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Li, Xin, Wei, Yingchun, Cao, Daiyong, Wei, Jinhao, Liu, Xiangyang, Zhang, Yun, Dong, Bo (2024) Cooperative Exploration Model of Coal–Lithium Deposit: A Case Study of the Haerwusu Coal–Lithium Deposit in the Jungar Coalfield, Inner Mongolia, Northern China. Minerals, 14 (2) doi:10.3390/min14020179

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Reference TypeJournal (article/letter/editorial)
TitleCooperative Exploration Model of Coal–Lithium Deposit: A Case Study of the Haerwusu Coal–Lithium Deposit in the Jungar Coalfield, Inner Mongolia, Northern China
JournalMinerals
AuthorsLi, XinAuthor
Wei, YingchunAuthor
Cao, DaiyongAuthor
Wei, JinhaoAuthor
Liu, XiangyangAuthor
Zhang, YunAuthor
Dong, BoAuthor
Year2024Volume<   14   >
Issue<   2   >
URL
DOIdoi:10.3390/min14020179Search in ResearchGate
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Mindat Ref. ID17147497Long-form Identifiermindat:1:5:17147497:0
GUID0
Full ReferenceLi, Xin, Wei, Yingchun, Cao, Daiyong, Wei, Jinhao, Liu, Xiangyang, Zhang, Yun, Dong, Bo (2024) Cooperative Exploration Model of Coal–Lithium Deposit: A Case Study of the Haerwusu Coal–Lithium Deposit in the Jungar Coalfield, Inner Mongolia, Northern China. Minerals, 14 (2) doi:10.3390/min14020179
Plain TextLi, Xin, Wei, Yingchun, Cao, Daiyong, Wei, Jinhao, Liu, Xiangyang, Zhang, Yun, Dong, Bo (2024) Cooperative Exploration Model of Coal–Lithium Deposit: A Case Study of the Haerwusu Coal–Lithium Deposit in the Jungar Coalfield, Inner Mongolia, Northern China. Minerals, 14 (2) doi:10.3390/min14020179
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Abstract/NotesLithium (Li) is an important strategic metal mineral resource, irreplaceable in the fields of modern industry, new energy technology, nuclear fusion, and energy storage devices. Li is an important supplement to traditional strategic metal mineral resources and has become an important avenue of mineral resource exploration. Therefore, there is an urgent need to establish a cooperative exploration model of coal and Li deposits to lay a theoretical foundation from the perspective of technical optimization and economic rationality. This study is based on the distribution characteristics of the Haerwusu coal–Li deposit, and the effectiveness of the response to exploration techniques, the economical and effective exploration techniques, the reasonable exploration engineering design, and resource estimation parameters is investigated. Therefore, the cooperative exploration model of the coal–Li deposit is established. The high-Li areas in the surface of the Haerwusu Li deposit is distributed near the B1 anticline or in the middle area between the X1 syncline and the B1 anticline, and the vertical distribution of Li content is irregular. The exploration techniques, exploration engineering design, and resource estimation are reviewed and optimized. According to the geological, geochemical, and geophysical conditions, a reasonable cooperative exploration model for coal–Li deposits is established from the two aspects of the coordination of multi-mineral exploration and the coordination of various exploration technologies. The determination of the coal–Li deposit cooperative exploration model has important practical significance for improving the resource security system.

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LocalityCitation Details
Haerwusu Mine, Jungar coal field (Zhunge'er coal field), Jungar Banner (Zhunge'er Co.), Ordos City (E'erduosi Prefecture), Inner Mongolia, China

Mineral Occurrences

LocalityMineral(s)
Haerwusu Mine, Jungar coal field (Zhunge'er coal field), Jungar Banner (Zhunge'er Co.), Ordos City (E'erduosi Prefecture), Inner Mongolia, China Böhmite, Chlorite Group, Kaolinite


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