利用粘土矿物控制福岛县夏季和冬季城市固体垃圾焚烧灰中放射性铯的浸出

Naoharu Murasawa, T. Hatta
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引用次数: 1

摘要

2011年福岛第一核电站释放的放射性铯(r-Cs)附着在植被/土壤上,被收集为城市固体废物(MSW)进行焚烧,集中在焚烧灰(底灰[BA]、飞灰[FA]和螯合处理的FA [TFA])中。FA和TFA中的r-Cs在接触水分时很容易浸出。重要的是要防止进一步的污染,因为r-Cs对生态系统和人体都有负面影响。天然可用的粘土矿物被认为对捕获r-Cs有效,是很好的替代品。在这里,我们在2016年8月和2017年2月对福岛城市生活垃圾焚烧设施的灰烬进行了采样。我们利用能量色散x射线荧光光谱和锗半导体探测器测定了样品中的元素组成和r-Cs浓度,并进行了浸出试验。我们还测定了沸石、酸性粘土和蛭石对浸出的抑制程度。无论季节如何,FA和TFA的氯化物含量和r-Cs浸出率均高于BA。预先直接添加和混合粘土矿物(5 ~ 20wt .%)有效防止r-Cs浸出。本研究首次考察了粘土矿物直接加入和混合到生活垃圾焚烧灰中对r-Cs浸出的抑制作用。
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Use of Clay Minerals to Control Radioactive Cesium Leaching from Municipal Solid Waste Incineration Ash in Fukushima Prefecture in Summer and Winter
Radioactive cesium (r-Cs) released from the 2011 Fukushima Daiichi Nuclear Power Plant attaches to vegetation/soil and is collected as municipal solid waste (MSW) for incineration, being concentrated in incineration ash (bottom ash [BA], fly ash [FA], and chelate-treated FA [TFA]). r-Cs in FA and TFA can easily leach upon contact with moisture. It is important to prevent further contamination, as r-Cs has negative effects on ecosystems and the human body. Naturally available clay minerals, considered effective for capturing r-Cs, are a good alternative. Here, we sampled ash from MSW incineration facilities in Fukushima in August 2016 and February 2017. We used energy dispersive X-ray fluorescence spectroscopy and Ge semiconductor detector to determine elemental composition and r-Cs concentration in the samples and conducted leaching tests. We also determined the extent of leaching suppression by zeolite, acidic clay, and vermiculite. Chloride contents and r-Cs leaching rates were higher in FA and TFA than in BA, regardless of the season. Prior direct addition and mixing of clay minerals (5 to 20 wt.%) effectively prevented r-Cs leaching. This study is the first to examine r-Cs leaching inhibition by clay mineral direct addition and mixing to MSW incineration ash.
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