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首页> 外文期刊>Developments in chemical engineering and mineral processing >Direct Treatment of an Acidic and High-Strength Nitrate-Polluted Wastewater Containing Heavy Metals by Using a Bio-electrochemical Reactor
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Direct Treatment of an Acidic and High-Strength Nitrate-Polluted Wastewater Containing Heavy Metals by Using a Bio-electrochemical Reactor

机译:利用生物电化学反应器直接处理酸性高强度硝酸盐重金属废水

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The fundamental performance of a bio-electrochemical reactor for treatment of metal pickling wastewater was investigated experimentally. A carbon anode and cathode were installed in the reactor. On the cathode, denitrifying microorganisms were immobilized. Continuous experiments were carried out by feeding a synthetic wastewater containing nitrate and binary heavy metal ions (copper and lead) at different loads and current densities. Acetate was added at 1.0 of C/N mass ratio which was less than the stoichiometric amount for the overall denitrification reaction. Experimental results indicated that the dissolved copper and lead removal, denitrification, and neutralization, could be achieved simultaneously in a single bio-electrochemical reactor. Dissolved heavy metals were removed by electrochemical deposition on the cathode and by other phenomena such as the formation of insoluble suspensions and sorption on suspended bacterial sludge. Denitrification proceeded effectively with the utilization of both the added acetate and the hydrogen gas generated by electrolysis of water. The pH value increased close to neutral value due to the occurrence of denitrification, although the influent pH was less than 3. The removal efficiencies of heavy metals and nitrate increased with an increase in the current density. The denitrification rate decreased with increasing lead loading. The electric current was indispensable for sustaining stable treatment in the reactor.
机译:实验研究了生物电化学反应器处理金属酸洗废水的基本性能。将碳阳极和阴极安装在反应器中。在阴极上,固定有反硝化微生物。通过以不同的负荷和电流密度进料含有硝酸盐和二元重金属离子(铜和铅)的合成废水,进行了连续实验。以1.0的C / N质量比加入乙酸酯,该C / N质量比小于整个反硝化反应的化学计量。实验结果表明,在单个生物电化学反应器中可以同时实现溶解的铜和铅的去除,反硝化和中和。溶解的重金属通过在阴极上的电化学沉积以及其他现象(例如不溶性悬浮液的形成和悬浮细菌污泥的吸附)被去除。利用添加的乙酸盐和水电解产生的氢气,反硝化有效地进行。尽管进水pH值小于3,但由于发生反硝化作用,pH值增加到接近中性值。重金属和硝酸盐的去除效率随电流密度的增加而增加。脱氮率随铅含量的增加而降低。电流对于在反应器中维持稳定的处理是必不可少的。

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