Recent advances in the marketing, impurity characterization and purification of quartz

Yongping Xie, Suqin Li, Xiaodong Pan, Yongkui Li, Ao Zhang
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Abstract

Due to its stable physical and chemical properties and its abundance in nature, quartz is widely employed in industrial and high-tech applications. However, the presence of diverse types and states of impurities in quartz ores from different geological formations poses a challenge in the process of purifying high-purity quartz, leading to wastage of raw materials and escalated costs. This study presents the socio-economic applications of quartz, scrutinizes the formation and separation mechanisms of impurities in quartz ores from a mineralogical perspective, examines the obstacles faced in quartz purification, explains the current state of development, and provides a technical summary of quartz purification. The analysis reveals that lattice impurity elements and various types of inclusion impurities are the principal factors affecting the purity of quartz. Various green separation techniques are applied based on the composition of the quartz minerals and the state of the impurities. Standard practices may involve physical pre-treatment such as scrubbing, ultrasonic crushing, and electromagnetic pulse cracking, followed by rough cleaning through color separation, superconducting high gradient magnetic separation, and flotation, and chemical pre-treatment (high-temperature or microwave roasting with chloride doping, and ammonium sulfate thermal crushing combined with water quenching to remove gas-liquid inclusions from quartz minerals). Finally, finishing processes such as fluorine-free and catalytic hot-pressure acid leaching or microbiological purification treatment with filamentous or Aspergillus fungi are used to obtain high-purity silica sand with an anticipated purity of about 99.99%.
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石英营销、杂质表征和提纯方面的最新进展
由于石英具有稳定的物理和化学性质,且在自然界中含量丰富,因此被广泛应用于工业和高科技领域。然而,来自不同地质构造的石英矿石中存在多种类型和状态的杂质,这给提纯高纯度石英的过程带来了挑战,导致原材料浪费和成本上升。本研究介绍了石英的社会经济应用,从矿物学角度研究了石英矿石中杂质的形成和分离机制,探讨了石英提纯过程中面临的障碍,解释了石英提纯的发展现状,并对石英提纯进行了技术总结。分析表明,晶格杂质元素和各类包体杂质是影响石英纯度的主要因素。根据石英矿物的成分和杂质的状态,采用了各种绿色分离技术。标准做法可能包括物理预处理,如擦洗、超声波破碎和电磁脉冲裂解,然后通过色选、超导高梯度磁选和浮选进行粗选,以及化学预处理(掺杂氯化物的高温或微波焙烧,硫酸铵热破碎结合水淬去除石英矿物中的气液夹杂物)。最后,采用无氟和催化热压酸浸出或用丝状真菌或曲霉菌进行微生物净化处理等精加工工艺,以获得高纯度硅砂,预计纯度约为 99.99%。
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