制定核电厂工业水电解制氢的安全监管方法

IF 0.4 4区 工程技术 Q4 NUCLEAR SCIENCE & TECHNOLOGY
I. A. Kirillov, N. L. Kharitonova, V. A. Simonenko, V. M. Kryukov
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引用次数: 0

摘要

文章讨论了在当代核电厂厂址额外电解生产氢气的选址问题,这是核氢能源开发方面最有前景的领域之一。研究旨在评估在核电厂厂址建设电解制氢综合设施时,将现行法律文件的要求应用于氢气火灾和爆炸安全监管的可能性。研究分析了适用于现有国家核电厂氢气工业生产(包括电解、压缩、液化、储存、预运输、运输以及向消费者供应大量氢气产品)安全监管的监管文件。指出了监管法律框架的局限性,包括在这种氢气生产地点的安全领域,以及改进的必要性。为澄清和/或补充国家核电厂氢电解生产综合体氢火灾和爆炸安全管理文件的要求,提出了建议和提案。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Development of approaches to regulatory safety in industrial water-electrolysis production of hydrogen at NPPs

Development of approaches to regulatory safety in industrial water-electrolysis production of hydrogen at NPPs

The article discusses the location of additional electrolysis production of hydrogen at the site of contemporary NPPs as one of the most promising areas in terms of nuclear-hydrogen energy development. The study aims to assess the possibility of applying the requirements of current legal documents to the regulation of hydrogen fire and explosion safety when locating hydrogen electrolysis production complexes at the NPP site. The regulatory documents applicable to the safety regulation in the industrial production of hydrogen at existing NPPs, including the electrolysis, compression, liquefaction, storage, pre-transportation, transportation, and supplying large volumes of product hydrogen to consumers, are analyzed. The limitations of the regulatory legal framework, including in the field of safety for such a location of the hydrogen production are noted, along with the need for its improvement. Recommendations and proposals are formulated to clarify and/or supplement the requirements of documents regulating hydrogen fire and explosion safety for hydrogen electrolysis production complexes at NPPs.

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来源期刊
Atomic Energy
Atomic Energy 工程技术-核科学技术
CiteScore
1.00
自引率
20.00%
发文量
100
审稿时长
4-8 weeks
期刊介绍: Atomic Energy publishes papers and review articles dealing with the latest developments in the peaceful uses of atomic energy. Topics include nuclear chemistry and physics, plasma physics, accelerator characteristics, reactor economics and engineering, applications of isotopes, and radiation monitoring and safety.
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