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Feasibility study on heavy metals recovery from fly ash of ash melting furnace by utilizing existing production facilities as social resources

机译:利用现有生产设施作为社会资源,对灰熔炉粉煤灰粉煤灰回收的可行性研究

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Since fly ash generated in ash melting furnace involves valuable nonferrous materials, especially zinc and lead, the materials should be extracted and reused for production from viewpoint of resource recovery. Zinc and lead in the ash can be recovered in a smelting furnace named ICP, which is a large scale furnace to smelt ore. Ash with high chlorine concentration needs pre-treatment to remove chlorine and the salt by thermal operation or rinsing. Hence, it is important to minimize recovery energy and CO{sub}2 emission in the processes and material transportation. In this study, it is considered that the melting furnace fly ash and/or the pre-treated matter are transported over a long distance in Japan by tracks and/or ships and an existing nonferrous metal smelting facility and a pretreatment facility are utilized as much as possible. From the evaluation of possible paths to recover the zinc and lead from the melting furnace fly ash it was found the path of transporting fly ash to the existing pre-treatment facility by ship and treating it together with a large amount of other ash lowers energy consumption and CO{sub}2 emission.
机译:由于灰熔炉中产生的粉煤灰涉及有价值的有色材料,尤其是锌和铅,因此应从资源恢复的观点来提取和重复生产材料并重复生产。灰烬中的锌和铅中的铅可以在名为ICP的冶炼炉中回收,这是一种熔炼矿石的大型熔炉。氯浓度高的灰分需要预处理以通过热操作或漂洗除去氯和盐。因此,重要的是最小化过程和材料运输中的恢复能量和CO {次} 2发射。在这项研究中,认为熔融炉粉煤灰和/或预处理的物质通过轨道和/或船舶在日本的长距离运输,并且现有的有色金属冶炼设施和预处理设施具有尽可能多的预处理设施尽量。从评估可能的途径来回收锌和熔炼炉粉煤灰的粉煤灰,发现通过船舶将粉煤灰运输到现有的预处理设施的路径,并将其与大量的其他灰分一起将其降低能量消耗和co {sub} 2排放。

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