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  5. Biomass steam gasification, high-temperature gas cleaning, and sofc model: A parametric analysis

Biomass steam gasification, high-temperature gas cleaning, and sofc model: A parametric analysis

Author(s)
Marcantonio, Vera
Monarca, Danilo  
Villarini, Mauro  
Di Carlo, Andrea
Del Zotto, Luca
more
Date Issued
2021
Type
article
Volume
13
Issue
22
Start Page
5936
DOI
10.3390/en13225936
Journal
ENERGIES  
Abstract
Gasification technology is actually one of the most effective ways to produce power and hydrogen from biomass. Solid oxide fuel cells (SOFCs) have proved to be an excellent energy conversion device. They can transform the chemical energy content in the syngas, produced by a gasifier, directly into electrical energy. A steady-state model of a biomass-SOFC was developed using process simulation software, ASPEN Plus (10, AspenTech, Bedford, MA, USA). The objective of this work was to implement a biomass-SOFC system capable of predicting performance under diverse operating conditions. The system is made of a gasification zone, gas cleaning steps, and SOFC. The SOFC modelling was done without external subroutines, unlike most models in the literature, using only the existing ASPEN Plus blocks, making the model simpler and more reliable. The analysis of the syngas composition out of each cleaning step is in accordance with literature data. Then, a sensitivity analysis was carried out on the main parameters. The results indicate that there must be a trade-off between voltage, electrical efficiency, and power with respect to current density and it is preferable to stay at a low steam-to-biomass ratio. The electrical efficiency achieved under the operating conditions is 57%, a high value, making these systems very attractive.
Subjects

biomass gasification

gasification modellin...

Aspen Plus

MATLAB

steam gasification

syngas

Handle
http://hdl.handle.net/2067/43569
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