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首页> 外文期刊>The Open Atmospheric Science Journal >Biobutanol Production from Plant Biomass
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Biobutanol Production from Plant Biomass

机译:生物灭菌醇生产生物量

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摘要

Microbiological conversion of biosphere renewable resources to produce useful products, in particular biofuels, is currently one of the pressing problems of biotechnology. To establish a microbiological production of biobutanol at an industrial scale, strains with high-yield solvent production on plant biomass as a cheap substrate are needed.This paper summarizes the main outcomes of the authors’ original research focused on a) obtaining new butanol-producing strains of Clostridium genus, b) testing different sources of non-food raw material as a substrate for fermentation. A comparison of different methods of biomass pretreatment and their efficiency for the accumulation of butanol in the liquid medium is also reported.In particular, the efficiency of butanol production by C. acetobutylicum strains isolated or mutagenized by the authors on a) ground green rapeseed, switchgrass, sweet sorghum, soybean, wheat biomass; b) components of switchgrass after thermobaric hydrolysis and c) paper mill sludge from the pulp as substrates is reported. This paper also highlights the progress made concerning substrate pre-treatment and optimization of cultivation conditions to increase butanol production. Finally, future directions to optimize the different biotechnological steps leading to butanol production are discussed.
机译:生物圈可再生资源的微生物转化为生产有用的产品,特别是生物燃料,目前是生物技术的压迫问题之一。为了建立产业规模的生物灭菌醇的微生物生产,需要在植物生物质上具有高产溶剂生产作为廉价基材的菌株。本文总结了作者对A的原始研究的主要成果获得了新的丁醇生产Clostridium Genus,b)作为发酵的基材测试不同食物原料的不同来源。还报道了不同方法的比较液体介质中丁醇积累的效率。特别地,由C.乙酰丁基菌株的丁醇产量的效率由作者在A)地面绿色油菜籽上分离或诱变。 Switchgrass,甜高粱,大豆,小麦生物量; b)报道作为纸浆的热致水解后热腐败水解和c)纸碎片碎片的组分。本文还突出了对丁醇产量增加丁醇产量的底物预处理和优化的进展。最后,讨论了优化导致丁醇生产的不同生物技术步骤的未来方向。

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