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首页> 外文期刊>Journal of Cleaner Production >Utilization of red mud, slag and waste drilling fluid for the synthesis of slag-red mud cementitious material
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Utilization of red mud, slag and waste drilling fluid for the synthesis of slag-red mud cementitious material

机译:利用赤泥,矿渣和废钻井液合成矿渣-红泥胶凝材料

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摘要

Waste drilling fluid is a kind of residue generated in the drilling process. The traditional treatment of waste drilling fluid, such as solid-liquid separation, chemical degradation, heat treatment, solidification treatment and biochemical degradation, is expensive and complicated. Red mud, which is an industrial by-product produced during the extraction of bauxite, also has problems such as excessive accumulation and difficult to deal with. In this study, a new cementitious material was prepared by using waste drilling fluid, blast furnace slag and red mud for the purpose of environmentally efficient solutions for wastes recycling. The physical and chemical properties of blast furnace slag-red mud cementitious material (SRCM) are evaluated by compressive strength, X-ray diffraction (XRD) analysis and mercury intrusion porosimetry (MIP). The compressive strength results show that the samples can achieve 16.7 MPa. The hydration mechanism of the SRCM is studied by hydration heat analysis and scanning electron microscopy (SEM). The results show that the structure formation of the material is mainly formed by the new amorphous structure. The structure of the SRCM is denser with respect to blank sample without red mud. Toxicity leaching result shows the heavy metal ion content meet the criteria in standard, indicating the new cementitious material is environmental friendly. (C) 2019 Elsevier Ltd. All rights reserved.
机译:废钻井液是钻井过程中产生的一种残留物。废钻井液的传统处理方法,如固液分离,化学降解,热处理,凝固处理和生化降解,既昂贵又复杂。赤泥是铝土矿提取过程中产生的工业副产品,也存在诸如堆积过多且难以处理的问题。在这项研究中,使用废钻井液,高炉矿渣和赤泥制备了一种新的胶凝材料,目的是为废料循环利用提供环保的解决方案。通过抗压强度,X射线衍射(XRD)分析和压汞法(MIP)对高炉矿渣赤泥胶凝材料(SRCM)的物理和化学性质进行了评估。抗压强度结果表明样品可以达到16.7 MPa。通过水合热分析和扫描电子显微镜(SEM)研究了SRCM的水合机理。结果表明,材料的结构形成主要由新的非晶结构形成。相对于没有赤泥的空白样品,SRCM的结构更致密。毒性浸出结果表明,重金属离子含量符合标准要求,表明该新型胶凝材料是环保的。 (C)2019 Elsevier Ltd.保留所有权利。

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