Aims and Scope

Sustainable Technologies in Chemical Engineering (STCE) is an international peer-reviewed open-access journal dedicated to advancing scientific and technological innovations that contribute to sustainable development in chemical engineering and related disciplines. The journal aims to provide a platform for the dissemination of high-quality original research, review articles, short communications, and case studies addressing emerging sustainable technologies, resource efficiency, environmental protection, and the transition toward a circular and low-carbon economy.

The journal welcomes interdisciplinary contributions that integrate fundamental science, engineering principles, and industrial applications to address global challenges in energy, water, environment, materials, and process sustainability.

The scope of the journal includes:

  • Sustainable chemical and process engineering
  • Green chemistry and green manufacturing technologies
  • Catalysis and catalytic process development
  • Advanced oxidation processes and environmental remediation
  • Water and wastewater treatment technologies
  • Adsorption, membrane, and separation processes
  • Sustainable materials, nanomaterials, and functional materials
  • Renewable energy technologies and energy conversion systems
  • Hydrogen production, storage, and utilization
  • Carbon capture, utilization, and storage (CCUS)
  • Circular economy and waste valorization
  • Biomass conversion and biorefinery technologies
  • Process intensification and process optimization
  • Sustainable reaction engineering
  • Computational modeling, simulation, and artificial intelligence in sustainable chemical engineering
  • Environmental monitoring and pollution control
  • Life cycle assessment (LCA) and sustainability assessment
  • Industrial decarbonization strategies
  • Resource recovery and sustainable resource management
  • Emerging technologies for sustainable development

The journal encourages studies that demonstrate practical applicability, environmental benefits, economic feasibility, and technological innovation, contributing to the achievement of global sustainability goals and the advancement of chemical engineering practices.