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International Journal of Chemical Separation Technology Cover

International Journal of Chemical Separation Technology

E-ISSN: 2456-6691 | Peer-Reviewed Journal (Refereed Journal) | Hybrid Open Access

About the Journal

International Journal of Chemical Separation Technology

International Journal of Chemical Separation Technology [2456-6691(e)] is a peer-reviewed open-access journal of engineering and scientific journals launched in 2015 which devoted to creating an awareness of recent advancements in the field of separation technology the main focus of the journal is on the techniques of separation and instrumentation used in the separation process. It is a peer-reviewed journal that publishes original research and reviews articles both theoretical and experimental.

Focus & Scope

The journal welcomes contributions across the following topic areas:

  • Membrane Filtration Technologies: microfiltration and ultrafiltration design and operation, nanofiltration and reverse osmosis membrane development, membrane material innovation and surface modification, fouling mitigation and membrane cleaning, diafiltration and membrane-based concentration, and pressure-driven membrane processes
  • Reverse Osmosis & Forward Osmosis: interfacial polymerization for membrane synthesis, seawater and brackish water desalination, draw solution development for forward osmosis, osmotic pressure modeling, membrane chemical regeneration and maintenance, and energy-efficient desalination approaches
  • Advanced Membrane Materials: polymeric and ceramic membranes, thin-film composite membrane development, nanofiber and electrospun membranes, graphene and carbon nanotube membranes, responsive and self-cleaning membranes, and hybrid membrane systems
  • Adsorptive Separation & Ion Exchange: activated carbon and adsorbent development, ion-exchange resins and polymer exchange membranes, adsorption equilibrium and kinetics modeling, multi-component adsorption systems, regeneration of saturated adsorbents, and adsorptive reactor design
  • Membrane Bioreactors & Bioprocesses: membrane-activated sludge systems, wastewater treatment and water reuse, biomass separation and bioseparation, cell separation and particle sorting, fermentation coupled with membrane separation, and dialysis applications
  • Electroseparation Processes: electrophoresis and dielectrophoresis, electrokinetic separation, electrodialysis and electrodialysis reversal, electrochemical water treatment, electric field-assisted separation, and membrane electrochemistry
  • Distillation & Thermal Separation: vapor-liquid equilibrium and distillation theory, membrane distillation and thermally-driven separation, extractive and azeotropic distillation, heat-integrated separation processes, and cryogenic separation
  • Liquid-Liquid Extraction & Solvent Extraction: phase equilibria and distribution studies, solvent selection and optimization, reactive extraction systems, reverse micelle extraction, supported liquid membrane extraction, and supercritical fluid extraction
  • Adsorptive Separation & Chromatography: liquid chromatography and gas chromatography applications, size-exclusion and ion-exchange chromatography, chromatographic method development and optimization, purification of biomolecules and pharmaceuticals, and analytical separation techniques
  • Industrial Wastewater Treatment: oily wastewater treatment and oil-water separation, textile and chemical wastewater processing, heavy metal removal from aqueous solutions, organic pollutant separation and degradation, and drinking water purification
  • Separation Equipment Design & Optimization: heat exchanger design for separation operations, membrane module configuration and hydrodynamics, staging and column design, separation equipment scale-up and pilot-plant studies, and process intensification through equipment innovation
  • Separation Process Simulation & Modeling: thermodynamic modeling of separation systems, rate-based and equilibrium-based models, population balance modeling for particulate separation, computational fluid dynamics for separation equipment, and multiscale modeling approaches

Keywords

membrane filtration, reverse osmosis, adsorption, ion exchange, separation technology, nanofiltration, wastewater treatment, desalination, membrane bioreactor, electroseparation

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