Study on microwave-assisted reduction of pyrolusite

IF 0.9 Q4 CHEMISTRY, MULTIDISCIPLINARY
D. Liu, Jinjia Du, Qingqing Dai, Junwen Zhou
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Abstract

Manganese is a vital metal resource, and increased consumption of manganese is leading to the shortage of high-grade manganese ore resources. However, a large number of low-grade manganese ore resources ((Mn<30%) accounts for about 60% of the total manganese resources) have not been effectively utilized because of the lack of efficient industrial utilization methods. Researching new technologies for reducing low-grade pyrolusite is an urgent problem to be solved. Microwave is an effective and environmentally friendly heat source widely used in mining, metallurgy, and chemistry. Different substances have different dielectric constants. The difference in dielectric constant affects the absorption rate of substances, resulting in different heating rates for different substances when heated by microwaves. Microwave is widely used in the metal smelting process because of its unique heating method. So far, few works have been done to verify that microwave heating can effectively promote the reduction of pyrolusite. This article summarizes some current methods of reducing low-grade pyrolusite and compares them with the method of reducing pyrolusite by microwave heating. In addition, this article introduces the principle of microwave-enhanced reduction of pyrolusite and discusses the opportunities and challenges faced by microwave heating technology in its subsequent development. The aim is to analyze and study the promoting effect of microwave heating technology on the reduction of pyrolusite, further improve the utilization of low-grade pyrolusite, and provide new methods and approaches for the comprehensive utilization of mineral resources and provide assistance in industrial production.
微波辅助还原软锰矿的研究
锰是一种重要的金属资源,锰消耗量的增加导致了高品位锰矿资源的短缺。然而,由于缺乏有效的工业利用方法,大量低品位锰矿资源((Mn<30%)约占锰资源总量的60%)没有得到有效利用。研究还原低品位软锰矿的新技术是一个亟待解决的问题。微波是一种有效且环保的热源,广泛应用于采矿、冶金和化学领域。不同的物质具有不同的介电常数。介电常数的差异影响物质的吸收率,导致不同物质在被微波加热时的加热速率不同。微波以其独特的加热方式被广泛应用于金属冶炼过程中。到目前为止,很少有工作证实微波加热可以有效地促进软锰矿的还原。本文总结了目前还原低品位软锰矿的几种方法,并与微波加热还原软锰矿的方法进行了比较。此外,本文还介绍了微波增强还原软锰矿的原理,并讨论了微波加热技术在后续发展中面临的机遇和挑战。目的是分析研究微波加热技术对软锰矿还原的促进作用,进一步提高低品位软锰矿的利用率,为矿产资源的综合利用和工业生产提供新的方法和途径。
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来源期刊
Current Microwave Chemistry
Current Microwave Chemistry CHEMISTRY, MULTIDISCIPLINARY-
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