4.6 Review

A Review on Promising Membrane Technology Approaches for Heavy Metal Removal from Water and Wastewater to Solve Water Crisis

Journal

WATER
Volume 13, Issue 22, Pages -

Publisher

MDPI
DOI: 10.3390/w13223241

Keywords

water treatment; heavy metal removal; membrane; composite; matrix

Funding

  1. Qassim University

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The world is searching for solutions to alleviate water scarcity, with wastewater emerging as a reliable source. Conventional wastewater treatment techniques have been successful, but improvements are needed to meet the demands of industrial, agricultural, and household operations. Various methods for removing heavy metal ions have been described, with membrane technology emerging as a popular alternative.
Due to the impacts of water scarcity, the world is looking at all possible solutions for decreasing the over-exploitation of finite freshwater resources. Wastewater is one of the most reliable and accessible water supplies. As the population expands, so do industrial, agricultural, and household operations in order to meet man's enormous demands. These operations generate huge amounts of wastewater, which may be recovered and used for a variety of reasons. Conventional wastewater treatment techniques have had some success in treating effluents for discharge throughout the years. However, advances in wastewater treatment techniques are required to make treated wastewater suitable for industrial, agricultural, and household use. Diverse techniques for removing heavy metal ions from various water and wastewater sources have been described. These treatments can be categorized as adsorption, membrane, chemical, or electric. Membrane technology has been developed as a popular alternative for recovering and reusing water from various water and wastewater sources. This study integrates useful membrane technology techniques for water and wastewater treatment containing heavy metals, with the objective of establishing a low-cost, high-efficiency method as well as ideal production conditions: low-cost, high-efficiency selective membranes, and maximum flexibility and selectivity. Future studies should concentrate on eco-friendly, cost-effective, and long-term materials and procedures.

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