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International Journal of Chemical Engineering and Processing Cover

International Journal of Chemical Engineering and Processing

E-ISSN: 2455-5576 | Peer-Reviewed Journal (Refereed Journal) | Hybrid Open Access

About the Journal

International Journal of Chemical Engineering and Processing

International Journal of Chemical Engineering and Processing [2455-5576(e)] is a peer-reviewed open-access journal of engineering and scientific journals launched in 2015 focused on the rapid publication of fundamental research papers in all areas concerning chemical engineering and processing, which are covered under the domain of Chemical Engineering. 

Focus & Scope

The journal welcomes contributions across the following topic areas:

  • Chemical Reaction Engineering: reactor optimization and design, homogeneous and heterogeneous catalytic reactions, feed composition and operating condition effects, reactive separations and reactive distillation, interaction of flow phenomena with reaction kinetics, and reactor performance modeling
  • Separation Processes & Mass Transfer: membrane separation technologies, gas separation and amine-based systems, facilitated transport mechanisms, adsorption and ion-exchange processes, crystallization and phase separation, and multiphase separation systems
  • Heat Transfer & Thermal Operations: heat exchanger design and optimization, thermal processing and thermodynamic analysis, energy efficiency in industrial operations, heat integration and process intensification, and cryogenic separation processes
  • Fluid Mechanics & Fluidization: granular flow mechanics and particle transport, fluidized bed reactor design and operation, multiphase flow characterization, computational fluid dynamics modeling, and dust disengagement and filtration technologies
  • Thermodynamics & Kinetics: chemical equilibrium and thermodynamic parameters, adsorption isotherms and biosorption kinetics, rate law development and reaction kinetics, electrocatalytic processes (oxygen reduction, hydrogen evolution), and thermal decomposition analysis
  • Polymer Science & Engineering: polymerization methods and process control, conductive and electroactive polymers, biomedical polymers and drug delivery systems, polymer gels and hydrogels, tissue engineering polymers, and polymer nanocomposites
  • Process Intensification & Miniaturization: equipment miniaturization and microreactor technology, cavitation reactors and advanced reactor designs, intensified plant operations, mixing and contact optimization, and smart sensor integration for process control
  • Biochemical Engineering & Biotechnology: microbial cell disruption and fermentation, biodiesel and biofuel production, enzyme engineering and bioconversions, wastewater treatment and water disinfection, microalgae cultivation, and bioprocess optimization
  • Alternative Energy & Sustainability: renewable energy conversion and storage, COâ‚‚ conversion and utilization, electrocatalysis for sustainable chemicals, battery management systems for energy storage, and waste valorization and circular economy approaches
  • Colloidal & Interfacial Phenomena: colloid stability and dispersion science, interfacial tension and surface chemistry, particle characterization and soft matter systems, hydrogel design and colloidal nanostructures, and surface modification techniques
  • Advanced Analytical & Computational Methods: spectroscopic analysis (FTIR, NMR, gas chromatography-mass spectrometry), particle characterization and texture analysis, X-ray diffraction and structural analysis, density functional theory (DFT) calculations, molecular dynamics simulations, and Monte Carlo modeling
  • Process Control & Automation: process monitoring and performance measurement, computer-based control systems and automation, data-driven modeling and machine learning approaches, digital twin technology, and Industry 4.0 integration

Keywords

chemical reaction engineering, process intensification, separation processes, reactor design, polymer processing, thermodynamics, heat transfer, biotechnology, DFT modeling, process optimization

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