Research on the Common Determination Methods of Material Composition and Trace Elements in Pingdingshan Coal Mine Coal

Authors

  • Dongdong Chen
  • Qianqian Zhang
  • Chunpeng Li
  • Yipeng Li

DOI:

https://doi.org/10.54097/2q6pw267

Keywords:

Pingdingshan Coal Mine, Coal Material Composition, Trace Elements, Measurement Method

Abstract

Pingdingshan Coal Mine is located in Pingdingshan City, Henan Province. Coal is an important energy mineral in China and a strategic resource for the country's economic and social development. The study of the material composition characteristics of coal is of great significance for the comprehensive utilization of coal. With the rapid development of social productivity, China's demand for coal in industrial production and people's daily lives is increasing, and the pattern of coal as the main energy source will not change in the short term. Due to the high content of trace elements in coal, trace elements will be released into the surrounding environment in different forms during coal mining and use, causing serious damage to the ecological environment. Therefore, we need to master the determination methods of trace elements, accurately grasp the composition and content of trace elements in coal, take corresponding prevention and remediation measures for the release of harmful trace elements, and protect the ecological environment. The coal produced during coal mining has a complex material composition and contains various trace elements. In order to accurately understand the content of trace elements in coal, appropriate determination methods need to be used for analysis. As a research object, Pingdingshan Coal Mine needs to focus on the content of trace elements and select appropriate measurement methods for accurate determination.

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Published

27-02-2025

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Section

Articles

How to Cite

Chen, D., Zhang, Q., Li , C., & Li, Y. (2025). Research on the Common Determination Methods of Material Composition and Trace Elements in Pingdingshan Coal Mine Coal. International Journal of Energy, 6(1), 30-34. https://doi.org/10.54097/2q6pw267