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Studies on potential of Portland cement mortar for binding of waterworks sludge to reduce heavy metal leaching

机译:波特兰水泥砂浆粘结水厂污泥以减少重金属浸出的潜力研究

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The investigation of heavy metal leaching and physicochemical properties of cement-solidified waterworks sludge (CMWWS) formed by incorporating waterworks sludge (WWS) into cement mortar was carried out. The chemical composition, compressive strength and other physicochemical properties of the CMWWS cube specimens were determined using field emission scanning electron microscopy (FESEM), X-ray diffractometry (XRD) and Fourier transform-infrared spectroscopy (FTIR). The major type of chemical components present in CMWWS was found to be Al and Fe. The increasing amount of WWS added to cement mortar resulted in the increasing of organic matter, urchin-like morphology and clear peak intensity. At the end of 28 days of curing, the soaking solution became strongly basic and CMWWS cube specimens leached out higher amount of heavy metals. The compressive strength of CMWWS increased up to a WWS percentage of 10%, and basic (pH [ 7) curing solution was found to be better than water for curing purposes. It is concluded that solidification–stabilisation (S/S) technique is able to effectively reduce the leaching of heavy metals from the WWS and CMWWS containing up to 10% WWS can be used as construction material.
机译:研究了将水厂污泥(WWS)掺入水泥砂浆中形成的水​​泥固化水厂污泥(CMWWS)的重金属浸出和理化性质。使用场发射扫描电子显微镜(FESEM),X射线衍射仪(XRD)和傅里叶变换红外光谱(FTIR)测定了CMWWS立方体样品的化学成分,抗压强度和其他理化性质。发现CMWWS中存在的主要化学成分是Al和Fe。添加到水泥砂浆中的WWS的数量增加导致有机质,海胆状形态和清晰的峰强度增加。养护28天后,浸泡溶液变成强碱性,而CMWWS立方体试样浸出了更多的重金属。 CMWWS的抗压强度提高到WWS的10%,并且发现碱性(pH [7])固化溶液比水更好。结论是,凝固稳定化(S / S)技术能够有效减少WWS中的重金属浸出,并且含有高达10%WWS的CMWWS可用作建筑材料。

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