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Ettringite and monosulfate formation to reduce alkalinity in reactions of alum-based water treatment residual with steel slag

机译:在铝基水处理残渣与钢渣反应中形成钙矾石和一硫酸盐以降低碱度

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摘要

Aged steel slag has a potential use as a highly durable aggregate in roadway construction; however, its high capacity for creating alkaline leachates (pH 12.4) poses a severe environmental risk. In batch and column leach tests, 10% alum-based water treatment residual (WTR) addition to aged steel slag resulted in a 67% decrease in acid neutralizing capacity of steel slag and leachate alkalinity, but this alkalinity mitigation effect was accompanied with markedly increases in dissolved Al concentrations in the leachates (4.6 mM) compared to steel slag-only samples. Measurements of dissolved ions, saturation index evaluations, and results of geochemical modeling analysis indicated that ettringite and monosulfate formations were favored and that it is probably the responsible mechanism for the observed mitigation of alkalinity and Ca release under alkaline conditions. (C) 2018 Elsevier Ltd. All rights reserved.
机译:老化的钢渣在道路施工中具有潜在的高度耐久性。然而,其产生碱性渗滤液(pH> 12.4)的高容量构成了严重的环境风险。在分批和柱浸试验中,向老化的钢渣中添加10%的铝基水处理残留物(WTR)可使钢渣的酸中和能力和浸出液碱度降低67%,但这种缓解碱度的效果伴随着显着增加与仅钢渣样品相比,渗滤液中的溶解铝浓度(<4.6 mM)有所降低。溶解离子的测量,饱和指数评估以及地球化学模型分析的结果表明,钙矾石和单硫酸盐的形成是有利的,这可能是在碱性条件下观察到的碱度降低和钙释放的负责任机制。 (C)2018 Elsevier Ltd.保留所有权利。

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