Measurement and Evaluation of Hydrogen Production from Mixtures of Seawater and Zeolite in Decontamination of Radioactive Water

Y. Kumagai, R. Nagaishi, Atsushi Kimura, M. Taguchi, K. Nishihara, I. Yamagishi, T. Ogawa
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引用次数: 5

Abstract

Zeolite is used for decontamination of radioactive water containing salts from seawater in the Fukushima Dai-ichi Nuclear Power Station. Evaluation of hydrogen production by water radiolysis during the process is important for a safe operation. Thus, hydrogen production from the mixture of zeolite and seawater was studied by γ-radiolysis experiment, and the hydrogen production during the process was evaluated. The measured yield of hydrogen from seawater was comparable to the primary yield in the γ-radiolysis of water. This result indicates that oxidation of hydrogen by radical products of water radiolysis is not effective in seawater. The measured yield from the mixture decreased at a high weight fraction of zeolite. However, the measured yield was higher than that expected from the direct radiolysis of water in the mixture, which would decrease proportionally to the weight fraction of water. This result suggests that the radiation energy deposited on zeolite is involved in hydrogen formation. From the measured yields, the hydrogen production rate was evaluated to be 3.6 mL/h per ton of radioactive water before the process and 1.5 L/h per ton of the waste adsorbent after the process.
海水与沸石混合净化放射性水产氢量的测定与评价
在福岛第一核电站,沸石被用于净化海水中含有盐的放射性水。对水裂解制氢过程进行评价对安全生产具有重要意义。因此,通过γ-辐射裂解实验研究了沸石与海水混合物的制氢过程,并对其产氢过程进行了评价。从海水中测得的氢的产率与水的γ-辐射分解的初级产率相当。这一结果表明,水辐射反应的自由基产物对氢的氧化作用在海水中并不有效。在沸石的高质量分数下,混合物的测量产率降低。然而,所测得的产率高于直接辐射分解混合物中水的预期产率,这将与水的重量分数成比例地降低。这一结果表明,沉积在沸石上的辐射能参与了氢的形成。根据测量的产氢率,计算出处理前每吨放射性水的产氢率为3.6 mL/h,处理后每吨废吸附剂的产氢率为1.5 L/h。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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