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Construction of lignin humic-like biochar composites for intensifying thermophilic biohydrogen production from lignocellulosic residues.

Jul 2026 · Bioresource Technology · pp. 135467 · 0 citations · 34 references
Medicine

Abstract

Dark fermentative hydrogen production from lignocellulosic residues is often limited by inefficient electron distribution and competing metabolic pathways. In this study, a lignin-derived humic substance-biochar (LHS-BC) was developed to enhance thermophilic hydrogen production from lignocellulosic residues. Among the tested materials, the lignin-derived humic-like substance obtained via alkaline oxidative humification and subsequently combined with biochar (HSH@BC) exhibited the best performance, increasing hydrogen production (mL/L) by 29.76% compared with the control. Kinetic analysis showed that HSH@BC significantly increased hydrogen production potential (1113.98 mL/L) and reduced lag time. The composite promoted cellulose degradation, enhanced cellulase and hydrogenase activities, and increased intracellular NAD+/NADH levels. Metabolic analysis revealed a shift from ethanol-type fermentation to acetate-butyrate pathways, leading to higher hydrogen yield. Electrochemical characterization suggests that cytochrome c may be involved in electron exchange with the quinone functional groups in LHS-BC. PICRUSt-based functional prediction suggested potential enrichment of central metabolic pathways, including glycolysis, pyruvate metabolism, the tricarboxylic acid (TCA) cycle, and the pentose phosphate pathway (PPP). Overall, LHS-BC improved hydrogen production by simultaneously regulating microbial community structure, metabolic pathways, and electron transfer processes, providing an effective strategy for thermophilic biohydrogen production from lignocellulosic biomass.

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