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氟化物熔盐的制备及其应用进展

宗国强 肖吉昌

化工进展2018,Vol.37Issue(7):2455-2472,18.
化工进展2018,Vol.37Issue(7):2455-2472,18.DOI:10.16085/j.issn.1000-6613.2018-0117

氟化物熔盐的制备及其应用进展

Advances in the preparation and application of fluoride molten salts

宗国强 1肖吉昌1

作者信息

  • 1. 中国科学院有机氟化学重点实验室,中国科学院上海有机化学研究所,中国科学院大学,上海 200032
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摘要

Abstract

Fluoride molten salt has many advantages,such as high temperature stability,high thermal conductivity,large heat capacity,wide electrochemical window,low saturated vapor pressure and small neutron absorption cross section. It is an important functional material which has found widespread applications. The typical preparation and purification methods of fluoride molten salt,including vacuum dehydration,fluorination using ammonium fluoride,H2-HF purification,electrochemical purification and reduction with metals,are introduced in detail. The mechanism and technical characteristics are analyzed for the different methods that are used to remove impure ions in molten salt. At the same time,the applications and progress of fluoride molten salts in nuclear energy,metallurgy, functional materials preparation,advanced energy storage medium,surface treatment technology, electronic chemicals,fine chemicals and molten salt battery materials are reviewed. The fluoride molten salts are mainly used as the nuclear reactor coolant,molten salt electrolyte,high temperature energy storage material and reaction medium. The existing problems in this area are also discussed. It is important to study and clarify the preparation and purification mechanism of fluoride molten salt,to explore the existence form and impurity migration nature in the process of fluoride purification,and to develop a new method for the purification of the molten salt to reduce its corrosion and cost.

关键词

氟化物熔盐/熔盐堆/冶金/冷却剂/电解质

Key words

fluoride molten salt/molten salt reactor/metallurgy/coolant/electrolyte

分类

化学化工

引用本文复制引用

宗国强,肖吉昌..氟化物熔盐的制备及其应用进展[J].化工进展,2018,37(7):2455-2472,18.

基金项目

中国科学院战略性先导科技专项(XDA02020105, XDA02020106)、国家重点基础研究计划(2015CB931900)及国家自然科学基金(21421002)项目. (XDA02020105, XDA02020106)

化工进展

OA北大核心CSCDCSTPCD

1000-6613

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