半纤维素
木质纤维素生物量
木质素
化学
厌氧消化
分馏
纤维素
制浆造纸工业
微生物联合体
纤维素乙醇
食品科学
色谱法
生物化学
有机化学
甲烷
微生物
生物
细菌
工程类
遗传学
作者
Bikram Basak,Swapnil M. Patil,Ramesh Kumar,Geon-Soo Ha,Young-Kwon Park,Moonis Ali Khan,Krishna Kumar Yadav,Ahmed M. Fallatah,Byong‐Hun Jeon
标识
DOI:10.1016/j.biortech.2022.127034
摘要
Effective fractionation of lignocellulosic biocomponents of lignocellulosic biomass can increase its utilization in anaerobic digestion for high yield biomethane production. A hydrothermal process was optimized and integrated with a deep eutectic solvent (DES) pretreatment to preferentially fractionate hemicellulose, cellulose, and lignin in rice straw. The optimized hydrothermal process resulted in 96% hemicellulose solubilization at moderately low combined pretreatment severity (log S = 2.26), allowing increased hemicellulosic sugar recovery with minimal formation of inhibitory byproducts. Subsequent DES pretreatment resulted in highly bioaccessible cellulosic pulp, removing 81.3% of lignin that can be recovered and converted into value-added products. Anaerobic digestion of hemicellulosic fraction and cellulosic pulp using a microbial methanogenic consortium seed acclimatized to the lignocellulosic inhibitors resulted in a 33.4% higher yield of methane (467.84 mL g-1 VSinitial) than with anaerobic digester sludge seed. This integrated approach can facilitate and maximize the targeted utilization of different biocomponents through sustainable biorefining.
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