Skip to main content

Journals in Chemical engineering general

    • The Journal of Chemical Thermodynamics

      • ISSN: 0021-9614
      The Journal of Chemical Thermodynamics exists primarily for dissemination of significant new knowledge in experimental equilibrium thermodynamics and transport properties of chemical systems. The defining attributes of The Journal are the quality and relevance of the papers published.The Journal publishes work relating to gases, liquids, solids, polymers, mixtures, solutions and interfaces. Studies on systems with variability, such as biological or bio-based materials, gas hydrates, among others, will also be considered provided these are well characterized and reproducible where possible. Experimental methods should be described in sufficient detail to allow critical assessment of the accuracy claimed.Authors are encouraged to provide physical or chemical interpretations of the results. Articles can contain modelling sections providing representations of data or molecular insights into the properties or transformations studied. Theoretical papers on chemical thermodynamics using molecular theory or modelling are also considered.The Journal welcomes review articles in the field of chemical thermodynamics but prospective authors should first consult one of the Editors concerning the suitability of the proposed review.Contributions of a routine nature or reporting on uncharacterised materials are not accepted.We strongly encourage all authors to use Editorial Manager at the following URL when submitting papers to The Journal of Chemical Thermodynamics: https://www.editoria... Style guide Please consult the Guide for Authors for further details on the requirements for submitting your paper to The Journal of Chemical Thermodynamics. The guidelines described in this document, as well as those listed in the JCT Style Notes, should be carefully adhered to ensure high-quality and rapid publication of your manuscript.
    • Process Safety and Environmental Protection

