研究通过激光清洁各种表面产生的气溶胶,并优化雾气和喷雾清除技术

IF 3.9 3区 环境科学与生态学 Q2 ENGINEERING, CHEMICAL
Avadhesh Kumar Sharma , Ruicong Xu , Zeeshan Ahmed , Shuichiro Miwa , Shunichi Suzuki , Atsushi Kosuge
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引用次数: 0

摘要

为确保福岛第一核电站(NPP)安全有效地退役,研究辐射热点激光去污和燃料碎片激光切割过程中产生的放射性气溶胶的行为至关重要。了解这些气溶胶的生成和扩散模式对于正确规划和执行退役活动至关重要。本研究的重点是对用于清洁碳钢、不锈钢和混凝土表面的高功率连续波(CW)光纤激光器进行性能评估。有效隔离和清除放射性气溶胶对于最大限度地降低退役过程中的辐照风险至关重要。测试样品由碳钢(CS)、不锈钢(SS)和混凝土制成,涂有 ZrO2、CeO2 和 CsI,在 UTARTS(东京大学喷雾气溶胶去除测试)设施内使用 4 级光纤激光器进行激光去污。在激光去污过程中产生的气溶胶微粒利用喷雾和雾化系统进行封闭和捕获。这项研究建议使用喷雾和烟雾组合技术,该技术在清除激光照射产生的气溶胶方面表现出很高的效率。这项研究有助于实现在核退役领域推广最佳做法和创新解决方案的更广泛目标,从而保护环境和人类健康。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Investigation of aerosol generation through laser cleaning of various surfaces and optimization of mist & spray scavenging

To ensure the safe and effective decommissioning of the Fukushima Daiichi Nuclear Power Plant (NPP), it is crucial to investigate the behavior of radioactive aerosols generated during the laser decontamination of radiation hot spots and laser cutting of fuel debris. Understanding the generation and dispersion patterns of these aerosols is of utmost importance for the proper planning and execution of decommissioning activities. This study focuses on the performance evaluation of high-power continuous wave (CW) fiber lasers for cleaning surfaces composed of carbon steel, stainless steel, and concrete. The effective confinement and scavenging of radioactive aerosols are critical in minimizing the risk of radiation exposure during decommissioning processes. Test samples, made of carbon steel (CS), stainless steel (SS), and concrete, coated with ZrO2, CeO2, and CsI, were subjected to laser decontamination using a class-4 fiber laser within the UTARTS (University of Tokyo Aerosol Removal Test with Sprays) facility. The aerosol particles generated during the laser decontamination process were confined and captured utilizing a spray and mist system. The study proposes the utilization of a combined spray and mist technique, which has demonstrated high efficiency in scavenging aerosols generated through laser irradiation. This research contributes to the broader goal of promoting best practices and innovative solutions in the field of nuclear decommissioning, thereby safeguarding the environment and human health.

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来源期刊
Journal of Aerosol Science
Journal of Aerosol Science 环境科学-工程:化工
CiteScore
8.80
自引率
8.90%
发文量
127
审稿时长
35 days
期刊介绍: Founded in 1970, the Journal of Aerosol Science considers itself the prime vehicle for the publication of original work as well as reviews related to fundamental and applied aerosol research, as well as aerosol instrumentation. Its content is directed at scientists working in engineering disciplines, as well as physics, chemistry, and environmental sciences. The editors welcome submissions of papers describing recent experimental, numerical, and theoretical research related to the following topics: 1. Fundamental Aerosol Science. 2. Applied Aerosol Science. 3. Instrumentation & Measurement Methods.
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