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Comprehensive Utilization of Red Mud Through the Recovery of Valuable Metals and Reuse of the Residue

机译:通过回收有价金属和废渣再利用来综合利用赤泥

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An integrated technological route for comprehensive utilization of red mud through the extraction of valuable components and reuse of the magnetic residue is proposed. In this study, inductively coupled plasma atomic emission spectroscopy, X-ray fluorescence, X-ray powder diffraction, and vibrating sample magnetometer were used to characterize the process. The process includes sintering, alkaline leaching to recover Na and Al, and removal of lead ions from wastewater by magnetic residue containing magnesium ferrite. The effects of various parameters were systematically investigated, and the optimal conditions were determined as: sintering temperature of 1150 °C and duration of 60 min, the mole ratio of CaO/SiO_2 of 3, Na_2O/Al_2O_3 of 1.2, and MgO/Fe_2O_3 of 1 in the raw material. Under the conditions, the results showed that approximately 74% Al and 95% Na were recovered from red mud by this route. The leach residue exhibits magnetic and adsorption properties, its adsorption capacity reaching about 70 mg/g at the initial Pb~(2+) concentration of 80 mg/L. Therefore, it may be a promising candidate in wastewater treatment and other fields.
机译:提出了一条综合利用赤泥的工艺路线,即通过提取有价值的组分,再利用磁渣。本研究采用电感耦合等离子体原子发射光谱、X射线荧光、X射线粉末衍射和振动样品磁强计对该过程进行了表征。该工艺包括烧结、碱浸回收钠和铝,以及用含铁酸镁的磁渣去除废水中的铅离子。系统地研究了各种参数的影响,确定了最佳条件为:原料中的烧结温度为1150℃,烧结时间为60min,CaO/SiO 2的摩尔比为3,Na 2O/Al 2O_3的摩尔比为1.2,MgO/Fe 2O_3的摩尔比为1。结果表明,在该工艺条件下,赤泥中铝和钠的回收率分别为74%和95%。浸出渣具有磁性和吸附性能,在初始Pb~(2+)浓度为80mg/L时,其吸附容量可达70mg/g左右,因此在废水处理和其他领域具有广阔的应用前景。

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