Scores › ecoinvent 3.12 cutoff
market for spent pot liner from Al electrolysis, carbon fraction CH
-1 kilogram of spent pot liner from Al electrolysis, carbon fraction; an inventory of 2,771 flows, of which 2,771 reached a consensus flow and 0 did not.
3e540b2c-a12a-50bc-af5f-30bcab51950e · brightway 56824dfe79a85b4a08ded523cd66ab56 · ISIC rev.4 ecoinvent: 3822:Treatment and disposal of hazardous waste · CPC: 39310: Slag, dross, scalings and other waste from the manufacture of iron or steel
| Category | Vendor | This list | Ours ÷ theirs | Band | Unmapped share |
|---|---|---|---|---|---|
|
acidification
mol H+-Eq
|
-5.4236e-04 | -5.4236e-04 | 1.000 | within tolerance | 0.00 |
|
climate change
kg CO2-Eq
|
-0.27007 | -0.270073 | 1.000 | within tolerance | 0.00 |
|
climate change: biogenic
kg CO2-Eq
|
-2.7097e-05 | -2.7097e-05 | 1.000 | identical | 0.00 |
|
climate change: fossil
kg CO2-Eq
|
-0.270022 | -0.270024 | 1.000 | within tolerance | 0.00 |
|
climate change: land use and land use change
kg CO2-Eq
|
-2.1609e-05 | -2.1609e-05 | 1.000 | within tolerance | 0.00 |
|
ecotoxicity: freshwater
CTUe
|
-0.55829 | -0.558284 | 1.000 | within tolerance | 0.00 |
|
ecotoxicity: freshwater, inorganics
CTUe
|
-0.552816 | -0.552816 | 1.000 | within tolerance | 0.00 |
|
ecotoxicity: freshwater, organics
CTUe
|
-0.005474 | -0.005468 | 0.999 | within tolerance | 0.00 |
|
energy resources: non-renewable
MJ, net calorific value
|
-0.967682 | -0.96761 | 1.000 | within tolerance | 0.00 |
|
eutrophication: freshwater
kg P-Eq
|
-1.8344e-04 | -1.8344e-04 | 1.000 | within tolerance | 0.00 |
|
eutrophication: marine
kg N-Eq
|
-0.013491 | -0.013491 | 1.000 | within tolerance | 0.00 |
|
eutrophication: terrestrial
mol N-Eq
|
-0.002131 | -0.002131 | 1.000 | within tolerance | 0.00 |
|
human toxicity: carcinogenic
CTUh
|
-7.4071e-11 | -7.4071e-11 | 1.000 | within tolerance | 0.00 |
|
human toxicity: carcinogenic, inorganics
CTUh
|
-6.7473e-11 | -6.7473e-11 | 1.000 | within tolerance | 0.00 |
|
human toxicity: carcinogenic, organics
CTUh
|
-6.5984e-12 | -6.5984e-12 | 1.000 | within tolerance | 0.00 |
|
human toxicity: non-carcinogenic
CTUh
|
-1.7690e-09 | -1.7690e-09 | 1.000 | within tolerance | 0.00 |
|
human toxicity: non-carcinogenic, inorganics
CTUh
|
-1.7327e-09 | -1.7327e-09 | 1.000 | within tolerance | 0.00 |
|
human toxicity: non-carcinogenic, organics
CTUh
|
-3.6339e-11 | -3.6339e-11 | 1.000 | within tolerance | 0.00 |
|
ionising radiation: human health
kBq U235-Eq
|
-0.008228 | -0.008228 | 1.000 | within tolerance | 0.00 |
|
land use
dimensionless
|
-1.491758 | -1.491758 | 1.000 | within tolerance | 0.00 |
|
material resources: metals/minerals
kg Sb-Eq
|
-8.9943e-07 | -8.9943e-07 | 1.000 | within tolerance | 0.00 |
