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熔盐电化学电池的设计与运行

Design and operation of a molten salt electrochemical cell.

作者信息

Consiglio Anthony N, Carotti Francesco, Liu Ertai, Williams Haley, Scarlat Raluca O

机构信息

Department of Nuclear Engineering, University of California, Berkeley, CA 94720, United States.

Department of Engineering Physics, University of Wisconsin-Madison, Madison, WI 53706, United States.

出版信息

MethodsX. 2022 Feb 1;9:101626. doi: 10.1016/j.mex.2022.101626. eCollection 2022.

Abstract

Molten salts such as 2LiF-BeF (FLiBe) have been proposed as coolants for advanced nuclear fission and fusion reactors. Critical to the design, licensing and operation of these reactors is characterization and understanding of the chemical behavior and mass transport of activation and fission products, corrosion products, and other solutes in the coolant. Electrochemical techniques are a powerful suite of tools for probing these phenomena. The design of an experimental cell for molten salt electrochemistry is described herein. As a demonstration of this design, details of the experimental methods used to conduct electrochemical experiments with molten FLiBe with addition of LiH are provided. Decommissioning of the cell is considered from the point of view of decontamination and waste generated. Main features of the cell include:•Suitable for operation up to 800 °C; suitable for operation inside and outside of a glovebox.•Enables sweep gas, gas sampling and analysis; enables addition of solid and liquid materials during operation.•Supports a variety of electrode materials and arrangements.

摘要

诸如2LiF-BeF(FLiBe)之类的熔盐已被提议用作先进核裂变和聚变反应堆的冷却剂。对于这些反应堆的设计、许可和运行至关重要的是对冷却剂中活化产物和裂变产物、腐蚀产物及其他溶质的化学行为和质量传输进行表征和理解。电化学技术是探测这些现象的一套强大工具。本文描述了一种用于熔盐电化学的实验池设计。作为该设计的一个示例,提供了用于在添加LiH的情况下对熔融FLiBe进行电化学实验所使用的实验方法的详细信息。从去污和产生的废物角度考虑了该实验池的退役问题。该实验池的主要特点包括:

•适用于高达800°C的运行;适用于手套箱内外的操作。

•能够进行吹扫气体、气体采样和分析;能够在运行期间添加固体和液体材料。

•支持多种电极材料和布置。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c7b1/8892162/662d9ee4061c/ga1.jpg

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