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炉子类型对城市固体废物热处理中放射性铯行为的影响。

Influence of the type of furnace on behavior of radioactive cesium in municipal solid waste thermal treatment.

机构信息

Center for Material Cycles and Waste Management Research, National Institute for Environmental Studies, Onogawa 16-2, Tsukuba, Ibaraki 305-8506, Japan; Department of Risk Management and Environmental Sciences, Yokohama National University Graduate School of Environment and Information Sciences, Tokiwadai 79-1, Hodogaya, Yokohama, Kanagawa 240-8501, Japan.

Center for Material Cycles and Waste Management Research, National Institute for Environmental Studies, Onogawa 16-2, Tsukuba, Ibaraki 305-8506, Japan; Department of Risk Management and Environmental Sciences, Yokohama National University Graduate School of Environment and Information Sciences, Tokiwadai 79-1, Hodogaya, Yokohama, Kanagawa 240-8501, Japan.

出版信息

Waste Manag. 2018 Nov;81:41-52. doi: 10.1016/j.wasman.2018.09.029. Epub 2018 Oct 5.

Abstract

Municipal solid waste (MSW) contaminated by radioactive cesium (r-Cs) has been incinerated since the Fukushima Daiichi Nuclear Power Plant accident. Eight thermal treatment plants with four different types of furnaces were comprehensively investigated to provide fundamental data to improve our understanding of the behavior of r-Cs in various types of MSW thermal treatment facilities. R-Cs tended to distribute to the fly ash (FA) more than to the residue from the bottom of the furnace (bottom ash, incombustibles or slag). The r-Cs concentrations in the FA depended on the type of furnace and followed the order; fluidized-bed incinerator < stoker type incinerator < gasification melting furnaces. Shaft-type gasification melting furnace separated r-Cs selectively into FA and simultaneously discharged decontaminated slag. The leaching rate of r-Cs from FA was high, 30-100%, and independent of the type of furnace, whereas r-Cs in the residue from the bottom of the furnace scarcely dissolved in water. Heat recovery ash e.g. gas cooler ash was characterized by intermediate r-Cs concentrations and leachabilities compared with bottom residue and FA in stoker type and fluidized-bed incinerator. In the case of shaft-type gasification melting furnace, however, heat recovery ash showed similar property to FA due to a cyclone followed by heat recovery process. We evaluated whether baghouses (air- pollution control equipment) successfully removed r-Cs from flue gas. In all cases, r-Cs in flue gas was below the limit of detection after baghouse. We concluded that different types of furnaces affected r-Cs distributions, but flue gases from baghouse systems of all types of furnaces were safe.

摘要

受放射性铯(r-Cs)污染的城市固体废物(MSW)自福岛第一核电站事故以来一直被焚烧。对八座具有四种不同类型炉子的热处理厂进行了全面调查,为提高对各种类型 MSW 热处理设施中 r-Cs 行为的理解提供了基础数据。r-Cs 倾向于分布在飞灰(FA)中,而不是分布在炉底残渣(底灰、不可燃物或炉渣)中。FA 中的 r-Cs 浓度取决于炉子的类型,顺序为:流化床焚烧炉 < 炉排焚烧炉 < 气化熔融炉。竖井式气化熔融炉可选择性地将 r-Cs 分离到 FA 中,并同时排出去污炉渣。FA 中 r-Cs 的浸出率很高,为 30-100%,且与炉子的类型无关,而炉底残渣中的 r-Cs 几乎不溶于水。与炉排焚烧炉和流化床焚烧炉中的底灰和 FA 相比,余热回收灰(例如气体冷却器灰)的 r-Cs 浓度和浸出率中等。然而,在竖井式气化熔融炉的情况下,由于随后进行了余热回收过程,余热回收灰的特性与 FA 相似。我们评估了袋式除尘器(空气污染控制设备)是否成功地从烟道气中去除 r-Cs。在所有情况下,袋式除尘器后烟道气中的 r-Cs 均低于检测限。我们得出的结论是,不同类型的炉子会影响 r-Cs 的分布,但所有类型炉子的袋式除尘器系统的烟道气都是安全的。

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