-1.3991e-04 | -1.3991e-04 | 1.000 | within tolerance | 0.00 |
|
eutrophication: terrestrial
mol N-Eq
|
-0.001229 | -0.001229 | 1.000 | within tolerance | 0.00 |
|
human toxicity: carcinogenic
CTUh
|
-1.3137e-10 | -1.3137e-10 | 1.000 | within tolerance | 0.00 |
|
human toxicity: carcinogenic, inorganics
CTUh
|
-9.1400e-11 | -9.1400e-11 | 1.000 | within tolerance | 0.00 |
|
human toxicity: carcinogenic, organics
CTUh
|
-3.9972e-11 | -3.9972e-11 | 1.000 | within tolerance | 0.00 |
|
human toxicity: non-carcinogenic
CTUh
|
-9.2488e-09 | -9.2488e-09 | 1.000 | within tolerance | 0.00 |
|
human toxicity: non-carcinogenic, inorganics
CTUh
|
-9.1654e-09 | -9.1654e-09 | 1.000 | within tolerance | 0.00 |
|
human toxicity: non-carcinogenic, organics
CTUh
|
-8.3406e-11 | -8.3406e-11 | 1.000 | within tolerance | 0.00 |
|
ionising radiation: human health
kBq U235-Eq
|
-0.006471 | -0.006471 | 1.000 | within tolerance | 0.00 |
|
land use
dimensionless
|
-0.858947 | -0.858947 | 1.000 | within tolerance | 0.00 |
|
material resources: metals/minerals
kg Sb-Eq
|
-9.0016e-07 | -9.0015e-07 | 1.000 | within tolerance | 0.00 |
|
ozone depletion
kg CFC-11-Eq
|
-1.3077e-09 | -1.3390e-09 | 1.024 | 2x | 0.00 |
|
particulate matter formation
disease incidence
|
-1.2216e-08 | -1.2216e-08 | 1.000 | within tolerance | 0.00 |
|
photochemical oxidant formation: human health
kg NMVOC-Eq
|
-3.8041e-04 | -3.8041e-04 | 1.000 | within tolerance | 0.00 |
|
water use
m3 world Eq deprived
|
-0.02771 | 42.924184 | -1549.041 | incomparable | 0.00 |
climate change: flow by flow
Every flow whose contribution the comparison kept — all that differ, and the agreeing ones above a thousandth of the score — largest gap first. Amounts are per -1 cubic meter; where the consensus flow is measured in another unit, × is the conversion the merge recorded and our factor is per that unit.
| Vendor flow | Consensus flow | Amount | × | Their factor | Our factor | Theirs | Ours | Gap | Reason |
|---|---|---|---|---|---|---|---|---|---|
| Sulfur hexafluoride 35d1dff5-b535-4628-9826-4a8fce08a1f2 |
Sulfur hexafluoride | -1.3524e-08 | — | 24,300 | 25,200 | -3.2864e-04 | -3.4081e-04 | -1.2172e-05 | factor differs |
| Methane, fossil 70ef743b-3ed5-4a6d-b192-fb6d62378555 |
Methane (fossil) | -2.4620e-04 | — | 29.799999 | 29.8 | -0.007337 | -0.007337 | -1.8784e-10 | agree |
| Sulfur hexafluoride 856c9aa2-c20c-49a8-9417-c71bdb5f17b0 |
Sulfur hexafluoride | -5.6457e-18 | — | 24,300 | 25,200 | -1.3719e-13 | -1.4227e-13 | -5.0811e-15 | factor differs |
| Carbon dioxide, fossil aa7cac3a-3625-41d4-bc54-33e2cf11ec46 |
Carbon Dioxide (fossil) | -0.062046 | — | 1 | 1 | -0.062046 | -0.062046 | 0 | agree |
| Carbon dioxide, fossil 349b29d1-3e58-4c66-98b9-9d1a076efd2e |
Carbon Dioxide (fossil) | -0.024895 | — | 1 | 1 | -0.024895 | -0.024895 | 0 | agree |
| Methane, non-fossil 57bdb443-d4a6-423d-8024-959b8261d02e |
Methane (biogenic) | -5.6599e-04 | — | 27 | 27 | -0.015282 | -0.015282 | 0 | agree |
| Carbon dioxide, fossil f9749677-9c9f-4678-ab55-c607dfdc2cb9 |
Carbon Dioxide (fossil) | -0.009459 | — | 1 | 1 | -0.009459 | -0.009459 | 0 | agree |
| Dinitrogen monoxide afd6d670-bbb0-4625-9730-04088a5b035e |
Nitrous Oxide | -1.2096e-06 | — | 273 | 273 | -3.3022e-04 | -3.3022e-04 | 0 | agree |
| Dinitrogen monoxide 20185046-64bb-4c09-a8e7-e8a9e144ca98 |
Nitrous Oxide | -9.0581e-07 | — | 273 | 273 | -2.4729e-04 | -2.4729e-04 | 0 | agree |
| Dinitrogen monoxide 6dc1b46f-ee89-4495-95c4-b8a637bcd6cb |
Nitrous Oxide | -5.8441e-07 | — | 273 | 273 | -1.5955e-04 | -1.5955e-04 | 0 | agree |
| Carbon dioxide, from soil or biomass stock 78eb1859-abd9-44c6-9ce3-f3b5b33d619c |
Carbon Dioxide (land Use Change) | -1.4452e-04 | — | 1 | 1 | -1.4452e-04 | -1.4452e-04 | 0 | agree |
| Carbon dioxide, non-fossil 73ed05cc-9727-4abf-9516-4b5c0fe54a16 |
Carbon Dioxide (biogenic) | -0.003196 | — | — | 0 | 0 | 0 | 0 | only consensus factor |
| Carbon dioxide, in air cc6a1abb-b123-4ca6-8f16-38209df609be |
Carbon Dioxide (biogenic) | -0.001639 | — | — | 0 | 0 | 0 | 0 | only consensus factor |
| Carbon dioxide, non-fossil d6235194-e4e6-4548-bfa3-ac095131aef4 |
Carbon Dioxide (biogenic) | -0.002762 | — | — | 0 | 0 | 0 | 0 | only consensus factor |
| Carbon dioxide, non-fossil eba59fd6-f37e-41dc-9ca3-c7ea22d602c7 |
Carbon Dioxide (biogenic) | -2.1671e-04 | — | — | 0 | 0 | 0 | 0 | only consensus factor |