      • ISSN: 0957-5820
      Publication of the Institution of Chemical Engineers Official Journal of the European Federation of Chemical Engineering: Part BPSEP aims to be the principal international journal for publication of high quality, original papers in the branches of engineering concerned with the safety of industrial processes and the protection of the environment.Papers that deal with new developments in safety or environmental aspects, demonstrating how research results can be used in process engineering design and practice, are particularly encouraged. Experimental or theoretical research work bringing new perspectives to established principles, highlighting unsolved problems or indicating directions for future research will also be considered. The journal is especially interested in contributions that extend the boundaries of traditional engineering as well as in multidisciplinary papers.Papers related to environmental protection must take an integrated pollution control approach, demonstrating clearly that any proposed treatment method does not simply transfer pollution from one environmental medium to another, for example, from air to water or from water to solid waste. All such papers must discuss how any treatment effluents, spent adsorbents, etc., can be treated or disposed of safely, avoiding transfer of pollution to another environmental medium.For environmental protection, papers that are outside the scope are those that lack engineering aspects, including those that:use experimental techniques primarily to prepare and/or characterise various materials without considerations of process engineering design and practice;present primarily laboratory experiments of the effects of different parameters on behaviour of materials and pollutants (e.g. pH, temperature, mass of adsorbent, etc.) without further insights into the implications for engineering design and practice;focus primarily on adsorption models and curve fitting (e.g. Freundlich, Langmuir etc.); andcontain only chemical, physical and/or thermodynamic analyses.Core topic areas:Risk Assessment and Reliability Engineering • Risk assessment, risk management, consequence analysis, and uncertainty quantification. • Supply chain risk management. • Cyber and physical security vulnerability assessment. • Risk assessment of hydrogen-based technologies. • Human reliability analysis (HRA) and human-machine interface (HMI). • Reliability predictions of integrated systems and high-temperature power electronics. • Integrity management and reliability, availability and maintainability (RAM).Technical Safety and Loss Prevention • Fire and gas detection. • Firewater systems. • Functional safety and safety integrity levels (SIL) • Layer of protection analysis (LOPA) • Bowtie analysis. • Emergency response • HAZOP and other hazard/risk identification techniques.Modelling • Modelling liquid, gaseous, and two-phase releases and dispersion. • Consequence modelling, including: fire, explosion, toxic, eco-toxic effects and projectile impacts. • Methods, including computational fluid dynamics (CFD). • Accident investigation and modelling.Chemical Toxicity and Exposure Assessment • Toxic releases and exposure assessment. • Process plant health issues.Process Pipelines, Storage and Security • Process pipelines security and terrorism. • Pipeline leak detection and measurement and corrosion assessment. • Carbon capture and storage (CCS) and CO2 transport.Fire and Explosion • Fire, combustion, and explosion phenomena. • Dust explosions. • Fire and blast protection and survivability.Human Factors in Design and Management • HSE performance measurement including leading and lagging indicators. • Human and organizational factors in safety cases. • Human performance optimization by design. • SIMOPS (simultaneous operations). • Situational awareness. • Communications and risk control systems. • Resilience engineering. • Technical assurance and workforce training.Inherent Safety and Inherently Safer Design • Hazard identification • Design and development of new processes and equipment. • Methodologies for ranking inherent safety. • Retrofitting inherently safer solutions and upgrading existing plant for improved safety.Nuclear Safety • Waste disposal. • Design for decommissioning. • Passively safe reactor designs. • Nuclear reactor protective and monitoring systems.Reaction Hazards • Chemical thermal stability and thermal reaction hazards. • Influence of impurities on reaction hazards. • Development of reactivity hazard index ranking tools. • Runaway reactions, including detection and mitigation. • Compatibility/reacti... of chemicals involved in a chemical process.Industrial Hazards and Safety Cases • Major accident hazards • ALARP and cost-benefit analysis. • Industrial safety cases.Incident investigations and case histories • Case histories of incidents and lessons learned integration into design and operations. • Technical analysis of incidents. • Computational modelling to simulate actual incidents • Use of incidents in training and improvement of safety performance • Incident investigation methodologies • Incident databases and their applications.Air pollution prevention and treatment • Methods and technologies for prevention and treatment of air pollution • Air dispersion modelling • Prediction and mitigation of air pollution incidents • Health impacts from air pollutionResource and waste management • Recovery and recycling of materials and products • Energy from waste and alternative resources • Waste minimisation • Waste treatment technologies • Waste management: systems and processes for energy and material recovery and waste treatment; disposal • Landfill and waste repository design, operation and management • Land remediation and recoveryWater pollution prevention and treatment • Industrial, pure and ultrapure water production • Municipal and industrial effluent treatment • Potable water treatment • Sludge processing, energy recovery and disposal • Mitigation of water pollution incidents • Water pollution dispersion modelling • Health impacts from water pollutionFor more information on the IChemE journals published in partnership with Elsevier and to find out about some of the top research published in the journals, please see this page: https://www.elsevier...
    • Biochemical Engineering Journal

      • ISSN: 1369-703X
      endorsed by Division of Biochemical Engineering, The Society of Chemical Engineers, JapanBiochemical Engineering Journal welcomes submissions from NIH-funded authors. We deposit gold open access articles immediately in PubMed Central. For other articles, we shall deposit the accepted manuscript on behalf of the author to PubMed Central after 12 months (the normal embargo period for this journal is 24 months). For more information, please see here.The Biochemical Engineering Journal aims to promote progress in the crucial chemical engineering aspects of the development of biological processes associated with everything from raw materials preparation to product recovery relevant to industries as diverse as medical/healthcare, industrial biotechnology, and environmental biotechnology.The Journal welcomes full length original research papers, short communications, and review papers* in the following research fields:Biocatalysis (enzyme or microbial) and biotransformations, including immobilized biocatalyst preparation and kinetics Biosensors and Biodevices including biofabrication and novel fuel cell development Bioseparations including scale-up and protein refolding/renaturati... Environmental Bioengineering including bioconversion, bioremediation, and microbial fuel cellsBioreactor Systems including characterization, optimization and scale-up Bioresources and Biorefinery Engineering including biomass conversion, biofuels, bioenergy, and optimization Industrial Biotechnology including specialty chemicals, platform chemicals and neutraceuticalsBioma... and Tissue Engineering including bioartificial organs, cell encapsulation, and controlled release Cell Culture Engineering (plant, animal or insect cells) including viral vectors, monoclonal antibodies, recombinant proteins, vaccines, and secondary metabolites Cell Therapies and Stem Cells including pluripotent, mesenchymal and hematopoietic stem cells; immunotherapies; tissue-specific differentiation; and cryopreservation Metabolic Engineering, Systems and Synthetic Biology including OMICS, bioinformatics, in silico biology, and metabolic flux analysis Protein Engineering including enzyme engineering and directed evolution*Authors are requested to complete a Review Proposal Form for Editorial approval prior to submission of the review article. Proposals can be submitted to biochemical.engineer... or one of the Editors.
    • Biotechnology Advances

