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A combined CaO/electrochemical treatment of the acid mine drainage from the 'Robule' Lake

机译:CaO /电化学处理对“罗布勒”湖酸性矿山排水的综合处理

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The purpose of this work was development and application of the purification system suitable for the treatment of the acid mine drainage (AMD) accumulated in the "Robule" Lake, which represents the part of the Bor copper mining and smelling complex, Serbia. The study was undertaken in order to minimize adverse effect on the environment caused by the discharge of untreated AMD, which was characterized with low pH value (2.63) and high concentration of heavy metals (up to 610 mg/L) and sulfates (up to 12,000 mg/L). The treatment of the effluent included pretreatment/pH adjustment with CaO followed by electrocoagulation using iron and aluminum electrode sets. Following the final treatment, the decrease in the concentration of heavy metals ranged from 40 up to 61000 times depending on the metal and its initial concentration. The parameters, color and turbidity were removed completely in the pretreatment step, while the removal efficiencies for other considered parameters were as follows: EC = 55.48%, SO_4~(2-) = 70.83%, Hg = 98.36%, Pb = 97.50%,, V = 98.43%, Cr = 99.86%, Mn = 97.96%, Fe = 100.00%, Co = 99.96%, Ni = 99.78%, Cu = 99.99% and Zn = 99.94%,. Because the concentrations of heavy metals in the electrochemically treated AMD (ranging from 0.001 to 0.336 mg/L) are very low, the negative impact of this effluent on the aquatic life and humans is not expected. The sludge generated during the treatment of AMD is suitable for reuse for at least two purposes (pretreatment of AMD and covering of the flotation waste heap). From the presented results, it could be concluded that electrochemical treatment is a suitable approach for the treatment of AMD.
机译:这项工作的目的是开发和应用适合于处理“ Robule”湖中累积的酸性矿山排水系统(AMD)的净化系统,该系统代表塞尔维亚Bor铜矿开采和嗅觉联合体的一部分。进行这项研究是为了最大程度地减少未经处理的AMD排放对环境造成的不利影响,其特征在于低pH值(2.63)和高浓度的重金属(最高610 mg / L)和硫酸盐(最高12,000 mg / L)。废水的处理包括使用CaO进行预处理/ pH调节,然后使用铁和铝电极组进行电凝。经过最终处理后,重金属浓度的降低范围为40至61000倍,具体取决于金属及其初始浓度。在预处理步骤中完全去除了参数,颜色和浊度,而其他考虑参数的去除效率如下:EC = 55.48%,SO_4〜(2-)= 70.83%,Hg = 98.36%,Pb = 97.50% ,V = 98.43%,Cr = 99.86%,Mn = 97.96%,Fe = 100.00%,Co = 99.96%,Ni = 99.78%,Cu = 99.99%和Zn = 99.94%。由于经电化学处理的AMD中的重金属浓度非常低(0.001至0.336 mg / L),因此,预计该废水不会对水生生物和人类造成负面影响。在AMD的处理过程中产生的污泥适合用于至少两个目的的再利用(AMD的预处理和浮选废料堆的覆盖)。从给出的结果可以得出结论,电化学处理是一种适合的AMD治疗方法。

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