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首页> 外文期刊>International Journal of Agricultural and Biological Engineering >Enhancing lignin degradation by Mn2+ ion supplementation to assist enzymatic hydrolysis of cellulose in a two-stage pretreatment of bamboo
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Enhancing lignin degradation by Mn2+ ion supplementation to assist enzymatic hydrolysis of cellulose in a two-stage pretreatment of bamboo

机译:通过补充Mn2 +离子来增强木质素降解,以协助竹子的两阶段预处理中纤维素的酶促水解

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Abstract: It is of great significance to reveal a key agent to improve the efficiency of conversion of lignocellulosic biomass to fermentable sugars for the production of bioethanol. This study investigated a two-stage pretreatment of bamboo comprising a microbial treatment using Ceriporiopsis sp. followed by a hydrothermal treatment to facilitate the process with Mn2+ as an accelerator. The effects of Mn2+ nutritional addition on ligninolytic activity, lignin degradation, total weight loss, pulp yield, sugar yield and sugars in the soluble fraction were examined. The results showed that the time required for the incubations supplemented with Mn2+ to achieve sufficient lignin degradation and sugar yield from both the pulp and soluble fractions was significantly shortened, whereas all three ligninolytic activities were significantly decreased. The enzyme activity varied according to the presence of Mn2+, although the amount and species of the expressed protein are similar. Considering the cost, microbial treatment with a one-time fed-batch supply of metal nutrition (MnSO4) was the most preferable contribution to hydrothermal pretreatment, resulting in 19.7% lignin degradation, 66.7% pulp yield and 26.1% sugar yield over a period of 21 d. It was proven that microbial treatment by solid state incubation with Mn2+ nutrition has the potential to be a low-cost, environmentally friendly alternative to chemical approaches. Keywords: hydrolysis, fungi, Mn2+ ion, pretreatment, bamboo, Ceriporiopsis sp. DOI: 10.3965/j.ijabe.20171003.2991 Citation: Liu J, Gan L H, Long M N. Enhancing lignin degradation by Mn2+ ion supplementation to assist enzymatic hydrolysis of cellulose in a two-stage pretreatment of bamboo. Int J Agric & Biol Eng, 2017; 10(3): 175–184.
机译:摘要:揭示提高木质纤维素生物质转化为可发酵糖生产生物乙醇效率的关键剂具有重要意义。这项研究调查了竹子的两阶段预处理,包括使用Ceriporiopsis sp。进行微生物处理。然后进行水热处理以促进以Mn2 +为促进剂的过程。研究了添加Mn2 +对木质素分解活性,木质素降解,总重量损失,纸浆产量,糖产量和可溶性级分中糖分的影响。结果表明,添加Mn2 +的培养物所需的时间显着缩短,以从果肉和可溶性部分中获得足够的木质素降解和糖产量,而所有三种木质素分解活性均显着降低。尽管表达的蛋白质的数量和种类相似,但酶活性随Mn2 +的存在而变化。考虑到成本,在一次水热预处理中,采用一次性补料分批供应金属营养(MnSO4)进行微生物处理是最可取的贡献,导致木质素降解19.7%,纸浆收率66.7%,糖收率26.1%。 21天事实证明,通过与Mn2 +营养物进行固态孵育进行微生物处理,可以成为化学方法的低成本,环境友好的替代方法。关键词:水解,真菌,Mn2 +离子,预处理,竹子,Ceriporiopsis sp。 DOI:10.3965 / j.ijabe.20171003.2991引用:Liu J,Gan L H,Long M N.通过Mn2 +离子补充促进木质素降解,以协助竹子的两阶段预处理中纤维素的酶促水解。国际农业与生物工程杂志,2017; 10(3):175-184。

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