Optimization of Fluidized Bed Reactor Using Aspen Plus

May 2024
Vol-10, Issue-3
Paper ID: 23898
ISSN: 2395-4396
Downloads: 0

Abstract & Details

Research Area
Chemical Engineering
Keywords
Fluidized bed reactor Aspen Plus simulation Heterogeneous reactions Multiphase reactions Chemical industry Pharmaceuticals industry Process engineering Minimum fluidization velocity Pressure drop Aluminum hydroxide decomposition Aluminum oxide production Mass conversion Experimental validation Process intensification Reactor modeling
Abstract
Fluidized bed reactor is useful for heterogeneous (multiphase) reactions, separations, size enlargement, coating, and blending in chemical and pharmaceuticals industries. To develop a model and simulation of this reactor with advanced systems process engineering software (Aspen Plus). Aspen plus has the capability to simulate real factory performance, design improved plants, and intensify profitability in present plants. This modeling and simulation are applied Geld art B particle classification, GGC is used for particle size distribution function, Newton parameters for mass convergence, and Ergun equation is used for minimum fluidization velocity calculation and pressure drop through the fluidized bed reactor. Generally, most of the predictions model from Aspen plus is a reasonable agreement through the experimental results. Advantage of this investigation is used small quantity of bed particles and identified their melting point temperature is above 340°C. This fluidized bed reactor model and simulation is functional for aluminum hydroxide decomposition reaction. The feed 275 kg/hr of Al(OH)3is converted into 169.6 kg/hr of aluminum oxide (Al2O3) and 89.9 kg/hr of water. A total mass conversion percent is 94.4% of aluminum hydroxide.

Author Information

# Name Institute / Affiliation
1 Lohakare Vaibhavi Sandip Pravara Rural Engineering College, Loni
2 Taskar Ashutosh Tukaram Pravara Rural Engineering College, Loni
3 Pagar Darshan Mahendra Pravara Rural Engineering College, Loni
4 Sayyad Taher Haju Pravara Rural Engineering College, Loni
5 Dr. B. L. Pangarkar Pravara Rural Engineering College, Loni

How to Cite

Use the following formats to cite this article in your research.

APA Style
Sandip, Lohakare Vaibhavi, Tukaram, Taskar Ashutosh, Mahendra, Pagar Darshan, Haju, Sayyad Taher, & Pangarkar, Dr. B. L. (2024). Optimization of Fluidized Bed Reactor Using Aspen Plus. International Journal of Advance Research and Innovative Ideas In Education, 10(3), 2041-2050.
MLA Style
Sandip, Lohakare Vaibhavi, et al. "Optimization of Fluidized Bed Reactor Using Aspen Plus." International Journal of Advance Research and Innovative Ideas In Education, vol. 10, no. 3, 2024, pp. 2041-2050.
IEEE Style
Lohakare Vaibhavi Sandip, Taskar Ashutosh Tukaram, Pagar Darshan Mahendra, Sayyad Taher Haju, and Dr. B. L. Pangarkar, "Optimization of Fluidized Bed Reactor Using Aspen Plus," International Journal of Advance Research and Innovative Ideas In Education, vol. 10, no. 3, pp. 2041-2050, 2024.
Vancouver Style
Sandip Lohakare Vaibhavi, Tukaram Taskar Ashutosh, Mahendra Pagar Darshan, Haju Sayyad Taher, Pangarkar Dr. B. L.. Optimization of Fluidized Bed Reactor Using Aspen Plus. International Journal of Advance Research and Innovative Ideas In Education. 2024;10(3):2041-2050.
Harvard Style
Sandip, Lohakare Vaibhavi, Tukaram, Taskar Ashutosh, Mahendra, Pagar Darshan, Haju, Sayyad Taher, & Pangarkar, Dr. B. L. (2024) 'Optimization of Fluidized Bed Reactor Using Aspen Plus', International Journal of Advance Research and Innovative Ideas In Education, 10(3), pp. 2041-2050.
Chicago Style
Sandip, Lohakare Vaibhavi, et al. "Optimization of Fluidized Bed Reactor Using Aspen Plus." International Journal of Advance Research and Innovative Ideas In Education 10, no. 3 (2024): 2041-2050.
Turabian Style
Sandip, Lohakare Vaibhavi, et al. "Optimization of Fluidized Bed Reactor Using Aspen Plus." International Journal of Advance Research and Innovative Ideas In Education 10, no. 3 (2024): 2041-2050.

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