Purge gas - rich in sodium nitrate (purge gas - rich in sodium nitrate - Recycled Content cut-off)
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Emissions generated by the activity within the product supply chain as described in ecoinvent v3.10. The product 'purge gas rich in sodium nitrate' is a liquid waste under the category of industrial wastes. It is primarily generated in potassium nitrate production. 'purge gas rich in sodium nitrate' contain the following fractions: 100% purge gas. By the database default (and per unit of reference product) 'purge gas rich in sodium nitrate' has 0% water on wet mass basis (100% dry matter) and it has no Carbon content. It has no heating value. This kind of by-product (recyclable or waste) is generated from ordinary transforming activities and as such can be considered for modelling waste outputs of comparable composition. In the ecoinvent database this by-product is used in the following processes: potassium nitrate production industrial grade; purge gas rich in sodium nitrate to market for sodium nitrate unrefined. This by-product can be modelled on two levels: treatment activity and market activity. The former one refers to the specific technology treating the by-product while the latter level represents a mix of treatments. Users are encouraged to inspect the modelling assumptions of the treatment activities and when selecting the market to additionally inspect the treatment mix. Collection and transportation of this by-product is accounted in the respective market activity users are advised to inspect and modify the average transportation distances for a case specific modelling. The cut-off classification is Recyclable. The activity type is ordinary transforming activity. The reference product amount is 1.
Property | Value |
---|---|
Name | Purge gas - rich in sodium nitrate (purge gas - rich in sodium nitrate - Recycled Content cut-off) |
Sector | Materials and Manufacturing |
Category | Mined Materials |
Source | ecoinvent |
Source Dataset | Cut-off Cumulative LCIA v3.10 |
Region | |
Unit Type | |
Year | 2023 |
Year Released | 2023 |
Emission Factor |
|
LCA Activity | unknown |
Supported CO2e Calculation Method | AR5, AR6 |
Data Versioning |
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