Thermal Analysis and Multi-Scale Modeling for Chemical Processes
A special issue of Processes (ISSN 2227-9717). This special issue belongs to the section "Chemical Processes and Systems".
Deadline for manuscript submissions: closed (15 August 2023) | Viewed by 13124
Special Issue Editors
Interests: heterogeneous kinetics; solid–gas reactions; thermal analysis; reactor design
Special Issues, Collections and Topics in MDPI journals
Interests: thermal analysis; solid-state reactions; heterogeneous kinetics; chemistry education
Special Issues, Collections and Topics in MDPI journals
Interests: solid-state processes; kinetics; materials; thermal energy storage
Special Issues, Collections and Topics in MDPI journals
Special Issue Information
Dear Colleagues,
Chemical processes are involved in numerous fields, including catalysis, waste treatment, biochemistry, food and polymer sciences, materials processing, and heat storage. Today, sustainable development requires such processes to be more efficient, be more acceptable to society, and leave a smaller environmental impact. To achieve these goals, materials and reactors need to be well-designed and/or optimized based on a detailed description of physical phenomena and chemical reactions. Multi-scale approaches are thereby necessary in order to rely on upward and downward cascades of information between small and larger scales.
Among these various properties, the thermodynamic conditions inside the process are difficult to understand since they are driven not only by the operating conditions but also by the heat and mass transfers, which are influenced in space and time by the chemical reactions that are themselves influenced by thermodynamic conditions. Thus, the process rates and their dependence on thermodynamic parameters (temperature, partial pressures, etc.) are of great importance. The kinetics of thermally stimulated processes is generally measured by thermal analysis techniques such as calorimetry (DSC, for example) and thermogravimetric analysis.
The purpose of this Special Issue is to present a collection of papers that reflect recent developments in the field of multi-scale modeling of chemical processes and highlight the essential role of thermal analysis in understanding the behavior of various chemical processes.
Prof. Dr. Loïc Favergeon
Prof. Dr. Nobuyoshi Koga
Prof. Dr. Luis A. Perez-Maqueda
Guest Editors
Manuscript Submission Information
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Keywords
- differential scanning calorimetry (DSC)
- thermogravimetric analysis (TGA)
- process simulation
- reaction kinetics
- scaling
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