Key Data Set Information | |
Location | NMG-CN |
Reference year | 2014 |
Name |
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Use advice for data set | When using this dataset for Life Cycle Assessment, ensure you account for variations in mineralogy and processing routes, as they can affect the environmental impacts of REE production. Studies pertaining to radioactivity should include radioactivity flows if available. Quantification of waste treatment flows in LCIs is essential due to the potential environmental impacts. Co-mining aspects have to be considered, highlighting the co-products obtained in addition to REE. The functional unit for comparison is the production of 1 kg of a basket of REO (Rare Earth Oxides) from the specified mineralogical and processing route. |
Technical purpose of product or process | The rare earth elements (REEs) extracted from the described industrial process are utilized in various high-tech applications, including the production of powerful permanent magnets, hybrid vehicle batteries, fluorescent lamps, and electronics. Specifically, the acid leach separation process applied to bastnaesite route REE-containing ore is a critical step for isolating pure REE compounds necessary for these applications. |
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General comment on data set | The rare earth elements (REEs) extracted from the described industrial process are utilized in various high-tech applications, including the production of powerful permanent magnets, hybrid vehicle batteries, fluorescent lamps, and electronics. Specifically, the acid leach separation process applied to bastnaesite route REE-containing ore is a critical step for isolating pure REE compounds necessary for these applications. |
Copyright | No |
Owner of data set | |
Quantitative reference | |
Reference flow(s) |
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Functional Unit | The functional unit of this study is the production of 1 kg of the basket REO from each corresponding mineralogical and processing route. |
Technological representativeness | |
Technology description including background system | In this study, the REE production system was analyzed from mining up to and including solvent extraction which contains product finishing processes such as precipitation and calcination |
Flow diagram(s) or picture(s) |
LCI method and allocation | |||||
Type of data set | Unit process, single operation | ||||
LCI Method Principle | Attributional | ||||
Deviation from LCI method principle / explanations | None | ||||
Deviations from LCI method approaches / explanations | In this study, the REE production system was analyzed from mining up to and including solvent extraction which contains product finishing processes such as precipitation and calcination (Fig. 1). The other categories assessed in the literature review were mineral type, radioactivity, waste treatment, and co-mining. For mineral type, it was noted that the mineralogy accounted for in each study was different, which makes comparison difficult. For radioactivity, we marked with an X those studies which exemplified radioactivity flows in the LCI (if provided). For waste, we distinguished those LCIs which quantified waste treatment flows. For co-mining, since all REE are co-products of each other, this column is meant to highlight the co-products in addition to REE. | ||||
Deviation from modelling constants / explanations | None | ||||
Data sources, treatment and representativeness | |||||
Deviation from data cut-off and completeness principles / explanations | None | ||||
Deviation from data selection and combination principles / explanations | None | ||||
Deviation from data treatment and extrapolations principles / explanations | None | ||||
Data source(s) used for this data set | |||||
Completeness | |||||
Completeness of product model | No statement | ||||
Validation | |||||
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Time stamp (last saved) | 2023-12-24T16:06:40+08:00 |
Publication and ownership | |
UUID | 92fea6a9-4fd7-4fdd-b4ee-9f76dd26172f |
Date of last revision | 2024-04-20T15:07:24.858137+08:00 |
Data set version | 00.01.005 |
Permanent data set URI | https://lcadata.tiangong.world/showProcess.xhtml?uuid=92fea6a9-4fd7-4fdd-b4ee-9f76dd26172f&version=01.00.000&stock=TianGong |
Owner of data set | |
Copyright | No |
License type | Free of charge for all users and uses |
Inputs
Type of flow | Classification | Flow | Location | Mean amount | Resulting amount | Minimum amount | Maximum amount | ||
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Product flow | Materials production / Inorganic chemicals | 1.0 kg | 1.0 kg | ||||||
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Product flow | Transport services / Other transport | 0.53 t*km | 0.53 t*km | ||||||
Product flow | Transport services / Other transport | 9.54 t*km | 9.54 t*km | ||||||
Product flow | Materials production / Inorganic chemicals | 1.0 kg | 1.0 kg | ||||||
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Product flow | Materials production / Metals and semimetals | 1.77 kg | 1.77 kg | ||||||
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Outputs
Type of flow | Classification | Flow | Location | Mean amount | Resulting amount | Minimum amount | Maximum amount | ||
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Product flow | Materials production / Metals and semimetals | 1.0 kg | 1.0 kg | ||||||
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Product flow | Materials production / Other mineralic materials | 0.00756 kg | 0.00756 kg | ||||||
Elementary flow | Emissions / Emissions to water / Emissions to sea water | 7.56 m3 | 7.56 m3 |