Review on the impact of heavy metals from industrial wastewater effluent and removal technologies
Обзор воздействия тяжелых металлов, содержащихся в промышленных сточных водах, и технологий их удаления
2024-11-14
SCID: 54.1/9n4rwdbk
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heavy metalsindustrial wastewaternanotechnologyphotocatalysiswastewater treatment technologies
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Abstract (AI)
The incidence of water pollution in developing countries is high due to the lack of regulatory policies and laws that protect water bodies from anthropogenic activities and industrial wastewater. Industrial wastewater contains significant amounts of heavy metals that are detrimental to human health, aquatic organisms, and the ecosystem. The focus of this review was to evaluate the sources and treatment methods of wastewater, with an emphasis on technologies, advantages, disadvantages, and innovation. It was observed that conventional methods of wastewater treatment (such as flotation, coagulation/flocculation, and adsorption) had shown promising results but posed certain limitations, such as the generation of high volumes of sludge, relatively low removal rates, inefficiency in treating low metal concentrations, and sensitivity to varying pH. Recent technologies like nanotechnology, photocatalysis, and electrochemical coagulation have significant advantages over conventional methods for removing heavy metals, including higher removal rates, improved energy efficiency, and greater selectivity for specific contaminants. However, the high costs associated with these advanced methods remain a major drawback. Therefore, we recommend that future developments in wastewater treatment technology focus on reducing both costs and waste generation.
Key Findings
1
Advanced treatment technologies remain constrained by high costs; future development should reduce both economic expense and waste generation.
2
Conventional methods are also limited by relatively low removal rates and sensitivity to changes in pH.
3
Conventional treatments such as flotation, coagulation/flocculation, and adsorption can remove heavy metals but generate substantial sludge and may perform poorly at low concentrations.
4
Industrial wastewater in developing countries is a major source of heavy-metal pollution, threatening human health, aquatic organisms, and ecosystems.
5
Nanotechnology, photocatalysis, and electrochemical coagulation generally provide higher removal rates, better energy efficiency, and greater contaminant selectivity than conventional approaches.
Research Object
heavy metals in industrial wastewater effluent and the wastewater treatment systems used to remove them
Research Subject
the sources, removal performance, advantages, limitations, costs, energy efficiency, selectivity, and waste generation of conventional and advanced heavy-metal removal technologies
Publication Details
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2024-11-14
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