Wastewater Treatments Based on Adsorption, Catalysis, Biodegradation, and Beyond
The ongoing technological advancements and industrial growth over the past few decades have arisen significant environmental challenges, particularly the issue of water pollution caused by the improper disposal of organic and inorganic pollutants. Protecting the environment is essential for creating...
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Format | eBook |
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Language | English |
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Basel
MDPI - Multidisciplinary Digital Publishing Institute
2024
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Online Access | Get full text |
ISBN | 3725827516 9783725827510 9783725827527 3725827524 |
DOI | 10.3390/books978-3-7258-2751-0 |
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Abstract | The ongoing technological advancements and industrial growth over the past few decades have arisen significant environmental challenges, particularly the issue of water pollution caused by the improper disposal of organic and inorganic pollutants. Protecting the environment is essential for creating a sustainable future, leading researchers and the public to focus on innovative remediation strategies. As a result, the development of new “green”-oriented, low-cost, and efficient materials for environmental remediation, especially for the removal of pollutants from water bodies, remains a vibrant area of research. The 14 original research articles and two review papers included in this Special Issue aim to explore new methods beyond sorption, biodegradation, and catalytic degradation while also introducing new materials and composites for effective (waste)water treatment and purification. |
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AbstractList | The ongoing technological advancements and industrial growth over the past few decades have arisen significant environmental challenges, particularly the issue of water pollution caused by the improper disposal of organic and inorganic pollutants. Protecting the environment is essential for creating a sustainable future, leading researchers and the public to focus on innovative remediation strategies. As a result, the development of new “green”-oriented, low-cost, and efficient materials for environmental remediation, especially for the removal of pollutants from water bodies, remains a vibrant area of research. The 14 original research articles and two review papers included in this Special Issue aim to explore new methods beyond sorption, biodegradation, and catalytic degradation while also introducing new materials and composites for effective (waste)water treatment and purification. |
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SubjectTerms | acid black-234 dye acidic wastewater activated carbon adsorption adsorption mechanism adsorption performance agricultural solid waste-based adsorbents antibiotics application to seawater bioremediation biosorbent cationic dye composite characterization copper corncob biochar Cr(VI) diclofenac dissolved organic matter dye retention electricity generation environment environmentally friendly product fiber of palm tree functionalization for enhanced performance heavy metal ions heavy metal pollution immobilization ionic liquids isotherm model kaolin Kd values kinetic model KOH/FeCl3 modified lignin M-MWCNTs Mathematics and Science Medulla tetrapanacis metal desorption and sorbent recycling methylene blue microbial cell microbial fuel cell Mn(II) removal modified biochar fibers n/a nanotubes Pb(II) removal photocatalysis Physics pollutant powdered activated carbon PSO-BP model pyridine-modified chitosan adsorbent Reference, Information and Interdisciplinary subjects remediation via adsorption Research and information: general seawater selectivity solid-supported ionic liquids sorption selectivity strontium recovery sub-picomolar range sulfamethoxazole sulfate reduction sulfate-reducing bacteria (SRB) sulfide oxidization sulfonation of composite algal/PEI sorbent Thermodynamics and heat thiosalicylate trimethoprim U-232 uptake kinetics and sorption isotherms wastewater water decontamination water treatment wood zeolite |
Title | Wastewater Treatments Based on Adsorption, Catalysis, Biodegradation, and Beyond |
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