木质素
纤维素
稻草
化学
细菌
纤维
食品科学
制浆造纸工业
降级(电信)
稻草
生物化学
生物
有机化学
计算机科学
工程类
无机化学
电信
遗传学
作者
Jinghong Wang,Wei Zhang,Chenying Wu,Yanhua Hong,Gui‐Nan Shen,Weiwei Wang,Hongzhi Tang,Kazuhiro Mochidzuki,Zongjun Cui,Aman Khan,Weidong Wang
标识
DOI:10.1016/j.scitotenv.2024.172386
摘要
Fiber film have received widespread attention due to its green friendliness. We can use microorganisms to degrade lignin in straw to obtain cellulose and make fiber films. Herein, a group of high-temperature (50 °C) lignin degrading bacterial consortium (LDH) was enriched and culture conditions for lignin degradation were optimized. Combined with high-throughput sequencing technology, the synergistic effect of LDH-composited bacteria was analyzed. Then LDH was used to treat rice straw for the bio-pulping experiment. The results showed that the lignin of rice straw was degraded 32.4 % by LDH at 50 °C for 10 d, and after the optimization of culture conditions, lignin degradation rate increased by 9.05 % (P < 0.001). The bacteria that compose in LDH can synergistically degrade lignin. Paenibacillus can encode all lignin-degrading enzymes present in the LDH. Preliminary tests of LDH in the pulping industry have been completed. This study is the first to use high temperature lignin degrading bacteria to fabricate fiber film.
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