Adsorption of Heavy Metals: Mechanisms, Kinetics, and Applications of Various Adsorbents in Wastewater Remediation—A Review
Адсорбция тяжелых металлов: механизмы, кинетика и применение различных адсорбентов для очистки сточных вод — обзор
2023-09-06
SCID: 54.1/jnr45xgx
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Activated carbonAdsorption kineticsHeavy metal adsorptionNanomaterialsWastewater remediation
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Abstract (AI)
Heavy metal contamination in wastewater is a significant concern for human health and the environment, prompting increased efforts to develop efficient and sustainable removal methods. Despite significant efforts in the last few decades, further research initiatives remain vital to comprehensively address the long-term performance and practical scalability of various adsorption methods and adsorbents for heavy metal remediation. This article aims to provide an overview of the mechanisms, kinetics, and applications of diverse adsorbents in remediating heavy metal-contaminated effluents. Physical and chemical processes, including ion exchange, complexation, electrostatic attraction, and surface precipitation, play essential roles in heavy metal adsorption. The kinetics of adsorption, influenced by factors such as contact time, temperature, and concentration, directly impact the rate and effectiveness of metal removal. This review presents an exhaustive analysis of the various adsorbents, categorized as activated carbon, biological adsorbents, agricultural waste-based materials, and nanomaterials, which possess distinct advantages and disadvantages that are linked to their surface area, porosity, surface chemistry, and metal ion concentration. To overcome challenges posed by heavy metal contamination, additional research is necessary to optimize adsorbent performance, explore novel materials, and devise cost-effective and sustainable solutions. This comprehensive overview of adsorption mechanisms, kinetics, and diverse adsorbents lays the foundation for further research and innovation in designing optimized adsorption systems and discovering new materials for sustainable heavy metal remediation in wastewater.
Key Findings
1
Activated carbon, biological adsorbents, agricultural wastes, and nanomaterials offer distinct advantages and disadvantages determined by surface area, porosity, surface chemistry, and metal concentration.
2
Adsorption kinetics and removal effectiveness are directly influenced by contact time, temperature, and contaminant concentration.
3
Further research should optimize adsorbent performance, develop novel materials, and establish cost-effective, sustainable systems for heavy-metal remediation.
4
Heavy-metal adsorption in wastewater operates through ion exchange, complexation, electrostatic attraction, and surface precipitation.
5
The review identifies long-term performance and practical scalability as unresolved challenges for existing adsorption methods and materials.
Research Object
Adsorption-based removal of heavy metals from wastewater using various adsorbents (activated carbon, biological adsorbents, agricultural-waste materials, and nanomaterials)
Research Subject
Adsorption mechanisms, kinetics, applications, and performance factors governing heavy metal removal and remediation effectiveness
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2023-09-06
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