Extraction of silica from natural deposits for the production of silicon in photovoltaic applications

Zeboudj Asmaa, Hamzaoui Saad
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Abstract

The Silica, primarily sourced from silicon dioxide (SiO2) is a common chemical compound abundant in nature, existing in various forms such as quartz, sand, glass, and diverse minerals. It finds extensive use across multiple industries, contributing significantly to glassmaking, ceramics, abrasives, refractory materials, and serving as a crucial component in semiconductor production for electronic chips. This work provides a comprehensive review of the silica elaboration process aimed at obtaining silicon. The initial stage involves the preparation of raw materials, utilizing Algerian sand and diatomite, which undergo meticulous chemical treatment to eliminate unwanted impurities. This method comprises distinct steps, known as the purification process, wherein the sand or diatomite shell is assessed through dissolution in a caustic alkaline solution. This approach indicates the potential to generate high-quality silica from diatomite using an aqueous chemical process. This paper explores the prospect of sand or diatomaceous earth as a novel source of premium-grade silica. It discusses the effects of hydrochloric acid as a solvent for purification. This study contrasts treatment methods before and after acid leaching, focusing on samples with larger particle sizes (ranging from 53 to 300 microns), shorter refining durations (1 to 6 hours), and relatively higher temperatures (30 °C to 70 °C). The findings reveal that the highest purity of silica was attained through HCl treatment (25%).
从天然矿藏中提取硅,用于生产光伏应用中的硅
硅石主要来源于二氧化硅(SiO2),是一种常见的化合物,在自然界中含量丰富,以各种形式存在,如石英、沙子、玻璃和各种矿物。它广泛应用于多个行业,在玻璃制造、陶瓷、磨料、耐火材料等方面做出了重要贡献,也是电子芯片半导体生产的重要组成部分。本作品全面回顾了旨在获得硅的二氧化硅精制工艺。初始阶段包括利用阿尔及利亚砂和硅藻土制备原材料,并对原材料进行细致的化学处理,以去除不需要的杂质。这种方法包括不同的步骤,即所谓的提纯过程,在这一过程中,沙子或硅藻土外壳通过溶解在苛性碱溶液中进行评估。这种方法表明,利用水化学工艺从硅藻土中生成高质量二氧化硅是有潜力的。本文探讨了沙子或硅藻土作为优质二氧化硅新来源的前景。它讨论了盐酸作为提纯溶剂的效果。本研究对比了酸浸出前后的处理方法,重点研究了粒度较大(从 53 微米到 300 微米不等)、精制时间较短(1 到 6 小时)和温度相对较高(30 °C 到 70 °C)的样品。研究结果表明,盐酸处理的二氧化硅纯度最高(25%)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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