硒提纯与高纯硒制备技术专利分析综述
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作者:
作者单位:

1.云南铜业股份有限公司西南铜业分公司, 云南 昆明 650102 ;2.昆明理工大学 冶金与能源工程学院, 云南 昆明 650093 ;3.中国铜业有限公司, 云南 昆明 650051 ; 4.云南铜业科技发展股份有限公司, 云南 昆明 650033 ;5.江西自立环保科技有限公司, 江西 抚州 344000

作者简介:

董竞成(1991—),男,硕士,工程师,主要从事稀贵金属生产技术与管理工作。

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中图分类号:

TF843;TN304.1

基金项目:

云南省重大科技专项计划(202102AB080014);云南铜业股份有限公司西南铜业分公司横向课题(XNKJ202012);云南铜业科技发展股份有限公司横向课题(YTKJXM2022-01,YTKJXM2022-02,YTKJXM2021-01,YTKJXM2021-02)


A review of patents about selenium purification and high purity selenium preparation technology
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Affiliation:

1.Southwest Copper Branch, Yunnan Copper Co., Ltd., Kunming 650102 , China ;2.Faculty of Metallurgical and Energy Engineering, Kunming University of Science and Technology, Kunming 650093 , China ;3.China Copper Co., Ltd., Kunming 650051 , China ;4.Yunnan Copper Science Technology Development Co., Ltd., Kunming 650033 , China ;5.Jiangxi Zili Environmental Protection Technology Co., Ltd., Fuzhou 344000 , China

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    摘要:

    了解硒提纯制备专利技术是掌握硒纯化技术研究进展的重要路径,本文对硒提纯与高纯硒制备相关专利进行了统计分析,整理了国内外硒提纯与高纯硒制备技术,并探讨了各提纯工艺的优缺点。全球来看,中国和日本是硒提纯与高纯硒制备技术专利申请主要国家,我国该领域专利申请单位主要集中在云南省和广东省。湿法提纯工艺、火湿法联合工艺及真空蒸馏工艺适用于含硒物料提纯制备硒品位<99.9%的硒产品,其中真空蒸馏与氧化除碲、熔析造渣等工艺联合可实现硒碲良好分离,同时设备简单、成本低,具有工业化应用工前景;氧化挥发工艺适用于提纯制备4N以上纯度硒产品,该工艺硒回收率高,但原料适应性差,挥发设备自动化程度低,未来自动化和环保提升是改进方向;区域熔炼工艺适用于制备5N以上高纯硒,但设备要求高、处理规模小、原料适应性低,专利申请及研究较少。未来,单一的提纯技术难以实现高纯度硒的制备,多提纯工艺联合将是未来高纯度硒制备技术发展方向,另外,设备自动化、智能化也是硒提纯及高纯硒制备领域攻关的重点。

    Abstract:

    The patent technology of selenium purification and preparation is an important path to understanding the research progress of purification technology for selenium. This article conducts a statistical analysis of patents related to selenium purification and high-purity selenium preparation, summarizes domestic and foreign selenium purification and high-purity selenium preparation technologies, and the advantages and disadvantages of purification processes were discussed. Globally, China and Japan are the main countries for patent applications in selenium purification and high-purity selenium preparation technology, and the patent application units in this field in China are mainly concentrated in Yunnan Province and Guangdong Province. The hydrometallurgical purification process, combined pyrometallurgical and hydrometallurgical processes, and vacuum distillation process are suitable for purifying selenium containing materials to prepare selenium products with a selenium grade of <99.9%. Among them, the combination of vacuum distillation with oxidation to remove tellurium, melting and slagging processes can achieve good separation of selenium and tellurium, which has industrial application prospects for it's simple equipment and low cost ; The oxidation volatilization process is suitable for purifying and preparing 4N and above selenium products, which has a high recovery rate, but the adaptability for raw materials is poor, and the degree of automation of the volatilization equipment is low, automation and environmental improvement are the improvement direction in future. The regional melting process is suitable for preparing 5N and above high-purity selenium, but it has high equipment requirements, small processing scale, low adaptability to raw materials, and limited patent applications and research. In the future, a single purification technology will be difficult to preparing of high-purity selenium, and the combination of multiple purification processes will be the development direction for preparation technology of high-purity selenium. In addition, equipment automation and intelligence will also be the focus of research and development in the fields of selenium purification and high-purity selenium preparation.

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董竞成,朱思毅,张辉,等. 硒提纯与高纯硒制备技术专利分析综述[J].中国有色冶金,2025,54(3):23-35.

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  • 收稿日期:2024-11-16
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  • 在线发布日期: 2025-12-18
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