Iron, Ion
13b887809ac4c4bdcbcd98ef903ca81769bc44df
Identity
- Substance
- fo-68a028e14ee2f8de Monoatomic ion
- Source
- ecoinvent algorithm addition
- Unit
- kg
- Context
- Environmental → Air → Aircraft cruise height
- CAS
- —
- EC
- —
Context
- Dimension
- Environmental
- Media
- Air
- Strata
- Aircraft cruise height
Alternative labels
1- Iron Ion
Source lists
1| List | Version | Source flow | Name there | Why this flow |
|---|---|---|---|---|
| ecoinvent | 3.8 | 0dc0bbb0-1141-4dff-b6a2-8bd5368e14af | Iron | This substance answers to the name the row carries; no flow of this substance sat in that compartment, so this one was created for the row. |
Concept associations
1| Source list | Source flow | Name there | Compartment there | Match | Conversion |
|---|---|---|---|---|---|
| ecoinvent 3.8 | 0dc0bbb0-1141-4dff-b6a2-8bd5368e14af | Iron ion | air / lower stratosphere + upper troposphere | exactMatch | — |
History
The change log and the PROV-O trail (0 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
{
"uuid": "13b887809ac4c4bdcbcd98ef903ca81769bc44df",
"identifier": "",
"name": "Iron, Ion",
"source": "ecoinvent algorithm addition",
"cas_numbers": [],
"ec_numbers": [],
"context": {
"dimension": "Environmental",
"media": "Air",
"strata": "Aircraft cruise height"
},
"synonyms": [],
"lcia_methods": [],
"unit": "kg",
"input_datasets": [],
"prefLabel": [
{
"@value": "Iron, Ion",
"@language": "en",
"@lang": "en",
"provenance": {
"prov:wasGeneratedBy": "flow_object_names",
"prov:wasAttributedTo": "consensus-flow-list",
"prov:hadPrimarySource": [
"flow-object-overrides.json"
],
"prov:wasDerivedFrom": "curated name override"
}
}
],
"altLabel": [
{
"@value": "Iron Ion",
"@language": "en",
"@lang": "en",
"provenance": {
"prov:wasGeneratedBy": "bootstrap_labels",
"prov:wasAttributedTo": "consensus-flow-list",
"prov:hadPrimarySource": [
"ecoinvent-3.12",
"flow-object-overrides.json"
],
"prov:wasDerivedFrom": "legacy name field"
}
}
],
"context_iri": "https://vocab.brightway.one/flow-contexts/envi-air-aicrhe",
"unit_iri": "https://vocab.brightway.one/units/unit/KiloGM",
"flow_object_id": "fo-68a028e14ee2f8de",
"properties": {
"relationships": {
"parent_element_flow_object_id": "fo-968d11f00ea71f40",
"relationship_type": "ion_of",
"provenance": {
"prov:wasGeneratedBy": "flow_layers.pubchem_element_enrichment",
"prov:wasAttributedTo": "consensus-flow-list",
"prov:hadPrimarySource": [
"EF 3.1",
"PubChem",
"Common Chemistry"
],
"prov:wasDerivedFrom": "ion_label_to_base_element_mapping"
}
},
"https://w3id.org/chemrof/has_element": {
"rdfs:label": "has element",
"@value": [
{
"@id": "https://vocab.brightway.dev/flow-objects/fo-968d11f00ea71f40"
}
],
"provenance": {
"prov:wasGeneratedBy": "semantic_typing.classify",
"prov:wasAttributedTo": "consensus-flow-list",
"prov:wasDerivedFrom": "relationships.parent_element_flow_object_id"
}
}
},
"references": [],
"concept_associations": [
{
"@type": "xkos:ConceptAssociation",
"xkos:sourceConcept": {
"@id": "https://vocab.brightway.one/ecoinvent/3.8/flow/0dc0bbb0-1141-4dff-b6a2-8bd5368e14af",
"skos:prefLabel": "Iron ion",
"context": "air / lower stratosphere + upper troposphere",
"qudt:hasUnit": {
"@id": "https://vocab.brightway.one/units/unit/KiloGM"
},
"skos:exactMatch": {
"@id": "https://vocab.brightway.dev/elementary-flows/13b887809ac4c4bdcbcd98ef903ca81769bc44df"
}
},
"xkos:targetConcept": {
"@id": "https://vocab.brightway.dev/elementary-flows/13b887809ac4c4bdcbcd98ef903ca81769bc44df"
},
"provenance": {
"prov:wasGeneratedBy": "merge_ecoinvent",
"prov:wasAttributedTo": "consensus-flow-list",
"prov:hadPrimarySource": [
"ecoinvent:3.8:0dc0bbb0-1141-4dff-b6a2-8bd5368e14af",
"Iron ion",
"",
"algorithm.lookup_order=cas>ec>label",
"algorithm.basis=label:Iron ion; Iron, Ion",
"algorithm.flow_object_candidates=1",
"algorithm.elementary_candidates=13",
"algorithm.selector_reason=new-elementary-flow-created",
"algorithm.score_rule=exact-iri-shortcircuit;up-tree-filter;score=(2*unit_exact)+context_overlap-context_penalty+context_iri_exact;contradiction-veto",
"algorithm.winning_score=3",
"algorithm.tie_on_top_score=true"
],
"prov:wasDerivedFrom": "algorithmic_fallback:lookup_order(cas>ec>label);basis(label:Iron ion; Iron, Ion);flow_object_candidates(1);elementary_candidates(13);selector(new-elementary-flow-created);exact-iri-shortcircuit;up-tree-filter;score=(2*unit_exact)+context_overlap-context_penalty+context_iri_exact;contradiction-veto"
}
}
],
"_sources": {},
"cas_match_labels": {},
"general_comment": "",
"_transformed": false,
"_provided": {
"name": null,
"synonyms": [],
"context": [],
"cas_numbers": [],
"ec_numbers": [],
"unit": null
},
"elementary_flow_id": "13b887809ac4c4bdcbcd98ef903ca81769bc44df",
"@type": [
"https://w3id.org/chemrof/MonoatomicIon"
]
}
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
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