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Biodegradation of high molecular weight lignin under sulfate reducing conditions: lignin degradability and degradation by-products.

机译:高分子量木质素在硫酸盐还原条件下的生物降解:木质素降解性和降解副产物。

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摘要

This study is designed to investigate the biodegradation of high molecular weight (HMW) lignin under sulfate reducing conditions. With a continuously mesophilic operated reactor in the presence of co-substrates of cellulose, the changes in HMW lignin concentration and chemical structure were analyzed. The acid precipitable polymeric lignin (APPL) and lignin monomers, which are known as degradation by-products, were isolated and detected. The results showed that HMW lignin decreased and showed a maximum degradation capacity of 3.49 mg/l/day. APPL was confirmed as a polymeric degradation by-product and was accumulated in accordance with HMW lignin reduction. We also observed non-linear accumulation of aromatic lignin monomers such as hydrocinnamic acid. Through our experimental results, it was determined that HMW lignin, when provided with a co-substrate of cellulose, is biodegraded through production of APPL and aromatic monomers under anaerobic sulfate reducing conditions with a co-substrate of cellulose.
机译:这项研究旨在研究在硫酸盐还原条件下高分子量(HMW)木质素的生物降解。在存在纤维素共底物的情况下,使用连续中温操作的反应器,分析了HMW木质素浓度和化学结构的变化。分离并检测了酸可沉淀的聚合木质素(APPL)和木质素单体,它们被称为降解副产物。结果表明,HMW木质素下降,最大降解能力为3.49 mg / l / day。确认APPL为聚合物降解副产物,并且根据HMW木质素还原积累。我们还观察到芳族木质素单体(例如氢化肉桂酸)的非线性积累。通过我们的实验结果,可以确定当HMW木质素具有纤维素共底物时,可通过厌氧硫酸盐还原条件下与纤维素共底物的APPL和芳香族单体的生产来生物降解木质素。

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