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Durability and leaching behavior of mine tailings-based geopolymer bricks

机译:矿山尾矿基聚合物砖的耐久性和浸出行为

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Disposal of mine tailings (MT) in impoundments may have adverse environmental impacts such as air pollution from dust emissions and release of heavy metals to surface and underground water. Geopoly-merization as an environmentally-friendly and sustainable method has been used to stabilize MT so that they can be used as construction material. In this paper, the durability and leaching behavior of MT-based geopolymer bricks are studied by measuring unconfined compression strength (UCS), water absorption, weight loss, and concentration of heavy metals after immersion in pH = 4 and 7 solutions for different periods of time. Microscopic/spectroscopic techniques, SEM, XRD and FTIR, are also employed to investi-gate the change in microstructure and phase composition of MT-based geopolymer bricks after immersion in the solutions. To describe the leaching behavior of MT-based geopolymer bricks, the first order reaction/diffusion model (FRDM) is used to analyze the leaching test data. The results indicate that although there is a substantial strength loss after immersion in pH = 4 and 7 solutions, the water absorption and weight loss are small. The strength loss is mainly due to the dissolution of geopolymer gels as indicated by the microscopic/spectroscopic analysis results. The leaching analyses show that the heavy metals are effectively immobilized in the MT-based geopolymer bricks, which is attributed to the incorporation of heavy metals in the geopolymer network. The FRDM can satisfactorily describe the leaching behavior of heavy metals in the MT-based geopolymer bricks and the analysis results indicate that the solubility or reaction rate is an important factor controlling the leaching behavior.
机译:将矿山尾矿(MT)处置在水库中可能会对环境造成不利影响,例如扬尘排放造成的空气污染以及重金属向地表和地下水的释放。地理聚合是一种环保且可持续的方法,已用于稳定MT,因此可以用作建筑材料。在本文中,通过测量在不同pH值下浸泡在pH = 4和7的溶液中后的无侧限抗压强度(UCS),吸水率,重量损失和重金属浓度,研究了MT基地质聚合物砖的耐久性和浸出行为。时间。显微镜/光谱技术,SEM,XRD和FTIR也用于研究浸入溶液后MT基地质聚合物砖的微观结构和相组成的变化。为了描述基于MT的地质聚合物砖的浸出行为,使用一阶反应/扩散模型(FRDM)来分析浸出测试数据。结果表明,尽管浸入pH = 4和7的溶液中后强度有很大损失,但吸水率和重量损失很小。如显微镜/光谱分析结果所示,强度损失主要是由于地质聚合物凝胶的溶解。浸出分析表明,重金属有效地固定在MT基地质聚合物砖中,这归因于重金属在地质聚合物网络中的结合。 FRDM可以令人满意地描述MT基地质聚合物砖中重金属的浸出行为,分析结果表明,溶解度或反应速率是控制浸出行为的重要因素。

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