Nitrate
32ccfaa3-6556-11dd-ad8b-0800200c9a66
Identity
- Substance
- fo-f2f86bc2d054020d Molecular anion
- Source
- EF 3.1
- Unit
- kg
- Context
- Environmental → Air → Aircraft cruise height
- CAS
- 14797-55-8
- EC
- —
Context
- Dimension
- Environmental
- Media
- Air
- Strata
- Aircraft cruise height
Alternative labels
13- NITRATE ION
- NO3
- NO3(-)
- [NO3](-)
- nitrate(1-)
- trioxidonitrate(1-)
- trioxonitrate(1-)
- trioxonitrate(V)
- Nitrate (NO3-)
- Nitrate ion (NO3-)
- Nitrate ion(1-)
- Nitrato
- Nitric acid, ion(1-)
Source lists
2| List | Version | Source flow | Name there | Why this flow |
|---|---|---|---|---|
| EF | 3.1 | 32ccfaa3-6556-11dd-ad8b-0800200c9a66 | nitrate | The consensus list is built from this one, so this row is the flow itself rather than something matched to it. |
| ecoinvent | 3.8 | 0e9e6b81-0a68-4350-8368-566c083bd3e0 | Nitrate | The CAS numbers are the same (14797-55-8); both name the same compartment. |
Concept associations
2| Source list | Source flow | Name there | Compartment there | Match | Conversion |
|---|---|---|---|---|---|
| EF 3.1 | 32ccfaa3-6556-11dd-ad8b-0800200c9a66 | nitrate | Emissions/Emissions to air/Emissions to lower stratosphere and upper troposphere | exactMatch | — |
| ecoinvent 3.8 | 0e9e6b81-0a68-4350-8368-566c083bd3e0 | Nitrate | air / lower stratosphere + upper troposphere | closeMatch | — |
Characterisation factors
4- consensus-flow-list 2
- European Commission — JRC 2
Every implementation that says anything about this flow. Published as is what this list did with the row: where more than one implementation states a number and they agree it publishes it as agreed; where only one speaks, as sole; where they disagree it publishes nothing and asks.
| Method | Implementation | Category | Place | Factor | Published as |
|---|---|---|---|---|---|
| EF 3.1 | European Commission — JRC | Eutrophication marine | — | 0.028 | — |
| EF 3.1 | consensus-flow-list | Eutrophication marine | — | 0.028 | sole |
| EF 3.1 | European Commission — JRC | Eutrophication, terrestrial | — | 3.16065 | — |
| EF 3.1 | consensus-flow-list | Eutrophication, terrestrial | — | 3.16065 | sole |
History
The change log and the PROV-O trail (2 consensus changes)
These are the heaviest sections of this page and the least often read, so the page does not pay for them until you ask.
Full record
Flow JSON
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"EF 3.1"
],
"prov:wasDerivedFrom": "legacy name field"
}
}
],
"@type": [
"https://w3id.org/chemrof/MolecularAnion"
],
"http://www.w3.org/2004/02/skos/core#definition": [
{
"@value": "A nitrogen oxoanion formed by loss of a proton from nitric acid. Principal species present at pH 7.3.",
"@language": "en",
"provenance": {
"prov:wasGeneratedBy": "enrich_references.chebi_definition",
"prov:wasAttributedTo": "consensus-flow-list",
"prov:hadPrimarySource": [
"http://purl.obolibrary.org/obo/CHEBI_17632"
],
"prov:wasDerivedFrom": "chebi.definition"
}
}
],
"uuid": "32ccfaa3-6556-11dd-ad8b-0800200c9a66",
"identifier": "32ccfaa3-6556-11dd-ad8b-0800200c9a66",
"source": "EF 3.1",
"cas_numbers": [
"14797-55-8"
],
"ec_numbers": [],
"context": {
"dimension": "Environmental",
"media": "Air",
"strata": "Aircraft cruise height"
},
"synonyms": [],
"lcia_methods": [
{
"method_uuid": "b5c614d2-def3-11e6-bf01-fe55135034f3",
"name": "Eutrophication, terrestrial",
"methodology": "Environmental Footprint",
"impact_category": "Terrestrial Eutrophication",
"impact_indicator": "Accumulated Exceedance (AE) ",
"characterization_factor": 3.16065
},
{
"method_uuid": "b5c619fa-def3-11e6-bf01-fe55135034f3",
"name": "Eutrophication marine",
"methodology": "Environmental Footprint",
"impact_category": "Aquatic Eutrophication",
"impact_indicator": "Fraction of nutrients reaching marine end compartment (N)",
"characterization_factor": 0.028
}
],
"unit": "kg",
"input_datasets": [
"EF 3.1"
],
