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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Combined simultaneous enzymatic saccharification and comminution (SESC) and anaerobic digestion for sustainable biomethane generation from wood lignocellulose and the biochemical characterization of residual sludge solid
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Combined simultaneous enzymatic saccharification and comminution (SESC) and anaerobic digestion for sustainable biomethane generation from wood lignocellulose and the biochemical characterization of residual sludge solid

机译:结合同时酶促酶糖化和粉碎(SESC)和木质木质纤维素的可持续生物甲烷的厌氧消化及残留污泥固体的生化特征

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摘要

Simultaneous enzymatic saccharification and comminution (SESC) was used for large-scale anaerobic digestion of wood lignocellulose to generate methane and unmodified lignin. During SESC, 10% aqueous mixture of powdered debarked wood from various species was subjected to bead milling with hydrolytic enzymes to generate particles below 1 mu m. This slurry was directly used as a cosubstrate for anaerobic digestion in a 500 L stirred-tank reactor. Temperature and hydraulic retention time (HRT) were maintained at 50 degrees C and 30 days, respectively. At stable operation periods, an average yield of 224 L of methane per kg of cedar was attained. Comparable yields were achieved with red pine, elm, oak, and cedar bark. High-throughput microbial analysis established the presence of a relevant community to support the elevated level of methane production. The stability of the unmodified lignin in anaerobic digestion was also confirmed, allowing for its recovery as an important by-product.
机译:同时酶促糖化和粉碎(SESC)用于大规模的木质木质纤维素消化以产生甲烷和未修饰的木质素。 在SESC期间,将来自各种物种的10%粉末状的去皮木水合物与水解酶进行珠粒研磨,以产生低于1μm的颗粒。 将该浆液直接用作500L搅拌罐反应器中的厌氧消化的囊性。 温度和液压保留时间(HRT)分别保持在50℃和30天。 在稳定的操作期间,达到了每千克雪松的224L甲烷的平均产率。 用红松,榆树,橡木和雪松树皮实现了可比产率。 高通量微生物分析建立了相关群落的存在,以支持甲烷生产水平升高。 还证实了未修饰的木质素在厌氧消化中的稳定性,允许其作为重要副产物的恢复。

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