      • ISSN: 0734-9750
      Research ReviewsBiotechnology Advances is a review journal which considers all aspects of the multidisciplinary field. The scope includes biotechnology principles and applications in industry, agriculture, medicine, environmental concerns and regulatory issues. Authoritative articles on current developments and future trends in biotechnology are emphasized. Submissions of appropriate manuscripts are invited. A wide audience of scientists, engineers and others is addressed: students, instructors, researchers, practitioners, managers, governments and related stakeholders. Special issues are published on selections of presentations at recent relevant conferences as arranged with the organizations.Benefi... to authors We also provide many author benefits, such as free PDFs, a liberal copyright policy, special discounts on Elsevier publications and much more. Please click here for more information on our author services.Please see our Guide for Authors for information on article submission. If you require any further information or help, please visit our Support Center
    • Chemical Engineering Research and Design

      • ISSN: 0263-8762
      Publication of the Institution of Chemical Engineers Official Journal of the European Federation of Chemical EngineeringChERD aims to be the principal international journal for publication of high quality, original papers in chemical engineering.Papers showing how research results can be used in chemical engineering design, and accounts of experimental or theoretical research work bringing new perspectives to established principles, highlighting unsolved problems or indicating directions for future research, are particularly welcome. Contributions that deal with new developments in plant or processes and that can be given quantitative expression are encouraged. The journal is especially interested in papers that extend the boundaries of traditional chemical engineering.The journal publishes regular special issues focusing on specific topics, and issues dedicated to selected papers from major conferences.Core topic areas:Distillation and absorption• Sustainable process design, operation and intensification• Process modelling, simulation and optimization• Process equipment characterization, design and selection• Hydrodynamics, heat and mass transfer in separation equipment• Physical properties and thermodynamic models/methodsFluid flow• Fluid flow and mixing in process equipment• Laminar to turbulent flow• Reactive flow• Multiphase flow• Flow of Non-Newtonian fluids• Flow in porous media• Interfacial flows, coating & wetting phenomena• Microfluidics• Computational fluid dynamics• Flow visualization and advanced experimental flow measurementHeat and mass transfer• Mechanisms of heat and mass transfer • Multicomponent mass transfer • Simulation of heat and mass transfer processes • Simultaneous heat and mass transferMaterials processing and product development• Fundamental properties of interest to processing of materials • Injection moulding of materials • In-line measurement and control of material processes • Morphological development processes • Pre-processing, shaping, multi-layering and finishing of final product form • Product design based on chemical engineering tools • Structure-function relationships in products and relevant systems • Tailoring chemical products and materials for end-use applicationsParticle technology• Formation and synthesis of particulates• Crystallisation and precipitation• Product formulation and rheology• Mechanics of particulate solids• Particle-fluid and particle-particle interactions• Physics-based and data-driven modelling of particle systems• Measurement and characterisation of particulate systems• Comminution, attrition, agglomeration and coating• Processing, handling and storage of particulate solids and dispersions• Mixing and separation of particulate systems• Fluidisation and multiphase flow• Dust formation and control• Design and control of systems, processes and equipment operating with particulates• Applications of particulates in processes and materialsPharmaceuti... engineering• Advanced (Bio)pharmaceutical Manufacturing: Modelling, quality-by-design, digitalization, digital twins, process analytical technologies, smart manufacturing, new unit operations, continuous manufacturing, modular and decentralized production, etc.• Design, characterisation and modelling of drug delivery systems• Formulation, modified release, etc.• Data Science for Pharmaceutical Engineering• Supply chain, personalized medicine, reaction condition prediction, solid-state form prediction, in-silico prediction of pharmacokinetics, etc.Process systems engineering• Process design and integration• Process modelling, simulation and optimization• Process dynamics, control and monitoring• Information modelling and analysis• Machine Learning in Process Design and Operations• Techno-economic analysis• Production planning/scheduling and supply chain• Domain application (bioprocesses, energy and environmental systems engineering)Reaction engineering• Catalysis engineering • Process intensification • Reaction kinetics • Reactive flows • Reactor development, modelling and scale-upSeparation processes• Adsorption Science and Technology• Molecular Separations: membranes, chromatography• Phase Separations: clarification, flocculation, coagulation, centrifugation, cyclone separation, etc.• Reactive Separations: hybrid and integrated separation techniques• Other Separations: extraction, leaching, novel separation processes, etc.• Intensification and Integration of Separation Processes: process optimization, machine learning and AI, Industry 4.0, and digitalization, etc.For more information on the IChemE journals published in partnership with Elsevier and to find out about some of the top research published in the journals, please see this page: https://www.elsevier...
    • Molecular Catalysis

