Use este identificador para citar ou linkar para este item: http://www.alice.cnptia.embrapa.br/alice/handle/doc/1188697
Título: Functional insights into inhibition by steam-exploded brewery spent grain hydrolysate in anaerobic digestion: roles of ammonia, volatile fatty acids, and phenolics.
Autoria: SANTOS, A. L. M. dos
LEITAO, R. C.
CAMILLO, L. de M. B.
SANTOS, G. B. dos
SANTOS, A. B. dos
Afiliação: AMANDA LIMA MORAES DOS SANTOS, UNIVERSIDADE FEDERAL DO CEARÁ; RENATO CARRHA LEITAO, CNPAT; LÍVIA DE MORAES BOMEDIANO CAMILLO, UNIVERSIDADE FEDERAL DO ABC; GABRIELI BOVI DOS SANTOS, UNIVERSIDADE FEDERAL DO ABC; ANDRÉ BEZERRA DOS SANTOS, UNIVERSIDADE FEDERAL DO CEARÁ.
Ano de publicação: 2026
Referência: Bioresource Technology, v. 453, 134624, Aug. 2026.
Conteúdo: Brewery spent grain (BSG) is a promising substrate for anaerobic digestion (AD). However, its lignocellulosic structure limits biodegradability. Steam explosion (SE) pretreatment enhances solubilization but may also generate inhibitory compounds, including free ammonia nitrogen (FAN), volatile fatty acids (VFAs), and p-cresol. This study evaluated the AD of BSG mixtures containing 0–100% SE hydrolysate in 85-day batch assays at 37 °C, assessing methane (CH4) production, inhibition dynamics, microbial community shifts, and predicted functional responses inferred from taxonomic profiles. The mixture containing 50% hydrolysate (EXP-0.5) exhibited the least compromised performance, with a CH4 yield of 101.0 ± 4.2 mL CH4/gVSadded and a reduced lag phase (λ = 1.7 d). Increasing hydrolysate proportions intensified inhibitory conditions, with FAN concentrations exceeding 500 mg/L, acetic acid reaching 2448 mg/L, and p-cresol concentrations surpassing 280 mg/L. These conditions may have constrained key oxidation steps and, consequently, contributed to reduced CH4 production. Despite these stresses, Methanothrix remained the dominant methanogen, suggesting a persistent predominance of acetoclastic methanogenesis, albeit with reduced functional efficiency. Functional predictions for EXP-0.5 suggested a higher representation of pathways related to the citrate cycle, carbohydrate, and amino acid metabolism, implying a potential for sustained energy flux and adaptive responses to ammonia stress. Overall, the results infer that moderate hydrolysate incorporation can attenuate, but not eliminate, inhibition of SE-treated BSG during AD. Therefore, integrated strategies in lignocellulosic biorefinery schemes using SE hydrolysates are required to balance the benefits of enhanced solubilization with microbial metabolic resilience and long-term process stability in AD systems.
Palavras-chave: Lignocellulosic biomass
Steam explosion pretreatment
Anaerobic digestion inhibition
Functional metabolic pathways
MiDAS_g_606
Biomassa lignocelulósica
Pré-tratamento por explosão a vapor
Inibição da digestão anaeróbia
Vias metabólicas funcionais
ISSN: 1873-2976
Digital Object Identifier: https://doi.org/10.1016/j.biortech.2026.134624
Tipo do material: Artigo de periódico
Acesso: openAccess
Aparece nas coleções:Artigo em periódico indexado (CNPAT)


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