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Comparison study of supercritical water gasification for hydrogen production on a continuous flow versus a batch reactor
被引:9
|作者:
Li, Haoyang
[1
]
Zhang, Mingyuan
[1
]
Wang, Haoyu
[1
]
Han, Xue
[2
]
Zeng, Yimin
[2
]
Xu, Chunbao Charles
[1
]
机构:
[1] Western Univ, Dept Chem & Biochem Engn, London, ON, Canada
[2] Nat Resources Canada, CanmetMATERIALS, Hamilton, ON, Canada
关键词:
Supercritical water gasification;
Biomass;
Continuous system;
Batch;
Hydrogen production;
BIOMASS GASIFICATION;
NICKEL-CATALYSTS;
BLACK LIQUOR;
MILL WASTE;
GLUCOSE;
MODEL;
PARAMETERS;
CONVERSION;
GLYCEROL;
LIGNIN;
D O I:
10.1016/j.biortech.2023.129923
中图分类号:
S2 [农业工程];
学科分类号:
0828 ;
摘要:
This study compares batch and continuous supercritical water gasification (SCWG) processes for green hydrogen production from biomass. It offers insights for optimizing processes, enhancing yields, quality, and energy ef-ficiency, assessing scale-up feasibility, and supporting techno-economic analyses. Glucose, glycerol, and black liquor were SCWG-treated at 500 degrees C with K2CO3 catalyst in a self-built continuous-flow reactor (150 g/h) and a batch reactor (75 mL). Comparisons primarily focused on gas product yields. Batch reactors outperformed continuous-flow reactors in hydrogen (glucose: 1.53 to 0.9 mmol/g, glycerol: 7.22 to 1.14 mmol/g, black liquor: 2.88 to 1.74 mmol/g) and total gas yields due to differences in reaction time and heating behavior. Temperature effects on continuous operation (450-600 degrees C) were studied, with glycerol showing the highest hydrogen yield increase (from 1.21 to 4.30 mmol/g). The study discusses the applicability of both reactors for biomass SCWG processes and their implications for sustainable green hydrogen production from renewable feedstocks.
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页数:9
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