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pH-Dependent Leaching Characteristics of Major and Toxic Elements from Red Mud

机译:红泥中主要和有毒元素的pH依赖性浸出特性

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摘要

This study analyzes the leaching behavior of elements from red mud (bauxite residue) at pH values ranging from 2 to 13. The leaching characteristics of metals and contaminated anions in five red mud samples produced by Bayer and combined processes were analyzed using the batch leaching technique following the US Environmental Protection Agency (USEPA) Method 1313. In addition, the geochemical model of MINTEQ 3.1 was used to identify the leaching mechanisms of metals. The results showed that Ca, Mg, and Ba follow the cationic leaching pattern. Al, As, and Cr show an amphoteric leaching pattern. The leaching of Cl is unaffected by the pH. The maximum leaching concentration of the proprietary elements occurs under extremely acidic conditions (pH = 2), except for As. The leaching concentration of F reaches 1.4–27.0 mg/L in natural pH conditions (i.e., no acid or base addition). At the same pH level, the leaching concentrations of Pb, As, Cr, and Cu are generally higher from red mud produced by the combined process than that those of red mud from the Bayer process. The leaching concentration of these elements is not strongly related to the total elemental concentration in the red mud. Geochemical modeling analysis indicates that the leaching of metal elements, including Al, Ca, Fe, Cr, Cu, Pb, Mg, Ba, and Mn, in red mud are controlled by solubility. The leaching of these elements depended on the dissolution/precipitation of their (hydr)oxides, carbonate, or sulfate solids.
机译:本研究分析了pH值为2至13的赤泥(铝土矿残渣)中元素的浸出行为。采用分批浸出技术分析了拜耳公司及其联合工艺生产的5个赤泥样品中金属和污染阴离子的浸出特性。遵循美国环境保护局(USEPA)方法1313。此外,使用MINTEQ 3.1的地球化学模型来识别金属的浸出机理。结果表明,Ca,Mg和Ba遵循阳离子浸出模式。 Al,As和Cr显示出两性浸出模式。 Cl -的浸出不受pH的影响。除砷外,专有元素的最大浸出浓度在极端酸性条件下(pH = 2)发生。在自然pH条件下(即不添加酸或碱),F -的浸出浓度达到1.4–27.0 mg / L。在相同的pH值下,联合工艺生产的赤泥中铅,砷,铬和铜的浸出浓度通常比拜耳工艺中的赤泥中的浸出浓度高。这些元素的浸出浓度与赤泥中的总元素浓度没有很大关系。地球化学建模分析表明,赤泥中金属元素(包括Al,Ca,Fe,Cr,Cu,Pb,Mg,Ba和Mn)的浸出受溶解度控制。这些元素的浸出取决于其(氢氧化物)氧化物,碳酸盐或硫酸盐固体的溶解/沉淀。

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