Suppr超能文献

采用电化学高级氧化与生物处理相结合的方法处理混合工业废水。

Mixed industrial wastewater treatment by combined electrochemical advanced oxidation and biological processes.

机构信息

CSIR, National Environmental Engineering Research Institute, Nagpur, Maharashtra, India; Department of Civil Engineering, School of Technology, Pandit Deendayal Petroleum University, Gandhinagar, Gujarat, India.

CSIR, National Environmental Engineering Research Institute, Nagpur, Maharashtra, India.

出版信息

Chemosphere. 2019 Dec;237:124419. doi: 10.1016/j.chemosphere.2019.124419. Epub 2019 Jul 20.

Abstract

Nowadays, because the quality and quantity of mixed industrial wastewater keep fluctuating in recent times, the treatment of mixed industrial wastewater has gained more attention. The main target of this study is to degrade the wastewater through a combination of electrochemical advanced oxidation processes (EAOPs) and biological treatment. To enhance the biodegradability of the wastewater, Electro-Fenton process, along with external persulphate addition, was applied before the biological treatment. The effect of voltage, catalyst concentration and persulphate dosage was studied. The optimized conditions selected for the experiments were pH-3, effective area-25 cm, electrode spacing-1 cm while voltage-10 V, persulphate dosage-200 mg L, and catalyst dosage-10 mg L were optimized during the experiments leading towards 60% of COD removal efficiency in course of 1 h of electrolysis. Addition of tert-butyl alcohol and ethanol revealed the existence of sulphate and hydroxyl radicals as the major oxidants that help in pollutant degradation by combining EAOPs and biological treatment. Overall 94% COD removal efficiency was achieved. Therefore, for the organic pollutant degradation, combined process serves to be an efficient and effective treatment option.

摘要

如今,由于混合工业废水的质量和数量在最近一段时间内不断波动,混合工业废水的处理受到了更多的关注。本研究的主要目标是通过电化学高级氧化工艺(EAOPs)和生物处理的组合来降解废水。为了提高废水的可生物降解性,在生物处理之前应用了电芬顿工艺和外加过硫酸盐。研究了电压、催化剂浓度和过硫酸盐用量的影响。实验中选择的优化条件为 pH-3、有效面积-25 cm、电极间距-1 cm,而电压-10 V、过硫酸盐用量-200 mg/L、催化剂用量-10 mg/L,在 1 小时的电解过程中,COD 去除率达到 60%。添加叔丁醇和乙醇表明,硫酸盐和羟基自由基是主要的氧化剂,它们通过结合 EAOPs 和生物处理来帮助污染物降解。总的 COD 去除效率达到 94%。因此,对于有机污染物的降解,联合工艺是一种有效和有效的处理方法。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验