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Leachability of Self-Compacting Concrete (SCC) Incorporated With Fly Ash and Bottom Ash by Using Synthetic Precipitation Leaching Procedure (SPLP)

机译:通过使用合成沉淀浸出程序(SPLP),通过使用粉煤灰和底部灰分(SPLP)来渗透自压灰和底灰的可透明性(SCC)

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Fly ash (FA) and bottom ash (BA) are some of waste generated by coal-fired power plants, which contains large quantities of toxic and heavy metals. The combustion of coal after been heated at specific temperatures and pressures in power stations produces ash. FA and BA must be properly managed and disposed without causing any harmful environmental effects. In recent years, many researchers have been interested to study on the properties of self-compacting concrete (SCC) incorporated with FA and BA but there was very limited research from the combination of FA and BA towards the environmental needs. Therefore, this study was focused in determining the leachability of heavy metals of SCC incorporated with FA and BA by using Synthetic Precipitation Leaching Procedure (SPLP). The samples were obtained from coal-fired power plant located at Kapar, Selangor. As such, the potential heavy metals leached out from SCC that is produced with FA as replacement for Ordinary Portland Cement (OPC) and BA as replacement for sand with the ratios from 10% to 30% respectively were designated and casted. There are eight heavy metals of concern such as As, Cr, Pb, Zn, Cu, Ni, Mn and Fe. The results show that all heavy metals were leached below the permissible limits from USEPA and EPAV except for As which is the only heavy metal that leaches in large amount even in the control sample. This is probably due to the influence from the acidic extraction fluid, causing As to leach out in higher amounts during the extraction process. All in all, the uses FA and BA in SCC up to 20% seem to be an environmental friendly practice as far as leaching of heavy metals in the concrete is comply with the standard.
机译:飞灰(FA)和底灰(BA)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。在特定温度下加热煤的燃烧和发电站的压力产生灰分。必须正确管理和处置FA和BA,而不会导致任何有害的环境影响。近年来,许多研究人员一直有兴趣研究与FA和BA合并的自我压实混凝土(SCC)的性质研究,但从FA和BA的结合实现了非常有限的研究,以实现环境需求。因此,通过使用合成沉淀浸出程序(SPLP),本研究重点是测定加入FA和BA的SCC重金属的可浸出性。样品是从位于雪兰莪Kapar的燃煤发电厂获得的。因此,从SCC浸出的潜在的重金属用FA作为普通波特兰水泥(OPC)和BA的替代品分别为普通波特兰水泥(OPC)和BA的替代品分别为粉末的替代物分别为10%至30%的替代品。有八个重金属的关注,如As,Cr,Pb,Zn,Cu,Ni,Mn和Fe。结果表明,除了在对照样品中,所有重金属都浸出了来自Umerypa和Epav的允许漏分和epav的唯一重金属。这可能是由于酸性萃取液的影响,在提取过程中导致较高量的浸出。总而言之,SCC中的使用FA和BA高达20%似乎是一种环保型实践,只要混凝土中的重金属的浸出符合标准。

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