Review for High-purity Quartz (SiO2) (Part Ⅱ): Activation and Separation of Lattice Impurities

High-purity quartz, famous for low impurities and high purity, has been widely used in optical fiber communication, photovoltaic, aerospace, semiconductor display and other high-tech industries. The trace metal and nonmetallic elements (H, Li, B, Na, Al, P, K, Ca, Fe, Ti, etc.) widely occurring in q...

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Main Authors: Min Lin, Qian Jia, Ziyuan Liu, Yan Wei, Bin Liu, Yu Meng, Hang Qiu, Shunqiu Xu, Shaomin Lei
Format: Article
Language:zho
Published: Institute of Multipurpose Utilization of Mineral Resources, Chinese Academy of Geological Sciences 2022-12-01
Series:Kuangchan zonghe liyong
Subjects:
Online Access:http://www.kczhly.com/en/article/doi/10.3969/j.issn.1000-6532.2022.06.004
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author Min Lin
Qian Jia
Ziyuan Liu
Yan Wei
Bin Liu
Yu Meng
Hang Qiu
Shunqiu Xu
Shaomin Lei
author_facet Min Lin
Qian Jia
Ziyuan Liu
Yan Wei
Bin Liu
Yu Meng
Hang Qiu
Shunqiu Xu
Shaomin Lei
author_sort Min Lin
collection DOAJ
description High-purity quartz, famous for low impurities and high purity, has been widely used in optical fiber communication, photovoltaic, aerospace, semiconductor display and other high-tech industries. The trace metal and nonmetallic elements (H, Li, B, Na, Al, P, K, Ca, Fe, Ti, etc.) widely occurring in quartz crystal structure are closely bound by Si-O-Si bond, which is difficult to be separated by conventional mineral processing technology. In this paper, the occurrence mechanism of trace elements bound by lattice in high-purity quartz is described in detail, and the advanced separation technology of trace elements in the crystal structure of high-quality quartz in the world is comprehensively and systematically summarized. Based on the research progress of the basic theory of high-purity quartz in China in recent years, some reasonable scientific suggestions on the basic theory of impurity separation of high-purity quartz lattice in China are put forward.
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spelling doaj.art-065c720195ae42d89985581bdde1f0a42023-02-07T06:48:00ZzhoInstitute of Multipurpose Utilization of Mineral Resources, Chinese Academy of Geological SciencesKuangchan zonghe liyong1000-65322022-12-01436212510.3969/j.issn.1000-6532.2022.06.0042022-06linmin-2Review for High-purity Quartz (SiO2) (Part Ⅱ): Activation and Separation of Lattice ImpuritiesMin Lin0Qian Jia1Ziyuan Liu2Yan Wei3Bin Liu4Yu Meng5Hang Qiu6Shunqiu Xu7Shaomin Lei8Wuhan BOE Optoelectronics Technology Co., Ltd., Wuhan, Hubei, ChinaWuhan BOE Optoelectronics Technology Co., Ltd., Wuhan, Hubei, ChinaWuhan BOE Optoelectronics Technology Co., Ltd., Wuhan, Hubei, ChinaWuhan BOE Optoelectronics Technology Co., Ltd., Wuhan, Hubei, ChinaWuhan BOE Optoelectronics Technology Co., Ltd., Wuhan, Hubei, ChinaWuhan BOE Optoelectronics Technology Co., Ltd., Wuhan, Hubei, ChinaWuhan BOE Optoelectronics Technology Co., Ltd., Wuhan, Hubei, ChinaWuhan BOE Optoelectronics Technology Co., Ltd., Wuhan, Hubei, ChinaSchool of Resources and Environmental Engineering, Wuhan University of Technology, Wuhan, Hubei, ChinaHigh-purity quartz, famous for low impurities and high purity, has been widely used in optical fiber communication, photovoltaic, aerospace, semiconductor display and other high-tech industries. The trace metal and nonmetallic elements (H, Li, B, Na, Al, P, K, Ca, Fe, Ti, etc.) widely occurring in quartz crystal structure are closely bound by Si-O-Si bond, which is difficult to be separated by conventional mineral processing technology. In this paper, the occurrence mechanism of trace elements bound by lattice in high-purity quartz is described in detail, and the advanced separation technology of trace elements in the crystal structure of high-quality quartz in the world is comprehensively and systematically summarized. Based on the research progress of the basic theory of high-purity quartz in China in recent years, some reasonable scientific suggestions on the basic theory of impurity separation of high-purity quartz lattice in China are put forward.http://www.kczhly.com/en/article/doi/10.3969/j.issn.1000-6532.2022.06.004high-purity quartzlattice impurityactivation and separation
spellingShingle Min Lin
Qian Jia
Ziyuan Liu
Yan Wei
Bin Liu
Yu Meng
Hang Qiu
Shunqiu Xu
Shaomin Lei
Review for High-purity Quartz (SiO2) (Part Ⅱ): Activation and Separation of Lattice Impurities
Kuangchan zonghe liyong
high-purity quartz
lattice impurity
activation and separation
title Review for High-purity Quartz (SiO2) (Part Ⅱ): Activation and Separation of Lattice Impurities
title_full Review for High-purity Quartz (SiO2) (Part Ⅱ): Activation and Separation of Lattice Impurities
title_fullStr Review for High-purity Quartz (SiO2) (Part Ⅱ): Activation and Separation of Lattice Impurities
title_full_unstemmed Review for High-purity Quartz (SiO2) (Part Ⅱ): Activation and Separation of Lattice Impurities
title_short Review for High-purity Quartz (SiO2) (Part Ⅱ): Activation and Separation of Lattice Impurities
title_sort review for high purity quartz sio2 part ii activation and separation of lattice impurities
topic high-purity quartz
lattice impurity
activation and separation
url http://www.kczhly.com/en/article/doi/10.3969/j.issn.1000-6532.2022.06.004
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