微晶石墨提纯及深加工产品综述

A Review on Microcrystalline Graphite Purification and Deep Processing Product

  • 摘要: 我国微晶石墨(隐晶质石墨)因为品位高、质量好的优势一直在国际微晶石墨市场中占有重要地位。然而由于长期理论研究和资金投入的欠缺使我国微晶石墨深加工技术在相关领域还存在空白,导致国内大部分石墨矿企业还停留在对微晶石墨原矿直接利用或将原矿初加工成低附加值产品进行出售的阶段。近年来微晶石墨在锂离子电池负极材料和各向同性石墨材料等领域的应用潜力受到越来越多的关注。因而如何保护和科学利用微晶石墨这种宝贵的资源成为当下亟需解决的问题。以石墨的结构、性质及资源分布为起点,回顾了微晶石墨各类提纯方法的原理及特点,概述了各类提纯方法的研究状况。此外,还介绍了微晶石墨在锂离子电池负极材料和各向同性石墨材料应用上的研究,最后指出对微晶石墨的提纯和改性处理是实现微晶石墨深加工制备高附加值产品的关键。

     

    Abstract: China's microcrystalline graphite has been occupying an important position in the international microcrystalline graphite market because of the advantages of high grade and good quality. However, due to the lack of long−term theoretical research and capital investment, China's microcrystalline graphite deep−processing technology in the relevant fields is still relatively blank, which leads to most of the domestic graphite mining company still stays in the microcrystalline graphite ore direct utilization or primary processing of raw ore into low value−added products for sale stage. And in recent years, microcrystalline graphite in lithium−ion battery anode materials and anisotropic graphite materials and other areas of application potential mining has also made it receive more and more attention. Therefore, how to protect and scientifically utilize microcrystalline graphite as a valuable resource has become an urgent problem to be solved nowadays. This paper takes the structure, properties and resource distribution of graphite as a starting point. It reviews the principles and characteristics of various purification methods of microcrystalline graphite, and introduces the research status of various purification methods in turn, in addition to the research of microcrystalline graphite in the application of lithium−ion battery anode materials and isotropic graphite materials. Taking the structure, properties and resource distribution of graphite as a starting point, this paper reviews the principles and characteristics of various purification methods of microcrystalline graphite, and outlines the research status of various purification methods. In addition, the research on the application of microcrystalline graphite in anode materials for lithium−ion batteries and isotropic graphite materials is also introduced. Finally, it is pointed out that the purification and modification of microcrystalline graphite is the key to realize the deep processing of microcrystalline graphite to prepare high value−added products.

     

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