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首页> 外文期刊>BioMed research international >Production of Ethanol from Sugars and Lignocellulosic Biomass byThermoanaerobacterJ1 Isolated from a Hot Spring in Iceland
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Production of Ethanol from Sugars and Lignocellulosic Biomass byThermoanaerobacterJ1 Isolated from a Hot Spring in Iceland

机译:分离自冰岛温泉的嗜热厌氧杆菌J1从糖和木质纤维素生物质生产乙醇

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Thermophilic bacteria have gained increased attention as candidates for bioethanol production from lignocellulosic biomass. This study investigated ethanol production byThermoanaerobacterstrain J1 from hydrolysates made from lignocellulosic biomass in batch cultures. The effect of increased initial glucose concentration and the partial pressure of hydrogen on end product formation were examined. The strain showed a broad substrate spectrum, and high ethanol yields were observed on glucose (1.70 mol/mol) and xylose (1.25 mol/mol). Ethanol yields were, however, dramatically lowered by adding thiosulfate or by cocultivating strain J1 with a hydrogenotrophic methanogen with acetate becoming the major end product. Ethanol production from 4.5 g/L of lignocellulosic biomass hydrolysates (grass, hemp stem, wheat straw, newspaper, and cellulose) pretreated with acid or alkali and the enzymes Celluclast and Novozymes 188 was investigated. The highest ethanol yields were obtained on cellulose (7.5 mM·g−1) but the lowest on straw (0.8 mM·g−1). Chemical pretreatment increased ethanol yields substantially from lignocellulosic biomass but not from cellulose. The largest increase was on straw hydrolysates where ethanol production increased from 0.8 mM·g−1to 3.3 mM·g−1using alkali-pretreated biomass. The highest ethanol yields on lignocellulosic hydrolysates were observed with hemp hydrolysates pretreated with acid, 4.2 mM·g−1.
机译:作为从木质纤维素生物质生产生物乙醇的候选物,嗜热细菌越来越受到关注。这项研究调查了热厌氧菌株J1在分批培养中由木质纤维素生物质制成的水解产物生产乙醇的情况。考察了增加的初始葡萄糖浓度和氢分压对最终产物形成的影响。该菌株显示出较宽的底物谱,并且在葡萄糖(1.70 mol / mol)和木糖(1.25 mol / mol)上观察到高乙醇产率。然而,通过添加硫代硫酸盐或通过将菌株J1与氢营养型产甲烷菌共培养,而乙酸盐成为主要最终产物,乙醇的收率大大降低。研究了用酸或碱以及酶Celluclast和Novozymes 188预处理的4.5μg/ L木质纤维素生物质水解产物(草,大麻茎,麦草,报纸和纤维素)中的乙醇产量。纤维素的乙醇产量最高(7.5 mM·g-1),秸秆的乙醇产量最低(0.8 mM·g-1)。化学预处理基本上从木质纤维素生物质中增加了乙醇产量,但没有增加纤维素。增加最大的是秸秆水解产物,其中使用碱预处理的生物质将乙醇的产量从0.8 mM·g-1增加到3.3 mM·g-1。用4.2 mM·g-1酸预处理的大麻水解液观察到木质纤维素水解液的乙醇产量最高。

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