LAPSE:2023.12939
Published Article
LAPSE:2023.12939
Simulation on the Electric and Thermal Fields of a Microwave Reactor for Ex Situ Biomass Tar Elimination
Cheng Yang, Kanfeng Ying, Fan Yang, Huanghu Peng, Zezhou Chen
February 28, 2023
Abstract
Microwave treatment is an emerging technique for biomass tar elimination. The electric and thermal fields of the microwave reactor are the key to high elimination efficiency and energy utilization. In this work, we simulated the electric and thermal fields of a microwave reactor with various parameters including irradiation feed position, microwave power, silicon carbide length and flow velocity. Results show that the irradiation feed position that locates 5 mm vertically to the central plane can obtain the highest electric intensity and silicon carbide temperature (ca. 1100 K) after wave absorbing. Both the electric and thermal fields are strengthened when microwave power is increased. Extending the silicon carbide bed length will decrease the bed temperature and heating rate. A high flow velocity leads to non-uniform temperature distribution of the silicon carbide. For the purpose of achieving a high microwave energy utilization and uniform bed temperature, suitable irradiation feed position (zi = 5 mm), high microwave power (P = 1000 W), short silicon carbide bed length (lSiC = 100 mm) and low flow velocity (v = 0.02 m/s) are preferred, but the chemical kinetics of biomass tar elimination should also be considered in the practical application.
Keywords
biomass tar elimination, electric field, microwave, silicon carbide, Simulation, thermal field
Suggested Citation
Yang C, Ying K, Yang F, Peng H, Chen Z. Simulation on the Electric and Thermal Fields of a Microwave Reactor for Ex Situ Biomass Tar Elimination. (2023). LAPSE:2023.12939
Author Affiliations
Yang C: Department of Engineering, Huzhou University, Huzhou 313000, China
Ying K: Department of Engineering, Huzhou University, Huzhou 313000, China
Yang F: Department of Engineering, Huzhou University, Huzhou 313000, China
Peng H: Department of Engineering, Huzhou University, Huzhou 313000, China
Chen Z: Department of Engineering, Huzhou University, Huzhou 313000, China
Journal Name
Energies
Volume
15
Issue
11
First Page
4143
Year
2022
Publication Date
2022-06-04
ISSN
1996-1073
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PII: en15114143, Publication Type: Journal Article
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LAPSE:2023.12939
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https://doi.org/10.3390/en15114143
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