首页> 外文期刊>Transactions of The Institution of Chemical Engineers. Process Safety and Environmental Protection, Part B >Evaluation and disposability study of actual textile wastewater treatment by electro-oxidation method using Ti/RuO2 anode
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Evaluation and disposability study of actual textile wastewater treatment by electro-oxidation method using Ti/RuO2 anode

机译:用Ti / Ruo2阳极通过电氧化方法对实际纺织废水处理的评价与可处理性研究

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摘要

Electro-oxidation (EO) treatment performance for actual textile wastewater using RuO2 coated Ti electrode (Ti/RuO2) was studied, and effects of EO process parameters like pH, current (i) and electrolysis time (t) on percentage chemical oxygen demand removal (S-1), percentage color removal (S-2) and energy consumed (S-3) were investigated. Box Behnken Design was used for experimental design and data analysis. Furthermore, pollutants oxidation method involved, direct and/or indirect oxidation, was also investigated. Safe disposability of treated wastewater was examined through spectrophotometric and GC-MS analysis by identifying eliminated organic compounds and transformation products in treated effluent. Moreover, operating cost (electrode and electricity cost) analysis was also performed to evaluate the economic feasibility of the process. At the optimum condition, the actual values of Si, S-2. and S-3 were found to be 80.0%, 97.25% and 0.679 Wh, respectively. Kinetic study showed faster COD removal than color, revealing rate constant and R-2 values for Si and S-2 to be 0.025 min(-1) and 0.015 min(-1); 0.988 and 0.986, respectively. GC-MS analysis of the EO treated wastewater revealed that most of the organics were completely eliminated during EO process. The presence of chlorinated organic compounds and other transformation products with the already present compounds in untreated textile wastewater was also detected. (C) 2017 Institution of Chemical Engineers. Published by Elsevier B.V. All rights reserved.
机译:研究了使用Ruo2涂覆的Ti电极(Ti / Ruo2)的实际纺织废水的电氧化(EO)处理性能,以及EO工艺参数等pH值,电流(I)和电解时间(T)的效果百分比化学氧需求去除(S-1),研究了百分比清除(S-2)和消耗的能量(S-3)。 Box Behnken设计用于实验设计和数据分析。此外,还研究了涉及的氧化剂氧化方法,直接和/或间接氧化。通过在处理过的流出物中鉴定消除的有机化合物和转化产物,通过分光光度法和GC-MS分析检查处理废水的安全可处理性。此外,还进行了运营成本(电极和电力成本)分析来评估该过程的经济可行性。在最佳条件下,Si,S-2的实际值。发现S-3分别为80.0%,97.25%和0.679WH。动力学研究表明,鳕鱼比颜色更快,显示率常数和Si和S-2的R-2值为0.025 min(-1)和0.015分钟(-1); 0.988和0.986分别。 EO处理废水的GC-MS分析显示,在EO过程中,大多数有机物被完全消除。还检测了氯化有机化合物和其他转化产物的存在,其中存在于未处理的纺织废水中的已经存在的化合物。 (c)2017年化学工程师机构。 elsevier b.v出版。保留所有权利。

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