• The structure of lignocellulose makes it hard to be degraded.

    木质纤维素结构导致其不易降解。

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  • Efficient use of xylose is the basis for using lignocellulose completely.

    木糖有效利用木质纤维素利用基础

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  • Study on the specific adsorption of catechin gallates by cedar lignocellulose.

    杉树木质纤维素对酯儿茶素类选择性吸附研究

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  • The lignocellulose biomass from plant bioresources can be utilized in many ways.

    植物生物资源的木质纤维素生物质可以许多方面

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  • Lignocellulose material are the most abundant renewable organic resource on the earth.

    木质纤维素地球充分可更新有机资源

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  • Technique of microbial pure culture can not resolve the puzzle of lignocellulose degradation.

    微生物培养技术一直没有解决天然木质纤维素的分解难题

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  • The production of alcohol from lignocellulose is an effective way to improve energy structure.

    利用木质纤维素制备乙醇解决能源结构有效方法

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  • It has special requirement in nutrient, and the decomposition ability to lignocellulose was weaker.

    红菇对培养基的营养特殊要求,其分解木质纤维素的能力弱。

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  • Lignocellulose converted to bioethanol is currently a hot subject in bioenergy conversion research.

    木质纤维素转化乙醇生物质能源转化过程中研究的热点

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  • For the conversion of lignocellulose into fuel ethanol by microorganisms is being studied intensively.

    利用微生物将木质纤维素转化乙醇成为当前研究热点。

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  • The pretreatment of lignocellulose is a critical step in the production of fuel ethanol by lignocellulosic materials.

    纤维质物料预处理木质纤维素原料生产燃料乙醇关键步骤

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  • The main cell wall proteins of plant and the potential effects on enzymatic hydrolysis of lignocellulose are reviewed.

    植物自身细胞壁蛋白活性出发来研究木质纤维素的解,为研究其酶解机制高效酶解方法提供了新思路。

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  • For its distinct merits, enzymatic hydrolysis of lignocellulose was important, and was extensively researched and adopted.

    目前木质纤维素水解具有明显优势而受到重视普遍研究采用。

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  • The results show that the process of biodegradation of lignocellulose is actually the simultaneous saccharification and fermentation.

    发现发酵过程中蜡样芽孢杆菌菌体产酶过程也就是木质纤维素降解糖化过程。

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  • In the whole process of cultivation, 79.86% car-bon source for the growth and development of the fungus originated from lignocellulose.

    且就整个栽培过程而言,姬松茸生长发育所需要79.86%来自木质纤维素

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  • Each is made of chains of smaller molecules, and all three are often bound together in a complex called lignocellulose, particularly in wood.

    他们都一系列更小分子组成它们三种合起来被称为木质纤维素尤其是木头

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  • Lignocelluose is the most abundant renewable resources in the world, and cellulase is the key of developing and applying lignocellulose.

    木质纤维素世界上丰富可再生性资源开发利用木质纤维素关键就是纤维素酶。

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  • The following hydrolysis reaction can be carried out under the homogeneous phase condition for the dissolving of the lignocellulose biomass.

    溶解生物质形成均“生物质溶液”对于水解和预处理非常重要

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  • The content of the crystalline fraction in lignocellulose depends on the lignin removal and increases with the decrease of the lignin content.

    研究确定,浆结晶纤维素含量取决于素脱出程度随着木素含量降低而增加

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  • Presently, the pretreatment methods of lignocellulose covered physical method, chemical method, physical & chemical method, and biological method.

    目前木质纤维素原料预处理方法主要有物理化学法、物理化学法、生物法。

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  • The results showed that the differences of the lignocellulose content at different layers of the compost were not significant at the end of the cultivation;

    结果表明栽培结束时,菌袋中不同木质纤维素含量差异不大

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  • The essential technique in the ethanol fermentation from dilute-acid lignocellulose hydrolysates is to obtain the strains of tolerant ethanol and inhibitors.

    在对木质纤维素稀酸水解液进行乙醇发酵中,发酵抑制剂耐高浓度乙醇菌种非常重要

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  • The effects of extracellular enzymes on the lignocellulose degradation and the succession of microbial community in agricultural waste composts were studied.

    最后,研究胞外农业废物堆肥木质纤维素降解微生物群落演替影响。

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  • The batch-fermentation and fed-batch fermentation of dilute-acid lignocellulose hydrolysates to ethanol using different mixed immobilized cells have been studied.

    木质纤维素稀酸水解液进行乙醇发酵中,耐发酵抑制剂耐高浓度乙醇的菌种非常重要。

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  • Wood-plastics composites are a kind of new material, which are formed by wood, wood fiber or other lignocellulose fibers with various plastics in different combining paths.

    复合材料是以木材各种木质纤维素纤维材料为基本体,通过塑料不同复合途径形成新型材料

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  • The results revealed that the extracellular protein contents of the culture and the degradation rale of the lignocellulose were increased gradually during cultivation time;

    结果表明,在整个培养期间培养物胞外蛋白含量木质纤维素降解逐渐升高;酶活性变化较明显;

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  • The results revealed that the extracellular protein contents of the culture and the degradation rale of the lignocellulose were increased gradually during cultivation time;

    结果表明,在整个培养期间培养物胞外蛋白含量木质纤维素降解逐渐升高;酶活性变化较明显;

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