TY - JOUR
T1 - Hydrogen production by biomass gasification in a supercritical water fluidized bed reactor
T2 - A CFD-DEM study
AU - Zhao, Lixing
AU - Lu, Youjun
N1 - Publisher Copyright:
© 2017 Elsevier B.V.
PY - 2018
Y1 - 2018
N2 - In this study, we used CFD-DEM model to simulate glucose gasification in a supercritical water fluidized bed reactor (SCWFBR). Simplified reaction kinetic model, including glucose decomposition, water gas shift reaction and methanation reaction, was used. Particle distributions, gas composition and reaction rate profiles were analyzed. Moreover, the influence of chemical reaction on flow behavior, and the effects of operation parameters, such as wall temperature, flow rates and initial bed height were investigated. The results show that high wall temperature, low flow rate and high initial bed height are in favor of gasification. However, lower H2 yield, gasification efficiency (GE) are found at flow rate below the minimum fluidization velocity. The simulation results show good agreement with the experimental results, demonstrating the validity of this model. The information obtained by the numerical study is useful for the operation and optimization of the gasification reactor.
AB - In this study, we used CFD-DEM model to simulate glucose gasification in a supercritical water fluidized bed reactor (SCWFBR). Simplified reaction kinetic model, including glucose decomposition, water gas shift reaction and methanation reaction, was used. Particle distributions, gas composition and reaction rate profiles were analyzed. Moreover, the influence of chemical reaction on flow behavior, and the effects of operation parameters, such as wall temperature, flow rates and initial bed height were investigated. The results show that high wall temperature, low flow rate and high initial bed height are in favor of gasification. However, lower H2 yield, gasification efficiency (GE) are found at flow rate below the minimum fluidization velocity. The simulation results show good agreement with the experimental results, demonstrating the validity of this model. The information obtained by the numerical study is useful for the operation and optimization of the gasification reactor.
KW - Biomass gasification
KW - CFD-DEM
KW - Fluidized bed reactor
KW - Supercritical water
UR - https://www.scopus.com/pages/publications/85028551804
U2 - 10.1016/j.supflu.2017.07.022
DO - 10.1016/j.supflu.2017.07.022
M3 - 文章
AN - SCOPUS:85028551804
SN - 0896-8446
VL - 131
SP - 26
EP - 36
JO - Journal of Supercritical Fluids
JF - Journal of Supercritical Fluids
ER -