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Ozonation treatment processes for the remediation of detergent wastewater: A comprehensive review
Journal of Environmental Chemical Engineering ( IF 7.4 ) Pub Date : 2021-07-21 , DOI: 10.1016/j.jece.2021.106099
Collin G. Joseph 1, 2, 3 , Yan Yan Farm 4 , Yun Hin Taufiq-Yap 3, 5 , Chuan Kian Pang 1, 3 , Janice L.H. Nga 6 , Gianluca Li Puma 7
Affiliation  

Laundry detergent wastewater is a potential renewable resource that can be recycled and reused in order to mitigate water scarcity. The treatment of laundry detergent wastewater is very challenging because of its multicomponent composition, large discharge volumes to the environment resulting from increasing usage of detergent as the global population grows, and ineffectiveness of conventional treatment technologies. Ozonation as one of the most effective advanced oxidation processes (AOPs) has shown tremendous potential in the treatment and reclamation of laundry detergent wastewater. Complete mineralization of the water contaminants by molecular ozone is not economical due to the high ozone generation cost and other limitations such as pH dependence, short lifetime of ozone, low ozone solubility in aqueous solution and mass transfer limitations. Strategies such as modification of ozonation processes including combination with hydrogen peroxide (peroxone process) and catalytic ozonation have received much attention. The effectiveness of the ozonation process can be further enhanced by photocatalytic ozonation resulting in higher rate of pollutants mineralization. This paper reviews the recent studies on ozonation treatment of surfactant containing laundry wastewater generated from various sources including domestic, industrial, commercial or public premises. Lastly, important remarks on the ozonation treatment of laundry detergent wastewater and suggestions for future works are presented.



中文翻译:

用于修复洗涤剂废水的臭氧处理工艺:综合综述

洗衣洗涤剂废水是一种潜在的可再生资源,可以回收和再利用以缓解水资源短缺。洗衣液废水的处理非常具有挑战性,因为它具有多组分成分,随着全球人口的增长,洗涤剂的使用量增加导致向环境排放大量,以及传统处理技术的无效性。臭氧化作为最有效的高级氧化工艺 (AOP) 之一,在洗衣洗涤剂废水的处理和回收方面显示出巨大的潜力。由于臭氧生成成本高和其他限制,例如 pH 依赖性、臭氧寿命短、臭氧在水溶液中的低溶解度和传质限制,通过分子臭氧完全矿化水污染物是不经济的。诸如与过氧化氢结合(过氧酮工艺)和催化臭氧化等臭氧化工艺的改进策略受到了很多关注。光催化臭氧化可以进一步提高臭氧化过程的有效性,从而提高污染物矿化率。本文回顾了最近关于臭氧化处理从各种来源(包括家庭、工业、商业或公共场所)产生的含有表面活性剂的洗衣废水的研究。最后,提出了对洗衣液废水臭氧化处理的重要评论和对未来工作的建议。光催化臭氧化可以进一步提高臭氧化过程的有效性,从而提高污染物矿化率。本文回顾了最近关于臭氧化处理从各种来源(包括家庭、工业、商业或公共场所)产生的含有表面活性剂的洗衣废水的研究。最后,提出了对洗衣液废水臭氧化处理的重要评论和对未来工作的建议。光催化臭氧化可以进一步提高臭氧化过程的有效性,从而提高污染物矿化率。本文回顾了最近关于臭氧化处理从各种来源(包括家庭、工业、商业或公共场所)产生的含有表面活性剂的洗衣废水的研究。最后,提出了对洗衣液废水臭氧化处理的重要评论和对未来工作的建议。

更新日期:2021-08-13
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