CHEMIE INGENIEUR TECHNIK

Scope & Guideline

Driving Innovation in Chemistry and Manufacturing Engineering.

Introduction

Immerse yourself in the scholarly insights of CHEMIE INGENIEUR TECHNIK with our comprehensive guidelines detailing its aims and scope. This page is your resource for understanding the journal's thematic priorities. Stay abreast of trending topics currently drawing significant attention and explore declining topics for a full picture of evolving interests. Our selection of highly cited topics and recent high-impact papers is curated within these guidelines to enhance your research impact.
LanguageMulti-Language
ISSN0009-286x
PublisherWILEY-V C H VERLAG GMBH
Support Open AccessNo
CountryGermany
TypeJournal
Convergefrom 1949 to 2024
AbbreviationCHEM-ING-TECH / Chem. Ing. Tech.
Frequency12 issues/year
Time To First Decision-
Time To Acceptance-
Acceptance Rate-
Home Page-
AddressPOSTFACH 101161, 69451 WEINHEIM, GERMANY

Aims and Scopes

CHEMIE INGENIEUR TECHNIK focuses on the interdisciplinary field of chemical engineering, encompassing a wide range of topics from process engineering to materials science. The journal aims to publish high-quality research that contributes to the advancement of chemical technologies and their applications across various industries.
  1. Chemical Process Engineering:
    The journal covers innovative methodologies and technologies in chemical process engineering, including optimization, modeling, and simulation of chemical processes.
  2. Sustainability and Green Chemistry:
    There is a strong emphasis on sustainability, exploring solutions for waste reduction, recycling, and the development of green chemical processes.
  3. Materials Science and Engineering:
    Research in materials science, particularly focusing on the development and characterization of new materials, including polymers, catalysts, and nanomaterials, is a core theme.
  4. Energy Systems and Conversion:
    The journal addresses advancements in energy systems, particularly renewable energy sources and their integration into existing infrastructures.
  5. Biochemical Engineering:
    The journal includes significant contributions in biochemical engineering, particularly in the context of bioprocesses, biocatalysis, and the production of bio-based materials.
  6. Artificial Intelligence and Machine Learning Applications:
    There is a growing interest in the application of AI and machine learning techniques to optimize chemical processes and enhance operational efficiencies.
  7. Environmental Engineering and Waste Management:
    Research related to environmental impacts of chemical processes and innovative waste management techniques is also a significant focus.
Recent years have seen the emergence of several key themes within CHEMIE INGENIEUR TECHNIK, reflecting current trends and technological advancements in the field of chemical engineering.
  1. Circular Economy and Resource Recovery:
    This theme has gained traction as researchers explore innovative approaches to resource recovery and waste management, emphasizing sustainability and efficiency.
  2. Hydrogen Production and Utilization:
    Research on hydrogen technologies, including production methods, storage, and applications, is on the rise, driven by the global push for clean energy solutions.
  3. Digitalization and Industry 4.0:
    The integration of digital technologies in chemical engineering processes, including AI, machine learning, and IoT, is increasingly prominent in recent publications.
  4. Process Intensification and Optimization:
    There is a growing interest in advanced methodologies for process intensification and optimization, aimed at improving efficiency and reducing environmental impacts.
  5. Biotechnology and Bioprocesses:
    Research in biotechnology, particularly focused on bioprocesses for producing sustainable chemicals and materials, is emerging as a significant area of interest.
  6. Advanced Materials Development:
    The journal is seeing an increase in research dedicated to the development of advanced materials, including nanomaterials and composites, for various applications.

Declining or Waning

While CHEMIE INGENIEUR TECHNIK continues to grow in several areas, certain themes have shown a decline in prominence over recent years. This reflects shifting research priorities and advancements in technology.
  1. Traditional Chemical Synthesis Methods:
    There is a noticeable reduction in publications focused on conventional chemical synthesis methods, as the field shifts towards more sustainable and innovative approaches.
  2. Heavy Industrial Applications:
    Research specifically targeting heavy industrial applications of chemical engineering has decreased, possibly due to the industry's move towards more sustainable practices and technologies.
  3. Basic Theoretical Studies:
    There has been a waning interest in purely theoretical studies without practical applications, as the journal prioritizes research that has direct implications for industry and technology.
  4. Conventional Material Recycling Techniques:
    The focus on conventional recycling methods has declined as the field increasingly explores advanced recycling technologies and circular economy concepts.

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