4.7 Article

Application of adsorption process for effective removal of emerging contaminants from water and wastewater

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ENVIRONMENTAL POLLUTION
卷 280, 期 -, 页码 -

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ELSEVIER SCI LTD
DOI: 10.1016/j.envpol.2021.116995

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Emerging contaminants; Adsorption; Man-made adsorbents; Hazardous; Wastewater treatment

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Emerging pollutants in the marine ecosystem are becoming a growing concern, as traditional wastewater treatment plants are not able to completely remove these contaminants, leading to the need for cost-effective additional water treatment methods. Adsorption is a successful method for contaminant removal globally, due to its low cost, high performance, and simple design.
Emerging pollutants in the marine ecosystem, as well as their possible impact on live species, have become a rising cause of worry. A traditional wastewater treatment plants alone are not successful in eliminating such massive contaminant groups and therefore additional water treatment is required which is to be cost effective. Since standard primary and secondary treatment plants are unsuccessful at eliminating or degrading these harmful chemicals, a cost-effective tertiary treatment approach is proposed. Adsorption is a successful approach for Contaminants removal globally, because it is low installation expense, high performance and has easy operational design. Emerging pollutants have been removed from wastewaters using various adsorbents like activated carbons, improved bio chars, Nano adsorbents, hybrid adsorbents, and others. The purpose of this paper is to review the source of contaminants and the concept of adsorption when separating emerging contaminants. The present study aims to examine the adsorption mechanism as an effective approach for treating emerging contaminants. Then, the analysis of natural and man-made adsorbents for the separation of contaminants is examined along with its comparison. Also, future view on emerging contaminants and adsorbents in modern generation has been discussed. (C) 2021 Elsevier Ltd. All rights reserved.

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