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Application of Fly Ash and Slag Generated by Incineration of Municipal Solid Waste in Concrete

机译:粉煤灰和炉渣在混凝土中焚烧产生的应用

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As landfill space for the disposal of products of municipal solid waste incineration (MSWI) such as fly ash and slag becomes increasingly scarce, a reduction of disposed material is urgently required. The method of using incineration products in concrete production is explored in this paper through a feasibility study of utilizing fly ash and slag to replace cement and coarse aggregate in appropriate proportions. Results show that C30 concrete optimum replacement rates of fly ash and slag are 30% and 20%, which can meet the minimum strength requirement. The leaching concentrations of Cu, Zn, Pb, Cr, and Cd in MSWI concrete samples are determined to be less than the identification value of solid waste leaching toxicity. Based on scanning electron microscopy (SEM) and X-ray diffraction (XRD) analyses, MSWI fly ash has certain dispersion. The particle size of MSWI fly ash is determined to be close to that of the coal fly ash, and the surface morphology is irregular. The main components include SiO2, CaCO3, and Ca2SiO4, and they are similar to those present in the coal fly ash. The slag structure is loose as well as irregular, and its main component is SiO2. The SiO2 and Al2O3 in fly ash and slag participate in the hydration reaction of cement and can increase concrete strength. It is thus confirmed that fly ash and slag generated by waste incineration can be used to replace cement and coarse aggregate in appropriate proportions, and it is an effective method to solve the problem of scarcity of solid waste landfill space.
机译:由于垃圾填埋场处理城市固体废物焚烧(MSWI)等粉煤灰和炉渣的产品变得越来越稀缺,因此迫切需要减少设置的材料。本文探讨了使用混凝土生产中的焚烧产品的方法,通过利用粉煤灰和炉渣更换水泥和粗骨料以适当的比例来替代水泥和粗骨料。结果表明,粉煤灰和渣的C30混凝土最佳替代率为30%和20%,可以满足最低的强度要求。 MSWI混凝土样品中Cu,Zn,Pb,Cr和Cd的浸出浓度确定为小于固体废物浸出毒性的鉴定值。基于扫描电子显微镜(SEM)和X射线衍射(XRD)分析,MSWI飞灰具有一定的分散体。确定MSWI飞灰的粒径接近煤粉煤灰的粒度,表面形态不规则。主要成分包括SiO 2,CaCO 3和Ca2SiO4,它们类似于煤粉煤灰中存在的那些。炉渣结构松动,也是不规则的,其主要成分是SiO2。粉煤灰和渣中的SiO2和Al2O3参与水泥的水化反应,可以提高混凝土强度。因此证实,废焚烧产生的粉煤灰和渣可用于以适当的比例替代水泥和粗聚集体,并且是解决固体废物填埋场空间稀缺问题的有效方法。

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