      • ISSN: 2468-8231
      Molecular Catalysis publishes full papers that are original, rigorous, and scholarly contributions examining the molecular and atomic aspects of catalytic activation and reaction mechanisms. The fields covered are:Heterogeneous catalysis including immobilized molecular catalystsHomogeneous catalysis including organocatalysis, organometallic catalysis and biocatalysisPhoto- and electrochemistryTheo... aspects of catalysis analyzed by computational methodsManuscripts submitted to Molecular Catalysis ideally fall into the field of chemical synthesis, i.e. the preparation of chemical compounds used as pharmaceutical building blocks, fine chemicals, commodity chemicals or as bulk chemicals (or as precursors for them).Manuscripts dealing with non-synthetic topics such as degradation reactions (e.g. photocatalysis for the degradation of dyes/pollutants), (bio)sensors or fuel cells will not be considered for publication in Molecular Catalysis.Contributi... that do not fall within the above aims and scope will be rejected at the editorial level. Examples are papers that are limited to:Routine preparation and characterization of catalytic materialsRoutine synthetic organic applications of catalysisRoutine computational studies that merely reproduces experimental dataSince the scopes of the Elsevier journals Molecular Catalysis, Applied Catalysis A: General, Applied Catalysis B: Environmental, and Catalysis Communications are complementary, an appropriate submission to each journal could be borderline, in which case the advice of another Editor will be sought, possibly redirecting the submission to either Applied Catalysis A: General, Applied Catalysis B: Environmental, or Catalysis Communications (for letters) with the author(s)'s agreement.Molecular Catalysis publishes regularly full papers; special issues on well-defined topics are published only by invitation. However, proposal from authors are welcome anytime and enquiries regarding the submission of special issues should be directed to the Editors. Any special issue should contain at least 30 articles featuring work from leading experts in the area and/or from leading institutes.Review and Perspective articles are normally published by invitation.Perspecti... are short articles covering current areas of interest for molecular catalysis audience in the form of personal accounts. The length of a published perspective ranges from 1500 to 2000 words (excluding figures, structures, photographs, schemes, tables, etc.) with at least 20 or more references.A new article format called "Ongoing Story" will focus on a still open molecular catalysis research showing the developments in the understanding by a specialist area. The length of a published "Ongoing story" ranges from 500 to 1000 words (excluding figures, structures, photographs, schemes, tables, etc.).Guidelines for catalyst characterization and reporting experimental results:Every manuscript published in Molecular Catalysis has to provide sufficient experimental detail to reproduce the experiments and calculations reported. Also, the identity of the products (especially if a new product is synthesized) has to be established together with the yield and its purity.Catalyst characterization: To establish the identity of new catalysts a precise synthesis and purification procedure is inevitable as well as sufficient spectroscopic (e.g. UV-Vis, NMR etc.), crystallographic and chromatographic identification (ideally placed into the supporting information).In case of enzyme catalysts, a detailed description and documentation (e.g. SDS-gels etc) of the enzyme preparation (such as expression system, induction, fermentation conditions, downstream processing and enzyme purification) has to be provided.Catalyst activity assays have to be described in detail (including reagents, assay conditions and activity calculations).Reacti... conditions: A detailed description of the reaction conditions comprises: solvent composition (if appropriate buffer strength, pH etc.), reaction temperature, pressure, shaking- or stirring etc. Whereas possible, the concentrations of all reagents must be given in molar concentrations. This applies in particular to time courses shown in the manuscript. Authors should refrain from showing %-conversions but rather show molar concentrations of products and starting materials. To evaluate the efficiency of a catalyst, turnover numbers and turnover frequencies (together with the conditions and equations for their calculation) should be included in the manuscript text.Statements on efficiency and/or environmental benignity: In general, authors should refrain from claims of 'efficiency' and/or environmental benignity ('greenness') unless these claims are substantiated by a quantitative comparison with a method of the state-of-the-art. Manuscripts using such terms excessively without quantitative justification will not be considered for publication.Plagiari... All manuscripts submitted to Molecular Catalysis are routinely screened with respect to originality of concept, content, and writing. It is not appropriate for an author to reuse wording from publicly available sources (including the authors' own publications) no matter if cited (or not). Manuscripts with a plagiarism level (similarity index) above 10%, including self-plagiarism will be automatically rejected at Editorial level.
    • Applied Catalysis A: General

