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光助电化学氧化与顺序生物降解集成法处理纺织废水。

Integrated approach of photo-assisted electrochemical oxidation and sequential biodegradation of textile effluent.

机构信息

Environmental Molecular Microbiology Research Laboratory, Department of Biotechnology, Thiruvalluvar University, Serkkadu, Vellore, Tamil Nadu, 632115, India.

Rhizosphere Biology Laboratory, Department of Microbiology, Bharathidasan University, Tiruchirappalli, 620 024, Tamil Nadu, India.

出版信息

Environ Pollut. 2022 Aug 15;307:119412. doi: 10.1016/j.envpol.2022.119412. Epub 2022 May 11.

Abstract

Synthetic azo dyes are extensively used in the textile industries, which are being released as textile effluent into the environment presence of azo dyes in the environment is great environmental concern therefore treatment of textile effluent is crucial for proper release of the effluent into the environment. Electrochemical oxidation (EO) is extensively used in the degradation of pollutants because of its high efficiency. In this study, photo-assisted electrooxidation (PEO) followed by biodegradation of the textile effluent was evaluated. The pretreatment of textile effluent was conducted by EO and PEO in a tubular flow cell with TiO-Ti/IrO-RuO anode and titanium cathode under different current densities (10, 15, and 20 mA cm). The chemical oxygen demand level reduced from 3150 mg L to 1300 and 600 mg Lunder EO and PEO, respectively. Furthermore, biodegradation of EO and PEO pretreated textile effluent shows reduction in chemical oxygen demand (COD) from 1300 mg L to 900 mg Land 600 mg Lto 110 mg L, respectively. The most abundant genera were identified as Acetobacter, Achromobacter, Acidaminococcus, Actinomyces, and Acetomicrobium from the textile effluent. This study suggests that an integrated approach of PEO and subsequent biodegradation might be an effective and eco-friendly method for the degradation of textile effluent.

摘要

合成偶氮染料广泛应用于纺织工业,这些染料会作为纺织废水排放到环境中。偶氮染料在环境中的存在是一个重大的环境问题,因此处理纺织废水对于将废水适当排放到环境中至关重要。电化学氧化(EO)因其高效性而广泛应用于污染物的降解中。在这项研究中,评估了光辅助电氧化(PEO)随后对纺织废水的生物降解。在管式流动池中,通过 EO 和 PEO 在不同电流密度(10、15 和 20 mA cm)下用 TiO-Ti/IrO-RuO 阳极和钛阴极对纺织废水进行预处理。化学需氧量(COD)水平分别从 3150 mg L 降低到 1300 和 600 mg L。此外,EO 和 PEO 预处理后的纺织废水的生物降解使 COD 从 1300 mg L 降低到 900 mg L 和 600 mg L 降低到 110 mg L。从纺织废水中鉴定出最丰富的属为醋杆菌属、无色杆菌属、氨基酸球菌属、放线菌属和醋酸微菌属。这项研究表明,PEO 与随后的生物降解相结合可能是一种有效且环保的方法,可用于降解纺织废水。

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