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Influence of anode material on electrochemical oxidation for the treatment of tannery wastewater

机译:阳极材料对制革废水废水电化学氧化的影响

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The treatment of tannery wastewater by electrochemical oxidation, mediated by an electro-generated species was carried out under galvanostatic conditions in an electrochemical reactor equipped with anodes based on noble metals and metal oxides (Ti/Pt-Ir, Ti/PbO_2, Ti/PdO-Co_3O_4 and Ti/RhO_x-TiO_2). The decrease in time of chemical oxygen demand, nitrogen (TKN and ammonia), Cr and sulphides was monitored. The study showed that the rate of pollutant removal was significantly influenced by the type of anode material and electrochemical parameters. Different mechanisms contributed to the removal of pollutants when the reactor operated under conditions close to the limiting current for chlorine evolution and under much higher current density, with the reactor performing better at a high current/voltage. The kinetic pseudo-first order model applied for the interpretation of the results showed that the Ti/Pt-Ir and Ti/PdO-Co_3O_4 anodes performed better than the other two electrodes under the majority of tested conditions, with the highest rate of removal obtained for ammonia (kinetic rate constant k = 0.75 min~(-1)). Electrochemical oxidation can be applied as a post-treatment after the conventional biological process in order to remove the residual ammonia with low energy consumption (0.4kWhm~(-3)).
机译:在配备有基于贵金属和金属氧化物(Ti / Pt-Ir,Ti / PbO_2,Ti / PdO的阳极)的电化学反应器中,在恒电流条件下,通过电生物质介导的电化学氧化处理制革废水。 -Co_3O_4和Ti / RhO_x-TiO_2)。监测了化学需氧量,氮(TKN和氨),Cr和硫化物的减少时间。研究表明,污染物的去除速度受阳极材料类型和电化学参数的影响很大。当反应器在接近氯放出的极限电流的条件下和在高得多的电流密度下运行时,不同的机理有助于去除污染物,其中反应器在高电流/电压下表现更好。用于解释结果的动力学拟一阶模型表明,在大多数测试条件下,Ti / Pt-Ir和Ti / PdO-Co_3O_4阳极的性能优于其他两个电极,且去除率最高对于氨(运动速率常数k = 0.75 min〜(-1))。电化学氧化可作为常规生物工艺后的后处理,以低能耗(0.4kWhm〜(-3))去除残留的氨。

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