Design and simulation of gas solid vortex reactor for process intensification of selected reactions
- Author
- Kaustav Niyogi (UGent) , Geraldine Heynderickx (UGent) and Guy Marin (UGent)
- Organization
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Citation
Please use this url to cite or link to this publication: http://hdl.handle.net/1854/LU-4295166
- MLA
- Niyogi, Kaustav, et al. “Design and Simulation of Gas Solid Vortex Reactor for Process Intensification of Selected Reactions.” Colloquium on Chemical Reaction Engineering, Abstracts, 2013.
- APA
- Niyogi, K., Heynderickx, G., & Marin, G. (2013). Design and simulation of gas solid vortex reactor for process intensification of selected reactions. Colloquium on Chemical Reaction Engineering, Abstracts. Presented at the Colloquium on Chemical Reaction Engineering (CCRE-2013), Milano, Italy.
- Chicago author-date
- Niyogi, Kaustav, Geraldine Heynderickx, and Guy Marin. 2013. “Design and Simulation of Gas Solid Vortex Reactor for Process Intensification of Selected Reactions.” In Colloquium on Chemical Reaction Engineering, Abstracts.
- Chicago author-date (all authors)
- Niyogi, Kaustav, Geraldine Heynderickx, and Guy Marin. 2013. “Design and Simulation of Gas Solid Vortex Reactor for Process Intensification of Selected Reactions.” In Colloquium on Chemical Reaction Engineering, Abstracts.
- Vancouver
- 1.Niyogi K, Heynderickx G, Marin G. Design and simulation of gas solid vortex reactor for process intensification of selected reactions. In: Colloquium on Chemical Reaction Engineering, Abstracts. 2013.
- IEEE
- [1]K. Niyogi, G. Heynderickx, and G. Marin, “Design and simulation of gas solid vortex reactor for process intensification of selected reactions,” in Colloquium on Chemical Reaction Engineering, Abstracts, Milano, Italy, 2013.
@inproceedings{4295166, author = {{Niyogi, Kaustav and Heynderickx, Geraldine and Marin, Guy}}, booktitle = {{Colloquium on Chemical Reaction Engineering, Abstracts}}, language = {{eng}}, location = {{Milano, Italy}}, title = {{Design and simulation of gas solid vortex reactor for process intensification of selected reactions}}, year = {{2013}}, }