Agunloye, Emmanuel and Petsagkourakis, Panagiotis and Yusuf, Muhammad and Labes, Ricardo and Chamberlain, Thomas and Muller, Frans L. and Bourne, Richard A. and Galvanin, Federico (2024) Automated kinetic model identification via cloud services using model-based design of experiments. Reaction Chemistry & Engineering, 9 (7). pp. 1859-1876. ISSN 2058-9883
Full text not available from this repository.Abstract
Industry 4.0 has birthed a new era for the chemical manufacturing sector, transforming reactor design and integrating digital twin into process control. To bridge the gap between autonomous chemistry development, on-demand manufacturing and real-time optimization, we developed a cloud-based platform driven by model-based design of experiment (MBDoE) algorithms integrated in a simulation software for model identification (SimBot) to remotely coordinate a smart flow reactor, also known as the LabBot, sited in a different location. With real-time data and setpoints synchronization, MBDoE was able to identify kinetic models using a limited number of experimental runs. Within this platform, two pharmaceutically relevant syntheses were investigated as case studies: amide formation and nucleophilic aromatic substitution. A new kinetic model providing statistically adequate data description within the whole investigated experimental design space was identified for the amide formation reaction. The model for the nucleophilic aromatic substitution with a well-known but complex mechanism was accurately identified ensuring a statistically precise estimation of kinetic parameters.
| Item Type: | Article |
|---|---|
| Uncontrolled Keywords: | Kinetic Model ; Cloud Services ; Model-Based Design of Experiments; Kinetic ; Automation in Research |
| Subjects: | Computers, Control & Information Theory |
| Depositing User: | Mrs Titi Herawati |
| Date Deposited: | 29 Dec 2025 06:32 |
| Last Modified: | 29 Dec 2025 06:32 |
| URI: | https://karya.brin.go.id/id/eprint/57213 |


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