      • ISSN: 0926-860X
      An International Journal Devoted to Catalytic Science and its ApplicationsApplied Catalysis A: General publishes original papers and reviews on all aspects of catalysis of basic and practical interest to chemical scientists in both industrial and academic fields. Papers that focus on advances in catalysis science, especially those that have potential practical implications, by exploring new concepts or new approaches to catalytic processes and materials resulting in new understanding of catalytic phenomena are most welcome.Papers that do not focus on catalytic phenomena and those that report results of a thorough study or optimization of systems or processes that are well understood, widely studied, or minor variations of known ones are strongly discouraged. In their submission, authors are required to include a "Justification for Publication" section comprising a statement detailing the fit of the manuscript to the scope of the journal. Submissions made without the inclusion of such a justification will be rejected without review.When preparing an article for submission, it is important that the authors describe their work succinctly in the context of any related published work emphasizing the novel contributions made. Simply reporting new catalyst compositions without delivering associated new insights in catalytic science will be insufficient for publication.
    • Catalysis Today

      • ISSN: 0920-5861
      A Serial Publication Featuring Topical Themes in Catalysis and Related Subjects: Click Here for the Full List of Special Issues Published in Catalysis Today.Catalysis Today focuses on the rapid publication of original invited papers devoted to currently important topics in catalysis and related subjects. The journal only publishes special issues (Proposing a Catalysis Today Special Issue), each of which is supervised by Guest Editors who recruit individual papers and oversee the peer review process. Catalysis Today offers researchers in the field of catalysis in-depth overviews of topical issues.Both fundamental and applied aspects of catalysis are covered. Subjects such as catalysis of immobilized organometallic and biocatalytic systems are welcome. Subjects related to catalysis such as experimental techniques, adsorption, process technology, synthesis, in situ characterization, computational, theoretical modeling, imaging and others are included if there is a clear relationship to catalysis.Each issue of Catalysis Today covers a distinct topic. Types of publication are:Selected papers based on a symposia, workshop, or conference.Review articles, in-depth tutorials, or original publications on a common theme.Monographs (detailed papers covering a specific subject, typically of sufficient scope to constitute a full journal issue).Researchers who would like to serve as Guest Editors are encouraged to contact any of the journal Editors to answer specific questions.
    • Materials Characterization

