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Biohydrogen generation from un-pretreated spent coffee grounds with Clostridium thermocellum

delete2026-07-17
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OA
AI
Y
YE Young Eun Song †
M
MJ Minha Jo †
X
XK Xihui Kang
K
KC Kirch Czarina Quijano
E
ES Eric Schaedig
K
KJ Katherine J. Chou
E
ES Eric Sundstrom *
DOI:10.3389/fenrg.2026.1717891delete
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Abstract

Abstract

En 中文
Coffee is among the world’s most widely consumed beverages; generating 18 million wet tonnes of waste spent coffee grounds annually. Disposal of SCGs is complicated by their high moisture content; their recalcitrant chemical composition; and the presence of caffeine and other bioactive compounds. Dark fermentation is a promising technology for conversion of waste cellulosic biomass into renewable hydrogen; carbon dioxide; and volatile fatty acids. Typical SCGs have high moisture content; are pre-milled to fine particle sizes; and contain 8%–19% cellulose and up to 40% hemicellulose; making them an attractive feedstock for dark fermentation. In this study; we investigate biohydrogen production from unpretreated SCGs using Clostridium thermocellum strain KJC19-9; a cellulolytic bacterium engineered to co-utilize xylose; specifically examining the inhibitory effects of residual caffeine and high solids loadings on microbial growth and hydrogen production efficiency. While SCGs were initially resistant to both cell growth and biohydrogen production; a strategy to co-ferment with low concentrations of cellobiose dramatically enhanced process performance; reducing lag phase duration and enabling cellulosome production for efficient cellulose hydrolysis. This co-substrate approach generated up to 944 mL hydrogen per L reaction from 50 g/L of spent coffee grounds over 120 h (1.34 mol H2/mol carbohydrate); validating SCGs as a promising dark fermentation feedstock and underscoring the value of mixed substrate approaches in consolidated bioprocessing.
Keywords:
biohydrogen
spent coffee ground
dark fermentation
hydrolysis
clostridium thermocellum

Journal

Frontiers in Energy Research cover
Frontiers in Energy Research
IF:
2.4
Papers:
923
Citations:
1.4W

Organization

B
bioscience center
Scholars:
12
Papers: 4
Citations: 0
A
advanced bioprocess development unit
Scholars:
6
Papers: 1
Citations: 0
Cited Papers

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