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Treatment of a Textile Dye Wastewater by an Electrochemical Process

机译:电化学法处理纺织染料废水

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摘要

This study explored the effectiveness of an electrochemical process to treat a sulfur dye wastewater from a textile industry. The treatment system included a 4.0 L reactor equipped with five steel electrode plates, and a separate sedimentation tank of equal liquid volume. The experimental part involved two distinct, sequential stages. In the first stage, the effect of initial pH and electrical charge (i.e., current times reaction time) on the treatment process was explored. Experiments were conducted in a factorial mode, involving three initial pH values (3, 4 and 5), and six electrical charges (ranging from 150 to 1,350 coulomb), respectively. Results indicated that chemical oxygen demand (COD), total suspended solids (TSS), and color removal efficiency improved with a decrease in initial pH and an increase in electrical charge. Overall, high percent removal values were observed ranging from 63% to 80% for COD, 81% to 96% for TSS, and 93% to 99% for color. During the second stage, the electrode corrosion pattern was investigated for a period of 45 days. Under stable operating conditions, electrode consumption was found to conform to Faraday's law. Moreover, process performance regarding COD, TSS, and color reduction was comparable to that obtained in the first stage of the study.
机译:这项研究探索了电化学方法处理纺织工业中的硫化染料废水的有效性。该处理系统包括一个4.0 L反应器,该反应器配备有五个钢板电极板,以及一个单独的等体积液体的沉淀池。实验部分涉及两个不同的连续阶段。在第一阶段中,研究了初始pH和电荷(即电流乘以反应时间)对处理过程的影响。实验以阶乘模式进行,分别涉及三个初始pH值(3、4和5)和六个电荷(范围从150到1,350库仑)。结果表明,化学需氧量(COD),总悬浮固体(TSS)和脱色效率随着初始pH值的降低和电荷的增加而提高。总体而言,观察到较高的百分比去除值,COD范围从63%到80%,TSS范围从81%到96%,颜色范围从93%到99%。在第二阶段中,对电极腐蚀模式进行了45天的研究。在稳定的工作条件下,发现电极消耗符合法拉第定律。此外,有关COD,TSS和减色的工艺性能可与研究第一阶段获得的性能相媲美。

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