|
ozone depletion
kg CFC-11-Eq
|
-9.3395e-10 | -9.3859e-10 | 1.005 | within tolerance | 0.00 |
|
particulate matter formation
disease incidence
|
-5.2103e-09 | -5.2103e-09 | 1.000 | within tolerance | 0.00 |
|
photochemical oxidant formation: human health
kg NMVOC-Eq
|
-6.0953e-04 | -6.0953e-04 | 1.000 | within tolerance | 0.00 |
|
water use
m3 world Eq deprived
|
-0.044123 | -0.042833 | 0.971 | 2x | 0.00 |
photochemical oxidant formation: human health: 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 kilogram; 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 |
|---|---|---|---|---|---|---|---|---|---|
| Carbon monoxide, fossil ba2f3f82-c93a-47a5-822a-37ec97495275 |
Carbon Monoxide (fossil) | -6.9469e-04 | — | 0.0456 | 0.0456 | -3.1678e-05 | -3.1678e-05 | 5.3415e-13 | agree |
| Sulfur dioxide fd7aa71c-508c-480d-81a6-8052aad92646 |
Sulfur Dioxide | -8.2555e-05 | — | 0.0811 | 0.0811 | -6.6952e-06 | -6.6952e-06 | 1.5943e-13 | agree |
| Methane, fossil 70ef743b-3ed5-4a6d-b192-fb6d62378555 |
Methane (fossil) | -1.8678e-04 | — | 0.0101 | 0.0101 | -1.8865e-06 | -1.8865e-06 | -7.3479e-14 | agree |
| Sulfur dioxide 78c3efe4-421c-4d30-82e4-b97ac5124993 |
Sulfur Dioxide | -3.2715e-05 | — | 0.0811 | 0.0811 | -2.6532e-06 | -2.6532e-06 | 6.3179e-14 | agree |
| Butane fa5512cf-04a2-4014-8e96-d3e2d137f0df |
Butane | -1.4198e-06 | — | 0.595 | 0.595 | -8.4475e-07 | -8.4475e-07 | 4.0619e-14 | agree |
| Sulfur dioxide 8c52f40c-69b7-4538-8923-b371523c71f5 |
Sulfur Dioxide | -7.8554e-06 | — | 0.0811 | 0.0811 | -6.3707e-07 | -6.3707e-07 | 1.5170e-14 | agree |
| Pentane 2f052025-4072-4d8e-b22d-68d50bfb260c |
Pentane | -1.0872e-06 | — | 0.667 | 0.667 | -7.2517e-07 | -7.2517e-07 | -4.6658e-15 | agree |
| Nitrogen oxides c1b91234-6f24-417b-8309-46111d09c457 |
Nitrogen Oxides | -4.1428e-04 | — | 1 | 1 | -4.1428e-04 | -4.1428e-04 | 0 | agree |
| NMVOC, non-methane volatile organic compounds 33b38ccb-593b-4b11-b965-10d747ba3556 |
Non-methane Volatile Organic Compounds | -6.5855e-05 | — | 1 | 1 | -6.5855e-05 | -6.5855e-05 | 0 | agree |
| NMVOC, non-methane volatile organic compounds d3260d0e-8203-4cbb-a45a-6a13131a5108 |
Non-methane Volatile Organic Compounds | -4.3980e-05 | — | 1 | 1 | -4.3980e-05 | -4.3980e-05 | 0 | agree |
| Nitrogen oxides 77357947-ccc5-438e-9996-95e65e1e1bce |
Nitrogen Oxides | -2.9917e-05 | — | 1 | 1 | -2.9917e-05 | -2.9917e-05 | 0 | agree |
| Nitrogen oxides d068f3e2-b033-417b-a359-ca4f25da9731 |
Nitrogen Oxides | -5.2993e-06 | — | 1 | 1 | -5.2993e-06 | -5.2993e-06 | 0 | agree |
| NMVOC, non-methane volatile organic compounds 175baa64-d985-4c5e-84ef-67cc3a1cf952 |
Non-methane Volatile Organic Compounds | -2.3815e-06 | — | 1 | 1 | -2.3815e-06 | -2.3815e-06 | 0 | agree |