ChemEngineering

Scope & Guideline

Pioneering Open Access Research in Chemical Engineering

Introduction

Welcome to the ChemEngineering information hub, where our guidelines provide a wealth of knowledge about the journal’s focus and academic contributions. This page includes an extensive look at the aims and scope of ChemEngineering, highlighting trending and emerging areas of study. We also examine declining topics to offer insight into academic interest shifts. Our curated list of highly cited topics and recent publications is part of our effort to guide scholars, using these guidelines to stay ahead in their research endeavors.
LanguageEnglish
ISSN-
PublisherMDPI
Support Open AccessNo
Country-
Type-
Converge-
AbbreviationCHEMENGINEERING / ChemEngineering
Frequency6 issues/year
Time To First Decision-
Time To Acceptance-
Acceptance Rate-
Home Page-
AddressST ALBAN-ANLAGE 66, CH-4052 BASEL, SWITZERLAND

Aims and Scopes

ChemEngineering focuses on the interdisciplinary aspects of chemical engineering, bridging science and engineering with a strong emphasis on innovative methodologies and sustainable practices. The journal covers a wide range of topics that encompass both fundamental research and applied engineering solutions.
  1. Process Optimization and Modeling:
    The journal emphasizes methodologies for optimizing chemical processes, including the use of response surface methodology, machine learning, and predictive modeling to enhance efficiency and sustainability.
  2. Catalysis and Reaction Engineering:
    Research in this area explores various catalytic processes and reaction engineering, focusing on the development of new catalysts and reaction conditions to improve product yields and reduce environmental impact.
  3. Materials Science and Nanotechnology:
    ChemEngineering publishes studies on the synthesis and application of advanced materials, including nanocomposites and hybrid materials, for various applications ranging from energy storage to environmental remediation.
  4. Environmental Engineering and Waste Management:
    The journal addresses challenges related to wastewater treatment, pollutant removal, and environmental sustainability, highlighting innovative techniques for waste valorization and pollution control.
  5. Biochemical and Bioprocess Engineering:
    Research on bioprocesses, including fermentation and biotransformation, is a key focus, with studies exploring the use of biological systems for the production of valuable chemicals and materials.
  6. Thermodynamics and Transport Phenomena:
    Theoretical and experimental studies related to thermodynamics, heat transfer, and mass transfer phenomena in chemical processes are foundational to the journal's contributions.
ChemEngineering has seen a notable evolution in its thematic focus, with several emerging areas gaining traction. These trends reflect the journal's responsiveness to contemporary challenges in chemical engineering and technology.
  1. Sustainable Chemistry and Green Engineering:
    There is a significant increase in research focused on sustainable practices, including green chemistry and engineering solutions that minimize environmental impact and enhance resource efficiency.
  2. Nanotechnology and Advanced Materials:
    The publication of studies related to nanomaterials and their applications in catalysis, energy storage, and environmental remediation is on the rise, indicating a growing interest in material innovation.
  3. Digitalization and Smart Technologies:
    Emerging themes around the integration of machine learning, artificial intelligence, and smart technologies in process optimization and control are gaining prominence, reflecting the industry's digital transformation.
  4. Renewable Energy Solutions:
    Research related to renewable energy, including biofuels and alternative energy sources, is increasingly featured, aligning with global efforts to transition towards sustainable energy systems.
  5. Circular Economy and Waste Valorization:
    The journal is increasingly publishing research on circular economy principles, focusing on waste valorization techniques that transform waste into valuable resources, highlighting innovative recycling methodologies.

Declining or Waning

While ChemEngineering has consistently published high-quality research across various domains, some areas have seen a decline in focus over recent years. This shift may reflect evolving research priorities and technological advancements.
  1. Traditional Chemical Processes:
    Research on conventional chemical production processes has become less frequent, possibly due to a shift towards more sustainable and innovative approaches that integrate advanced technologies and materials.
  2. Classical Separation Techniques:
    While important, studies focused solely on traditional separation methods, such as distillation and filtration, are appearing less frequently as newer, more efficient technologies gain prominence.
  3. Petroleum and Fossil Fuel Processing:
    The focus on petroleum refining and fossil fuel processing has waned as the journal increasingly prioritizes renewable energy sources and sustainable materials, reflecting a broader industry trend.
  4. Basic Chemical Education and History:
    Papers that delve into chemical engineering education or historical perspectives on the discipline are less common, indicating a shift towards more application-oriented and research-driven content.
  5. Static Modeling Approaches:
    There is a decreasing trend in the publication of static modeling studies that do not incorporate dynamic or real-time analysis, as the field moves towards more complex and integrated modeling approaches.

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