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Sorption-enhanced steam reforming for biomass to hydrogen conversion with improved energy efficiency and CO2 capture: Thermodynamic analysis and multi-criteria optimization

delete2026-08-12
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PRE
AI
高岩 (Yan Gao) *
X
Xin Yu
C
Chaonan Tan
H
Huilin Wang
F
Feilong Huang
C
Changqun Dong
Y
Yang Ma
J
Jun Yan
J
Jing Sun
DOI:10.1016/j.ijhydene.2026.157004delete
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Abstract

Abstract

En 中文
• Key reaction parameters were comprehensively optimized via weighting matrix. • SE-SR achieved 1.60 Nm3/kg H2 at a lower reforming temperature. • CaO sorption drove over 97% of feedstock carbon into gaseous products. • SE-SR reduced QD/H2 and YBiomass/H2 by 5.1% and 17.3%, respectively.

Journal

International Journal of Hydrogen Energy cover
International Journal of Hydrogen Energy
IF:
8.3
Papers:
5.4W
Citations:
23.1W

Organization

S
shanghai jiao tong university
Scholars:
15.1W
Papers: 11.5W
Citations: 159
S
Shandong Jianzhu University
Scholars:
928
Papers: 314
Citations: 3.3K
S
shandong university
Scholars:
9.1W
Papers: 6.3W
Citations: 94
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