Photon management and reactor engineering for photochemical synthesis and scale-up

Open Access
Authors
Supervisors
Cosupervisors
  • J. van der Schaaf
Award date 15-10-2026
ISBN
  • 9789465362137
Number of pages 313
Organisations
  • Faculty of Science (FNWI) - Van 't Hoff Institute for Molecular Sciences (HIMS)
Abstract
This thesis investigates how photon management and reactor engineering can be integrated into the development and scale-up of photochemical processes. Digital twins and ray-tracing simulations are combined with experimental measurements for photonic characterization across different reactors and hydrodynamic regimes. These simulations are also used to design and optimize 3D-printed photoreactors. Moreover, kinetic measurements are used to identify process limitations and guide reactor selection and process intensification. This enables the scale-up of photochemical reactions from laboratory batch systems to continuous-flow systems. High-shear reactors are presented as a reactor type with strong potential for scaling up multiphasic photochemistry. Overall, the work shows how photonic characterization, modeling and engineering principles can support more efficient, reproducible and scalable photochemical synthesis.
Document type PhD thesis
Language English
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