"context_iri": "https://vocab.brightway.one/flow-contexts/envi-air-aicrhe",
"unit_iri": "https://vocab.brightway.one/units/unit/KiloGM",
"flow_object_id": "fo-f2f86bc2d054020d",
"concept_associations": [
{
"@type": "xkos:ConceptAssociation",
"xkos:sourceConcept": {
"@id": "https://vocab.brightway.one/ef/3.1/flow/32ccfaa3-6556-11dd-ad8b-0800200c9a66",
"skos:prefLabel": "nitrate",
"context": "Emissions/Emissions to air/Emissions to lower stratosphere and upper troposphere",
"qudt:hasUnit": {
"@id": "https://vocab.brightway.one/units/unit/KiloGM"
},
"skos:exactMatch": {
"@id": "https://vocab.brightway.dev/elementary-flows/32ccfaa3-6556-11dd-ad8b-0800200c9a66"
}
},
"xkos:targetConcept": {
"@id": "https://vocab.brightway.dev/elementary-flows/32ccfaa3-6556-11dd-ad8b-0800200c9a66"
},
"provenance": {
"prov:wasGeneratedBy": "build_concept_associations",
"prov:wasAttributedTo": "consensus-flow-list",
"prov:hadPrimarySource": [
"https://eplca.jrc.ec.europa.eu/permalink/EF3_1/EF-v3.1.zip"
]
}
},
{
"@type": "xkos:ConceptAssociation",
"xkos:sourceConcept": {
"@id": "https://vocab.brightway.one/ecoinvent/3.8/flow/0e9e6b81-0a68-4350-8368-566c083bd3e0",
"skos:prefLabel": "Nitrate",
"context": "air / lower stratosphere + upper troposphere",
"qudt:hasUnit": {
"@id": "https://vocab.brightway.one/units/unit/KiloGM"
},
"skos:closeMatch": {
"@id": "https://vocab.brightway.dev/elementary-flows/32ccfaa3-6556-11dd-ad8b-0800200c9a66"
}
},
"xkos:targetConcept": {
"@id": "https://vocab.brightway.dev/elementary-flows/32ccfaa3-6556-11dd-ad8b-0800200c9a66"
},
"provenance": {
"prov:wasGeneratedBy": "merge_ecoinvent",
"prov:wasAttributedTo": "consensus-flow-list",
"prov:hadPrimarySource": [
"ecoinvent:3.8:0e9e6b81-0a68-4350-8368-566c083bd3e0",
"Nitrate",
"",
"algorithm.lookup_order=cas>ec>label",
"algorithm.basis=cas:14797-55-8",
"algorithm.flow_object_candidates=1",
"algorithm.elementary_candidates=13",
"algorithm.selector_reason=exact-context-iri-match",
"algorithm.score_rule=exact-iri-shortcircuit;up-tree-filter;score=(2*unit_exact)+context_overlap-context_penalty+context_iri_exact;contradiction-veto"
],
"prov:wasDerivedFrom": "algorithmic_fallback:lookup_order(cas>ec>label);basis(cas:14797-55-8);flow_object_candidates(1);elementary_candidates(13);selector(exact-context-iri-match);exact-iri-shortcircuit;up-tree-filter;score=(2*unit_exact)+context_overlap-context_penalty+context_iri_exact;contradiction-veto"
}
}
],
"_sources": {
"prefLabel": "normalize_name_case",
"name": "bootstrap_labels",
"synonyms": "bootstrap_labels",
"context": "default_context_mapping",
"context_iri": "default_context_mapping",
"unit_iri": "unit_normalization",
"properties": "normalise_property_values",
"skos_definition": "enrich_references",
"references": "enrich_references",
"altLabel": "dedupe_altlabels",
"cas_match_labels": "consensus_match",
"concept_associations": "carry_associations_onto_flows",
"types": "link_flows_to_their_substance"
},
"cas_match_labels": {
"14797-55-8": "exactMatch"
},
"_transformed": true,
"_provided": {
"name": "nitrate",
"synonyms": [
"AC1L1ADK",
"N511",
"NITRATE ION",
"NO3(-)",
"NO3-",
"Nitrate(1-)",
"Nitrates",
"Nitrates, inorganic, n.o.s.",
"[NO3](-)",
"trioxidonitrate(1-)",
"trioxonitrate(1-)",
"trioxonitrate(V)"
],
"context": [
"Emissions",
"Emissions to air",
"Emissions to lower stratosphere and upper troposphere"
],
"cas_numbers": [
"14797-55-8"
],
"ec_numbers": [],
"unit": "kg"
}
}
Something wrong here?
A flow can be wrong in three ways, and they are decided differently. Pick the one that matches what you are looking at.
- A row from my list should not reach this flow
- This flow is not that chemical
- The compartment or the unit is wrong
- One of these characterisation factors cannot be this substance's
You do not need to run a build or clone anything. Name the row and say what your evidence is; the measurement is done for you. How contributing works