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ALAKALI-ACTIVATED CEMENTS AS IMMOBILISATION MATRICES FOR ARSENIC WASTES

机译:碱活性水泥作为砷废物的固定基质

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A variety of natural and industrial waste product materials rich in SiO_2 and Al_2O_3 may be activated with certain alkaline materials to produce cementitious systems which when cured under mild temperature conditions, set and harden, in the presence of appropriate amounts of water, to give a very compact paste. In some cases, e.g. where fly ash is the activated material, fast setting and rapid strength development have been reported. In addition to their application in construction, their role as host matrices for waste materials is beginning to attract interest and it is this application that the study reported here addresses. Arsenic immobilisation is not achieved satisfactorily in Portland cement matrices because calcium arsenate phases, which form readily, decompose when the matrix carbonates. This paper describes the results of some of the leaching and micro structural studies on alkali-activated fly ash matrices containing arsenic with additional iron and manganese. Arsenic leaching from fly ash matrices is high, and considerably increased by the presence of manganese. The role of iron is more complicated and depends on its speciation.
机译:富含SiO_2和Al_2O_3的各种天然和工业废物产品材料可以用某些碱性材料激活,以产生水泥系统,当在温度温度条件下固化,设定和硬化时,在适当的水中固化,得到非常紧凑型膏。在某些情况下,例如粉煤灰是活性物质的情况下,报道了快速设定和快速发展。除了施工中的应用外,它们作为废物材料的主矩阵的作用是开始吸引兴趣的,这是该研究报告的本申请在此处地址。在波特兰水泥基质中,砷固定不符合令人满意的因子,因为钙砷酸钙相容易,当基质碳酸盐时易于分解。本文介绍了含有砷与额外的铁和锰的碱活化粉煤灰基质的一些浸出和微结构研究的结果。从粉煤灰矩阵的砷浸出很高,并且通过锰存在显着增加。铁的作用更复杂,取决于其形态。

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