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实际纺织废水化学需氧量的电化学氧化:动力学研究与能耗

Electrochemical oxidation of COD from real textile wastewaters: Kinetic study and energy consumption.

作者信息

Zou Jiaxiu, Peng Xiaolan, Li Miao, Xiong Ying, Wang Bing, Dong Faqin, Wang Bin

机构信息

State Key Laboratory Cultivation Base for Non-metal Composites and Functional Materials, Southwest University of Science & Technology, Mianyang 621010, PR China.

School of Materials Science & Engineering, Southwest University of Science & Technology, Mianyang 621010, PR China.

出版信息

Chemosphere. 2017 Mar;171:332-338. doi: 10.1016/j.chemosphere.2016.12.065. Epub 2016 Dec 19.

Abstract

In the present study, the electrochemical oxidation of real wastewaters discharged by textile industry was carried out using a boron-doped diamond (BDD) anode. The effect of operational variables, such as applied current density (20-100 mA·cm), NaCl concentration added to the real wastewaters (0-3 g·L), and pH value (2.0-10.0), on the kinetics of COD oxidation and on the energy consumption was carefully investigated. The obtained experimental results could be well matched with a proposed kinetic model, in which the indirect oxidation mediated by electrogenerated strong oxidants would be described through a pseudo-first-order kinetic constant k. Values of k exhibited a linear increase with increasing applied current density and decreasing pH value, and an exponential increase with NaCl concentration. Furthermore, high oxidation kinetics resulted in low specific energy consumption, but this conclusion was not suitable to the results obtained under different applied current density. Under the optimum operational conditions, it only took 3 h to complete remove the COD in the real textile wastewaters and the specific energy consumption could be as low as 11.12 kWh·kg COD. The obtained results, low energy consumption and short electrolysis time, allowed to conclude that the electrochemical oxidation based on BDD anodes would have practical industrial application for the treatment of real textile wastewater.

摘要

在本研究中,采用掺硼金刚石(BDD)阳极对纺织工业排放的实际废水进行了电化学氧化。仔细研究了操作变量,如施加的电流密度(20 - 100 mA·cm)、添加到实际废水中的NaCl浓度(0 - 3 g·L)以及pH值(2.0 - 10.0)对COD氧化动力学和能量消耗的影响。获得的实验结果与所提出的动力学模型能很好地匹配,其中由电生成的强氧化剂介导的间接氧化将通过伪一级动力学常数k来描述。k值随施加电流密度的增加和pH值的降低呈线性增加,随NaCl浓度呈指数增加。此外,高氧化动力学导致低比能量消耗,但该结论不适用于在不同施加电流密度下获得的结果。在最佳操作条件下,只需3小时就能完全去除实际纺织废水中的COD,且比能量消耗可低至11.12 kWh·kg COD。所获得的低能量消耗和短电解时间的结果表明,基于BDD阳极的电化学氧化在实际纺织废水处理方面具有实际工业应用前景。

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