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Immobilization forms of ZnO in the solidification/stabilization (S/S) of a zinc mine tailing through geopolymerization

机译:通过地缘聚合物化锌矿尾矿凝固/稳定化(S / S)固定形式的ZnO

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Solidification/stabilization (S/S) of a zinc mine tailing through geopolymerization has been studied. The mechanical property and microstructure of the mine tailings based-geopolymers were investigated through compressive strength measurements, FTIR, NMR and SEM characterizations. The stabilization of zinc in the geopolymers was analyzed through toxicity characteristic leaching procedure (TCLP) and the immobilization forms were characterized through XPS. With the content of metakaolin in raw materials increased from 0 to 50%, the amount of geopolymer gel in the binders and the compressive strength of geopolymer increased. As a ratio of metakaolin to mine tailings of 1:1, the mine tailings promoted the formation of silica-rich gel and the compressive strength of geopolymer was 30.1?MPa which was similar to pure metakaolin-based geopolymer. The immobilization efficiency of Zn in the geopolymers is correlated to their mechanical property. Zinc is immobilized in the geopolymers through physical encapsulation and adsorption of the leached Zn2+by geopolymer gel.
机译:研究了通过地缘聚合物化的锌矿尾矿的凝固/稳定(S / S)。通过压缩强度测量,FTIR,NMR和SEM表征研究了基于矿井尾矿的机械性能和微观结构。通过毒性特征浸出程序(TCLP)分析地质聚合物中锌的稳定化,通过XPS表征固定形式。随着原料中甲酚的含量增加到0%至50%,粘合剂中的地质聚合物凝胶的量和地质聚合物的抗压强度增加。作为MetaKaolin与矿井尾矿的比例为1:1,矿井尾矿促进了富含二氧化硅的凝胶的形成,地质聚合物的抗压强度为30.1μl≤MPa,其类似于纯甲醇基的地质聚合物。地质聚合物中Zn的固定效率与其力学性质相关。通过地质聚合物凝胶物理包封和吸附浸出的Zn2 +,在地质聚合物中固定在地质聚合物中。

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