      • ISSN: 1044-5803
      Materials Characterization features original articles and state-of-the-art reviews on theoretical and practical aspects of the structure and behaviour of materials. The Journal focuses on all characterization techniques, including all forms of microscopy (light, electron, acoustic, etc.,) and analysis (especially microanalysis and surface analytical techniques), and must include microstructural imaging. Developments in both this wide range of techniques and their application to the quantification of the microstructure of materials are essential facets of the Journal. While X-ray, spectroscopic, and mechanical behaviour measurements are all important aspects of characterization, they are not sufficient on their own to satisfy the scope of the journal. The Journal provides the Materials Scientist/Engineer with up-to-date information on many types of materials with an underlying theme of explaining the behavior of materials from a microstructural standpoint using novel and established characterization approaches. Materials covered by the journal include:1. Metals & Alloys2. Ceramics3. Biomedical materials (only metal or ceramic based)4. Composites (only metal or ceramic based)5. Nanomaterials with structural characterization as the focus of the workPlease note that not all topics or materials fall within the scope of Materials Characterization. Submissions focused on the topics listed below will not be considered for publication, potential alternative journals are indicated in brackets: i) layered bulk materials are included, but thin films are not (Thin Solid Films; Materials Science in Semiconductor Processing) ii) polymers or polymer composites (Elsevier polymer titles; Composites structures) iii) cementitious materials (Cement, Cement and Concrete Composites) iv) mechanical, electrical or other property measurements without any accompanying microstructural characterization (depending on the focus, please consider submitting to Corrosion Science; Wear; Materials Science & Engineering B; Materials & Design)v) computation, theory or analysis papers without an accompanying microstructural characterization component (Computational Materials Science; Materials Science & Engineering A; Materials Science & Engineering B; Materials Science & Engineering C)
    • The Journal of Supercritical Fluids

      • ISSN: 0896-8446
      The Journal of Supercritical Fluids is an international journal devoted to the fundamental and applied aspects of supercritical fluids and processes. The Journal aims to provide a focused platform for academic and industrial researchers to report their findings and to have ready access to the advances in this rapidly growing field. Its coverage is multidisciplinary and includes both basic and applied topics. It publishes original contributions in all aspects of the science and technology of supercritical fluids, as well as timely review articles*. Submissions on novel research that bring insightful contributions regarding sustainability are particularly welcomed. The Journal publishes topics including: Thermodynamics and phase equilibria, transcritical phenomena, reaction kinetics and rate processes, thermal and transport properties, and all topics related to processing such as separations (extraction, fractionation, purification, particle generation, nucleation and growth, impregnation, chromatography). Accounts of specific engineering applications such as those encountered in natural products, food, nutraceuticals and pharmaceuticals, medical devices and implants, (nano)materials, aerogels, minerals, fuels, chemicals and polymer industries.Novel research that brings insightful contributions regarding sustainability. Papers dealing with modern energy systems, energy conversion technologies, supercritical CO2 Brayton cycle, or with biomass utilization, waste remediation and advanced oxidation processes. Latest advances in process design, process intensification and waste minimization, or microfluidics in sub-critical or supercritical environments.High pressure equipment design, analytical techniques, sensors, novel instrumentation, new experimental methodologies and techniques, predictive procedures, process analytical technology (PAT) and process control methodologies, or life cycle assessment as related to systems under pressure. However, research reporting on experimental optimization of procedures, correlation of results with neural networks, statistical analyses or similar methods will only be considered when they provide substantial new insight into the theory and practice of supercritical fluids and are compared with present theoretical models or molecular-based simulations. The Journal does not accept submissions on studies containing methods or evaluations related to animal research.*Authors are requested to complete a Review Proposal Form for Editorial approval prior to submission of the review article. Proposals can be submitted to Professor Elisabeth Badens (elisabeth.badens@un...