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Adsorption Technology for Water and Wastewater Treatments

Adsorption Technology for Water and Wastewater Treatments

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The presence of pollutants (i.e., emerging contaminants, radionuclides, potential toxic metals, dyes, etc.) in water has a negative impact on the environment and presents a potential health risk for inhabitants. Among the existing technologies (i.e., advanced oxidation process, membrane filtration, biodegradation, etc.) that are used to remove them from water, adsorption has garnered significant interest due to its low cost and fast removal. The development of advanced materials and their application for water treatments have recently caught the attention of researchers.This reprint aimed to establish updated information on adsorption technology for water and wastewater treatments. The submissions selected for this SI focus on (1) applying reality technology for water and wastewater treatments and (2) exploring detailed adsorption mechanisms using current data (i.e., comparing changes in the properties of adsorbents before and after adsorption using appropriate techniques).

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Keywords

  • activated carbon
  • adsorption
  • adsorption kinetics
  • adsorption mechanism
  • algae
  • antimony
  • artificial intelligence
  • bioremediation
  • capacitive deionization
  • captopril
  • carbon nanomaterials
  • catalysts regeneration
  • Chemistry
  • Chromium
  • clays
  • coagulation sludge
  • conducting polymers
  • Cr (VI) management
  • different clays
  • dyes
  • emerging pollutant
  • factorial design
  • fluorine removal
  • Gray Wolf Optimizer
  • Heavy metals
  • hydrophytes
  • hydroxy-iron
  • isotherm
  • K-nearest neighbor
  • kinetics
  • linear method
  • Machine learning
  • magnetic Fe-C-N composite
  • Magnetite
  • Mathematics & science
  • Mechanism
  • mesoporous carbon
  • mineral pollutant
  • modeling
  • modelling
  • nanocomposites
  • nitrogen doping
  • nonlinear method
  • olive mills wastewater
  • pharmaceuticals
  • phenol
  • phenol adsorption
  • physics-statistics modeling
  • pseudo-second-order model
  • pyrolyzation
  • Reduction
  • Reference, information & interdisciplinary subjects
  • Research & information: general
  • sepiolite
  • Statistical physics
  • sugarcane bagasse
  • wastewater
  • wastewater treatment
  • water treatment
  • Zinc oxide
  • Zr-doped G-C3N4

Links

DOI: 10.3390/books978-3-0365-8584-0

Editions

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