Liu Xiaoming, Zhao Xibin, Yin Haifeng, Chen Jiaolong, Zhang Na
School of Metallurgical and Ecological Engineering, University of Science and Technology Beijing, Beijing 100083, China.
School of Metallurgical and Ecological Engineering, University of Science and Technology Beijing, Beijing 100083, China.
J Hazard Mater. 2018 May 5;349:262-271. doi: 10.1016/j.jhazmat.2017.12.072. Epub 2018 Jan 2.
Municipal solid waste incineration (MSWI) fly ash is a by-product of garbage incineration power generation, and its disposal is currently a world problem because it contains over standard heavy metals. This research aims to solidify the heavy metals in MSWI fly ash and make it to be utilizable construction materials under the guidance of intermediate-calcium cementitious materials (ICCM), and meanwhile figure out the solidification and hydration mechanism. The hydration characteristics of ICCM were characterized by XRD, FTIR, Si MAS-NMR and SEM techniques, and the environmental properties are investigated by TCLP and EPMA. The results indicate that the optimal ratio of (CaO + MgO)/(SiO + AlO) for ICCM is at the range of 0.76-0.88. The compressive strengths of ICCM reach the 42.5R normal Portland cement level, and the leaching concentrations of heavy metals meet the Chinese integrated wastewater discharge standard GB 8978-1996. As predominant hydration products, ettringite, hydrocalumite and amorphous C-S-H gel are principally responsible for the strength development of ICCM, and the (Ca + Mg)/(Si + Al) ratio at 0.88 has the best polymerized structure. The heavy metals are well solidified through combining with the C-S-H gel or absorbed in the hydration pastes. This paper provides an effective solution to use the MSWI fly ash in building material.
城市固体废弃物焚烧(MSWI)飞灰是垃圾焚烧发电的副产物,由于其含有超标重金属,目前其处置是一个世界性难题。本研究旨在以中钙胶凝材料(ICCM)为指导,固化MSWI飞灰中的重金属并使其成为可利用的建筑材料,同时探明固化及水化机理。采用XRD、FTIR、Si MAS-NMR和SEM技术对ICCM的水化特性进行表征,采用TCLP和EPMA研究其环境性能。结果表明,ICCM的最佳(CaO + MgO)/(SiO + AlO)比值范围为0.76 - 0.88。ICCM的抗压强度达到42.5R普通硅酸盐水泥水平,重金属浸出浓度符合中国综合废水排放标准GB 8978 - 1996。钙矾石、水铝钙石和无定形C-S-H凝胶作为主要水化产物,对ICCM的强度发展起主要作用,(Ca + Mg)/(Si + Al)比值为0.88时具有最佳的聚合结构。重金属通过与C-S-H凝胶结合或被吸收在水化浆体中而得到良好固化。本文为MSWI飞灰在建筑材料中的利用提供了一种有效解决方案。