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Investigation on Leaching Behaviour of Fly Ash and Bottom Ash Replacement in Self-Compacting Concrete

机译:自压力混凝土粉煤灰和底灰更换浸出行为的调查

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Fly ash and bottom ash are some of the waste generated by coal-fired power plants, which contains large quantities of toxic and heavy metals. In recent years, many researchers have been interested in studying on the properties of self-compacting concrete incorporated with fly ash and bottom ash but there was very limited research from the combination of fly ash and bottom ash towards the environmental needs. Therefore, this research was focused on investigating the leachability of heavy metals of SCC incorporated with fly ash and bottom ash by using Toxicity Characteristic Leaching Procedure, Synthetic Precipitation Leaching Procedure and Static Leaching Test. The samples obtained from the coal-fired power plant located at Peninsula, Malaysia. In this study, the potential heavy metals leached out from SCC that is produced with fly ash as a replacement for Ordinary Portland Cement and bottom ash as a substitute for sand with the ratios from 10% to 30% respectively were designated and cast. There are eight heavy metals of concern such as As, Cr, Pb, Zn, Cu, Ni, Mn and Fe. The results indicated that most of the heavy metals leached below the permissible limits from the United States Environmental Protection Agency and World Health Organization limit for drinking water. As a conclusion, the minimum leaching of the heavy metals from the incorporation of fly ash and bottom ash in self-compacting concrete was found in 20% of fly ash and 20% of bottom ash replacement. The results also indicate that this incorporation could minimize the potential of environmental problems.
机译:粉煤灰和底部灰是燃煤发电厂产生的一些废物,其含有大量的毒性和重金属。近年来,许多研究人员一直有兴趣研究采用粉煤灰和底灰结合的自体压实混凝土的性质,但是从粉煤灰和底灰结合朝环境需求的研究非常有限。因此,本研究专注于通过使用毒性特征浸出程序,合成沉淀浸出程序和静态浸出试验来研究掺入粉煤灰和底灰的SCC重金属的可浸出性。从位于马来西亚半岛的燃煤发电厂获得的样品。在这项研究中,用粉煤灰产生的SCC浸出的潜在重金属作为普通波特兰水泥和底部灰分的替代品作为砂砂的替代物分别为粉末的替代物,分别分别为10%至30%的砂岩。有八个重金属的关注,如As,Cr,Pb,Zn,Cu,Ni,Mn和Fe。结果表明,大多数重金属低于美国环境保护局和世界卫生组织饮用水限额的允许限制。作为结论,在自压灰和底灰结合中,重金属的最小浸出在自压灰和底灰中,发现了20%的粉煤灰和20%的底灰更换。结果还表明,该融合可以最大限度地减少环境问题的潜力。

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