Key Data Set Information | |
Location | NMG-CN |
Reference year | 2012 |
Name |
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Use advice for data set | When using the dataset related to the mining of REE containing ore, ensure that your life cycle assessment considers the specific environmental impacts associated with surface mining techniques, such as drilling and blasting. Account for the high ore grade of 4.1% REO in resource depletion calculations, and apply the dataset consistently for products that require rare earth elements. Pay attention to technological shifts that might alter the process efficiency or environmental impact. Review the detailed LCI, assumptions, and allocation choices in the supporting information of the data set to ensure data quality and representativeness. |
Technical purpose of product or process | This mining process for rare earth element (REE) containing ore is used primarily to extract raw materials necessary for the production of rare earth elements. These elements are critical in manufacturing high-tech devices, electronics, clean energy technologies, advanced aerospace components, and specialized magnets such as those used in NdFeB (Neodymium-Iron-Boron) magnets. |
Classification |
Class name
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General comment on data set | This mining process for rare earth element (REE) containing ore is used primarily to extract raw materials necessary for the production of rare earth elements. These elements are critical in manufacturing high-tech devices, electronics, clean energy technologies, advanced aerospace components, and specialized magnets such as those used in NdFeB (Neodymium-Iron-Boron) magnets. |
Copyright | No |
Owner of data set | |
Quantitative reference | |
Reference flow(s) |
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Functional Unit | Not Mentationed |
Technological representativeness | |
Technology description including background system | Ore is recovered from the open pit mine using conventional surface mining techniques such as drilling and blasting. The mine contains 750 million tons of ore at 4.1% REO |
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 section, we discuss the life cycle inventory (LCI) in detail. Each subsection discusses one process of the LCA. Section 3.1 describes the conventional method of rare earths in China from mineral sources. Section 3.2 describes the production process used to transform neodymium oxide into an NdFeB magnet. Finally, section 3.3 describes two alternative recycling processes that could be used. Detailed information on the LCI, assumptions, and allocation choices can be found in the Supporting Information. | ||||
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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Data generator | |
Data set generator / modeller | |
Data entry by | |
Time stamp (last saved) | 2023-12-24T16:06:40+08:00 |
Publication and ownership | |
UUID | 7b497c8c-e1cb-4f8d-9862-a348b761be84 |
Date of last revision | 2024-04-20T15:07:22.067781+08:00 |
Data set version | 00.01.005 |
Permanent data set URI | https://lcadata.tiangong.world/showProcess.xhtml?uuid=7b497c8c-e1cb-4f8d-9862-a348b761be84&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 | Energy carriers and technologies / Electricity | 16.2 MJ | 16.2 MJ | ||||||
Product flow | Materials production / Inorganic chemicals | 1.7E-6 kg | 1.7E-6 kg | ||||||
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Product flow | Systems / Unspecific parts | 5.0E-4 kg | 5.0E-4 kg | ||||||
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Product flow | Materials production / Organic chemicals | 1.25 kg | 1.25 kg |
Outputs
Type of flow | Classification | Flow | Location | Mean amount | Resulting amount | Minimum amount | Maximum amount | ||
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Product flow | Materials production / Raw materials | 1.0 kg | 1.0 kg | ||||||
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Product flow | Materials production / Other mineralic materials | 0.0034 kg | 0.0034 kg | ||||||
Elementary flow | Land use / Land occupation | 1.2E-4 m2*a | 1.2E-4 m2*a | ||||||
Elementary flow | Resources / Resources from ground / Non-renewable element resources from ground | 0.3 kg | 0.3 kg | ||||||
Elementary flow | Resources / Resources from ground / Non-renewable element resources from ground | 0.0164 kg | 0.0164 kg | ||||||
Elementary flow | Resources / Resources from ground / Non-renewable element resources from ground | 0.00984 kg | 0.00984 kg | ||||||
Elementary flow | Resources / Resources from ground / Non-renewable element resources from ground | 0.00541 kg | 0.00541 kg | ||||||
Elementary flow | Resources / Resources from ground / Non-renewable element resources from ground | 0.00172 kg | 0.00172 kg | ||||||
Elementary flow | Resources / Resources from ground / Non-renewable element resources from ground | 8.14E-5 kg | 8.14E-5 kg | ||||||
Elementary flow | Resources / Resources from ground / Non-renewable element resources from ground | 4.1E-4 kg | 4.1E-4 kg | ||||||
Elementary flow | Resources / Resources from ground / Non-renewable element resources from ground | 2.06E-4 kg | 2.06E-4 kg | ||||||
Elementary flow | Emissions / Emissions to air / Emissions to air, unspecified | 0.00513 MJ | 0.00513 MJ | ||||||
Elementary flow | Emissions / Emissions to air / Emissions to air, unspecified | 0.01 kBq | 0.01 kBq | ||||||
Elementary flow | Emissions / Emissions to air / Emissions to air, unspecified | 0.0506 kBq | 0.0506 kBq |