Chinese Journal of Chemical Engineering

Scope & Guideline

Catalyzing Progress in Biochemistry and Environmental Engineering

Introduction

Delve into the academic richness of Chinese Journal of Chemical Engineering with our guidelines, detailing its aims and scope. Our resource identifies emerging and trending topics paving the way for new academic progress. We also provide insights into declining or waning topics, helping you stay informed about changing research landscapes. Evaluate highly cited topics and recent publications within these guidelines to align your work with influential scholarly trends.
LanguageEnglish
ISSN1004-9541
PublisherCHEMICAL INDUSTRY PRESS CO LTD
Support Open AccessNo
CountryChina
TypeJournal
Convergefrom 1993 to 2024
AbbreviationCHINESE J CHEM ENG / Chin. J. Chem. Eng.
Frequency12 issues/year
Time To First Decision-
Time To Acceptance-
Acceptance Rate-
Home Page-
AddressNO 13, QINGNIANHU SOUTH ST, DONGCHENG DIST, BEIJING 100011, PEOPLES R CHINA

Aims and Scopes

The Chinese Journal of Chemical Engineering focuses on advancing the field of chemical engineering through the publication of high-quality research that spans a variety of topics. The journal aims to disseminate knowledge regarding innovative processes, materials, and technologies within the field, fostering collaboration and development among researchers and practitioners.
  1. Process Engineering:
    Emphasizing the design, optimization, and scaling of chemical processes including fluid mechanics, heat transfer, and mass transfer.
  2. Catalysis and Reaction Engineering:
    Focusing on the development of new catalysts and catalytic processes for chemical transformations, including heterogeneous and homogeneous catalysis.
  3. Green Chemistry and Sustainable Engineering:
    Promoting research in sustainable practices, waste minimization, and environmentally friendly processes in chemical engineering.
  4. Material Science and Engineering:
    Investigating the synthesis, characterization, and application of advanced materials, including nanomaterials, polymers, and composites.
  5. Chemical Process Safety and Risk Management:
    Addressing safety protocols, risk assessment, and hazard analysis in chemical processes to enhance operational safety.
  6. Biochemical Engineering:
    Exploring the intersection of biology and chemical engineering, including bioprocessing, biofuels, and bioremediation technologies.
  7. Computational and Modeling Approaches:
    Utilizing computational techniques for process simulation, modeling, and optimization to predict system behavior.
The journal has shown a positive trend in the publication of research focused on emerging technologies and interdisciplinary studies. These themes reflect the evolving landscape of chemical engineering and the increasing integration of various scientific disciplines.
  1. Artificial Intelligence and Machine Learning:
    Recent papers highlight the application of AI and machine learning for process optimization, predictive modeling, and fault diagnosis in chemical engineering.
  2. Sustainable and Green Technologies:
    An increasing number of studies are dedicated to sustainable practices, such as waste-to-energy processes, bioprocessing, and renewable energy technologies.
  3. Nanotechnology and Advanced Materials:
    Research on nanomaterials and their applications in catalysis, drug delivery, and environmental remediation is gaining momentum.
  4. Biochemical and Bioengineering Processes:
    There is a rising interest in biochemical engineering, particularly in the production of biofuels, bioplastics, and other bioproducts.
  5. Process Intensification and Microreactor Technologies:
    Emerging techniques that enhance the efficiency and safety of chemical processes, including the use of microreactors and continuous flow systems, are increasingly being explored.
  6. Electrochemical Processes:
    Research related to electrochemical methods for energy storage, CO2 reduction, and wastewater treatment is trending upwards.

Declining or Waning

While the journal continues to explore a wide range of topics, certain areas of research appear to be receiving less attention in recent years. This shift may reflect changing priorities within the field of chemical engineering, as well as advancements in technology and methodology.
  1. Traditional Chemical Synthesis Methods:
    Research focused on conventional synthesis methods is decreasing as more innovative, sustainable, and efficient processes gain traction.
  2. Inorganic Chemical Engineering:
    There is a noted decline in publications related to purely inorganic processes as the focus shifts towards hybrid and interdisciplinary approaches.
  3. Basic Thermodynamics:
    Papers concentrating solely on fundamental thermodynamic principles are becoming less common, likely overshadowed by applied research and engineering applications.
  4. Classical Separation Processes:
    Interest in traditional separation techniques is waning, with a growing emphasis on advanced materials and methods, such as membrane technologies.
  5. Chemical Engineering Education:
    Research on educational methodologies and curricula in chemical engineering is less frequently published, as practical applications and research take precedence.

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