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Application of hydrometallurgy techniques in quartz processing and purification: a review

机译:液压冶金技术在石英加工和净化中的应用 - 评论

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Although there have been numerous studies on separation and purification of metallic minerals by hydrometallurgy techniques, applications of the chemical techniques in separation and purification of nonmetallic minerals are rarely reported. This paper reviews disparate areas of study into processing and purification of quartz (typical non-metallic ore) in an attempt to summarize current work, as well as to suggest potential for future consolidation in the field. The review encompasses chemical techniques of the quartz processing including situations, progresses, leaching mechanism, scopes of application, advantages and drawbacks of micro-bioleaching, high temperature leaching, high temperature pressure leaching and catalyzed high temperature pressure leaching. Traditional leaching techniques including micro-bioleaching and high temperature leaching are unequal to demand of modern glass industry for quality of quartz concentrate because the quartz products has to be further processed. High temperature pressure leaching and catalyzed high temperature pressure leaching provide new ways to produce high-grade quartz sand with only one process and lower acid consumption. Furthermore, the catalyzed high temperature pressure leaching realizes effective purification of quartz with extremely low acid consumption (no using HF or any fluoride). It is proposed that, by integrating the different chemical processes of quartz processing and expounding leaching mechanisms and scopes of application, the research field as a monopolized industry would benefit.
机译:虽然通过氢化冶金技术进行了许多关于金属矿物的分离和纯化的研究,但很少报道化学技术在非金属矿物分离和纯化中的应用。本文审查了石英(典型非金属矿石)加工和净化的不同研究领域,以便总结当前的工作,并建议将未来在该领域的巩固潜力。该综述包括石英加工的化学技术,包括情况,进展,浸出机制,微生物浸出的优点和缺点,高温浸出,高温压力浸出和催化的高温压力浸出。传统的浸出技术,包括微生物浸渍和高温浸出,对现代玻璃行业的需求不等于石英浓缩物的质量,因为石英产品必须进一步加工。高温压力浸出和催化的高温压力浸出提供了生产高档石英砂的新方法,只有一种工艺和较低的酸消耗。此外,催化的高温压力浸出意识到石英的有效纯化,具有极低的酸消耗(不使用HF或任何氟化物)。建议,通过整合石英加工的不同化学过程和阐述浸出机制和应用范围,作为垄断行业的研究领域将受益。

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