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Current and Emerging Adsorbent Technologies for Wastewater Treatment: Trends, Limitations, and Environmental Implications

Water · 2021 · Vol. 13(2) · pp. 215–215
Fazila YounasAdnan MustafaZia Ur Rahman FarooqiXiukang WangSadia YounasWaqas Mohy-Ud-DinMuhammad Ashir HameedMuhammad AbrarAli Akbar MaitloSaima NoreenMuhammad Mahroz Hussain

Abstract

Wastewater generation and treatment is an ever-increasing concern in the current century due to increased urbanization and industrialization. To tackle the situation of increasing environmental hazards, numerous wastewater treatment approaches are used—i.e., physical, chemical, and biological (primary to tertiary treatment) methods. Various treatment techniques being used have the risks of producing secondary pollutants. The most promising technique is the use of different materials as adsorbents that have a higher efficacy in treating wastewater, with a minimal production of secondary pollutants. Biosorption is a key process that is highly efficient and cost-effective. This method majorly uses the adsorption process/mechanism for toxicant removal from wastewater. This review elaborates the major agricultural and non-agricultural materials-based sorbents that have been used with their possible mechanisms of pollutant removal. Moreover, this creates a better understanding of how the efficacy of these sorbents can be enhanced by modification or treatments with other substances. This review also explains the re-usability and mechanisms of the used adsorbents and/or their disposal in a safe and environmentally friendly way, along with highlighting the major research gaps and potential future research directions. Additionally, the cost benefit ratio of adsorbents is elucidated.

Adsorption and biosorption for pollutant removalNanomaterials for catalytic reactionsCarbon and Quantum Dots ApplicationsWastewaterSewage treatmentEnvironmentally friendlyEnvironmental sciencePollutantBiosorptionWaste managementBiochemical engineeringProcess (computing)Adsorption

Funding

  • University of Agriculture, Faisalabad
Citations
315
FWCI
17.56
field-weighted impact
References
213
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100%
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References
Nanoadsorbents for pollutants removal: A review
Journal of Molecular Liquids · 2015 · 407 citations
Sorption of Pb(II), Ni(II), Cu(II) and Cd(II) from aqueous solution by olive stone waste
Separation and Purification Technology · 2006 · 467 citations
Adsorption of metal ions on lignin
Journal of Hazardous Materials · 2007 · 757 citations
Carbon nanotubes as adsorbents in environmental pollution management: A review
Chemical Engineering Journal · 2010 · 1,071 citations
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