4.7 Article

Physico-chemical and biological treatment strategies for converting municipal wastewater and its residue to resources

期刊

CHEMOSPHERE
卷 282, 期 -, 页码 -

出版社

PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.chemosphere.2021.130881

关键词

Wastewater; Resource recovery; Economic benefits; Treatment technologies; Membrane separation

资金

  1. SERB-DST, Government of India [EEQ/2016/000802]
  2. ERASMUS + International Masters of Science in Environmental Technology and Engineering programme

向作者/读者索取更多资源

The increase in urbanization and industrialization has led to a surge in wastewater generation. Conventional treatment methods are costly to operate and maintain, requiring novel technologies. Despite various treatment options, the lack of planning and selecting appropriate designs has limited practical applications.
An increase in urbanization and industrialization has not only contributed to an improvement in the lifestyle of people, but it has also contributed to a surge in the generation of wastewater. To date, conventional physicochemical and biological treatment methods are widely used for the treatment of wastewater. However, the efficient operation of these systems require substantial operation and maintenance costs, and the application of novel technologies for the treatment and disposal of sludge/residues. This review paper focuses on the application of different treatment options such as chemical, catalyst-based, thermochemical and biological processes for wastewater or sludge treatment and membrane-based technologies (i.e. pressure-driven and non-pressure driven) for the separation of the recovered products from wastewater and its residues. As evident from the literature, a wide variety of treatment and resource recovery options are possible, both from wastewater and its residues; however, the lack of planning and selecting the most appropriate design (treatment train) to scale up from pilot to the field scale has limited its practical application. The economic feasibility of the selected technologies was critically analyzed and the future research prospects of resource recovery from wastewater have been outlined in this review.

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