Journal of the Taiwan Institute of Chemical Engineers

Scope & Guideline

Fostering innovation and excellence in chemical research.

Introduction

Welcome to your portal for understanding Journal of the Taiwan Institute of Chemical Engineers, featuring guidelines for its aims and scope. Our guidelines cover trending and emerging topics, identifying the forefront of research. Additionally, we track declining topics, offering insights into areas experiencing reduced scholarly attention. Key highlights include highly cited topics and recently published papers, curated within these guidelines to assist you in navigating influential academic dialogues.
LanguageEnglish
ISSN1876-1070
PublisherELSEVIER
Support Open AccessNo
CountryTaiwan
TypeJournal
Convergefrom 2009 to 2024
AbbreviationJ TAIWAN INST CHEM E / J. Taiwan Inst. Chem. Eng.
Frequency12 issues/year
Time To First Decision-
Time To Acceptance-
Acceptance Rate-
Home Page-
AddressRADARWEG 29, 1043 NX AMSTERDAM, NETHERLANDS

Aims and Scopes

The Journal of the Taiwan Institute of Chemical Engineers focuses on innovative research in the field of chemical engineering, emphasizing the development and application of chemical processes, materials, and technologies that enhance industrial practices and address environmental issues.
  1. Chemical Process Engineering:
    The journal covers advancements in the design, optimization, and modeling of chemical processes, including reaction engineering, separation processes, and thermodynamics.
  2. Materials Science and Engineering:
    Research on novel materials, including nanomaterials, composites, and polymers, is central to the journal, focusing on their synthesis, characterization, and applications in various engineering fields.
  3. Environmental Engineering:
    Publications often address environmental challenges, including wastewater treatment, pollution control, and sustainable practices, reflecting the journal's commitment to ecological responsibility.
  4. Biochemical Engineering:
    The journal also explores topics in biochemical engineering, such as bioprocessing, enzyme technology, and microbial systems, linking chemical engineering with biotechnology.
  5. Machine Learning and Data Science Applications:
    Emerging methodologies involving machine learning and data analytics are increasingly featured, demonstrating the intersection of traditional chemical engineering with modern computational techniques.
The journal has witnessed a significant shift towards innovative and sustainable technologies, reflecting contemporary challenges in chemical engineering. The following themes are increasingly prevalent in recent publications.
  1. Sustainable and Green Chemistry:
    Research focusing on sustainable practices, including waste reduction, green solvents, and environmentally friendly processes, is gaining traction as industries seek to minimize their ecological footprint.
  2. Advanced Materials and Nanotechnology:
    There is a growing emphasis on the development and application of nanomaterials and advanced composites in various engineering fields, highlighting innovations in material science.
  3. Digitalization and Machine Learning in Chemical Engineering:
    The incorporation of machine learning and digital tools in process optimization, predictive modeling, and data analysis is a rapidly emerging theme, showcasing the journal's adaptation to technological advancements.
  4. Energy Storage and Conversion Technologies:
    Topics related to energy efficiency, including battery technology, supercapacitors, and renewable energy systems, are increasingly emphasized, reflecting global energy challenges.
  5. Bioprocessing and Biotechnology:
    The intersection of chemical engineering and biotechnology, including biocatalysis and bioenergy, is expanding, indicating a trend towards integrating biological processes with chemical engineering principles.

Declining or Waning

As the research landscape evolves, certain traditional areas within chemical engineering appear to be declining in prominence in the journal's publications. This reflects shifts in focus towards more innovative and interdisciplinary approaches.
  1. Conventional Separation Techniques:
    There is a noticeable decrease in papers focusing solely on traditional separation methods like distillation and filtration, as newer technologies and integrated processes gain more attention.
  2. Single-Discipline Focus:
    Research that strictly adheres to chemical engineering without interdisciplinary connections is becoming less common, with a preference for studies that integrate chemistry, biology, and data science.
  3. Chemical Safety and Risk Assessment:
    While still important, the frequency of publications specifically dedicated to chemical safety practices and risk assessments has diminished, possibly overshadowed by more applied and innovative research areas.
  4. Fundamental Chemical Theory:
    Papers that discuss basic theoretical principles of chemical engineering without practical application or innovative context are less frequently featured, indicating a trend towards application-driven research.

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