Comparison Study of Supercritical Water Gasification of Different Bio-Renewable Feedstocks for Green Hydrogen Production on a Continuous-Flow Versus A Batch Reactor

35 Pages Posted: 22 Sep 2023

See all articles by Chunbao Xu

Chunbao Xu

City University of Hong Kong (CityU)

Haoyang Li

Western University

Mingyuan Zhang

Western University

Haoyu Wang

Western University

Xue Han

Government of Canada - CanmetMATERIALS

Yimin Zeng

Government of Canada - CanmetMATERIALS

Abstract

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 efficiency, assessing scale-up feasibility, and supporting techno-economic analyses. Glucose, glycerol, and black liquor were SCWG-treated at 500°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°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.

Keywords: Supercritical water gasification, biomass, Continuous system, Batch, Hydrogen production

Suggested Citation

Xu, Chunbao and Li, Haoyang and Zhang, Mingyuan and Wang, Haoyu and Han, Xue and Zeng, Yimin, Comparison Study of Supercritical Water Gasification of Different Bio-Renewable Feedstocks for Green Hydrogen Production on a Continuous-Flow Versus A Batch Reactor. Available at SSRN: https://ssrn.com/abstract=4575165

Chunbao Xu (Contact Author)

City University of Hong Kong (CityU) ( email )

Haoyang Li

Western University ( email )

1151 Richmond St
London, N6A 3K7
Canada

Mingyuan Zhang

Western University ( email )

Haoyu Wang

Western University ( email )

1151 Richmond St
London, N6A 3K7
Canada

Xue Han

Government of Canada - CanmetMATERIALS ( email )

Ottawa, K1A 0E9
Canada

Yimin Zeng

Government of Canada - CanmetMATERIALS ( email )

Ottawa, K1A 0E9
Canada

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