• 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

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

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  • 在沼气发酵中能促进纤维素分解乙酸形成转化提高脱氢活力

    Zinc could promote the decomposition of cellulose, the formation and transformation of acetic acid, increase the activity of dehydrogenase.

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  • 可以将纤维素纤维素分解分子。

    Its enzymes decompose cellulose and hemicellulose into sugar monomers.

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  • 纤维素很难分解的。

    Cellulose is hard to break down.

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  • 工程师尝试蒸汽纤维素分解有用的

    Engineers have tried using steam, acids and enzymes to break cellulose into useful sugars.

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  • 其中一些细节阐释地美,比如科学家如何设法合成那些可分解纤维素酶以制造乙醇,这项科技攻关难度极大。

    Some of the details are nice, such as the work of scientists trying to create enzymes to do the difficult job of breaking cellulose down to make ethanol.

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  • 基因改性细菌或者真菌生产的,白蚁唾沫白蚁因为能分解纤维素臭名昭著。

    The enzymes are usually made by gene-modified bacteria or fungi and resemble the saliva of termites, which is notoriously good at dissolving cellulose.

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  • 有的是纯粹化学,将纤维素分解一种气体混合物然后将其合成更为有用的东西

    And some go for pure chemistry, breaking the cellulose down into a gaseous mixture of hydrogen and carbon monoxide before building it back up into something more useful.

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  • 另一优势在于可以充分分解纤维素,防止废弃的纤维素——例如草秆木屑——造成生物污染。

    Another advantage of the fungus is its ability to eat up cellulose, the compound that makes up much of the organic waste that is currently discarded, such as stalks and sawdust.

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  • 印第安纳州普大学(Purdue University)南希.(Nancy Ho)已经研制一种途径使得酵母细胞能够发酵那些分解植物纤维素得的,而天然的酵母是不能发酵这些纤维素的

    Nancy Ho, of Purdue University, in Indiana, has already worked out a way to enable yeast cells to ferment the sugars produced by breaking down cellulosewhich natural yeast cannot do.

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  • 这些称为分解纤维素真菌

    Those are called decay fungi or cellulolytic fungi.

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  • 滤纸平板结合摇床培养筛选到2纤维素分解能力较强混合m 1M2

    Two mixing cultures of cellulose decomposing microorganisms, M1 and M2 were isolated by filter paper plating and shaking method.

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  • 这些微小细菌原生动物可分解纤维素可吸收营养

    These microscopic bacteria and protozoa break down cellulose and fiber into digestible nutrients.

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  • 自生固氮菌纤维素分解之间相互促进有利于有机质积累

    Rhizobacter and cellulose decomposing bacteria promoted each other, benefiting organic matter accumulation.

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  • 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。

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

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  • 纤维素分解作为发酵微生物菌群一个重要组成部分畜禽粪便资源化过程中得到了广泛应用。

    Cellulose decomposing microorganisms, as an important part of them, were found to be very useful in the utilization of livestock and poultry manure.

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  • 根据分解图谱计算出纤维素相对结晶度大小等参数。

    Relative crystallinity and size Of crystalline regions were calculated by means of the decomposed diffraction patterns.

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  • 利用纤维素分解固态发酵法降解变性脱脂豆粕中的纤维素研究其对提高豆粕中蛋白质的作用。

    The solid state fermentation with active cellulase producing strains in increasing the rate of protein dissolved of the high denatured defatted soybean cake was discussed in this thesis.

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  • CMC糖化力法纤维素减重法探讨一组高效稳定纤维素分解细菌复合系MC1条件

    The conditions of cellulase production of microbial consortia MC1 capable of degrading cellulose with high efficiency were investigated with CMC saccharogenic powder and gravimetry.

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  • 纤维素生物产量峰值最高纤维素生物油热稳定性差,高温时挥发分分解最明显;

    The bio-oil yield from cellulose is the highest of the three fractions, but it is lest stable.

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  • 纤维素分解联合固氮菌的接种配比,研究了混合培养对滤纸分解影响

    The effect of cellulose-decomposing fungus(CDF) mixed with associative nitrogen-fixing bacterium(ANFB) to cellulose-decomposing has been studied.

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  • 研究表明容易纤维素分解形成一个不同烘烤香气

    Research shows that its hemicellulose breaks down more easily, forming a different spectrum of toasty aromas.

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  • 根据森林凋落底物性质不同,将凋落物分解分为纤维素分解酶类木质素分解酶类、蛋白水解酶类磷酸酶类

    According to the properties of litter substrate, the enzymes are classified into cellulolytic enzymes, ligninolytic enzymes, proteolytic enzymes and phosphatase.

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  • 纤维素地球蕴藏量丰富再生性碳水化合物,它们纤维素分解酵素水解成为葡萄糖,而提供作为生产能源之

    Cellulose is the most abundant renewable carbohydrate on earth. Cellulases can hydrolyze cellulose into glucose thus it has the potential to be used for the production of biomass and biofuel.

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  • 因为超过一半工业酵素反应需要高温环境进行,因此来自细菌的热稳定性纤维素分解在工业应用上具有潜在的利用价值

    Because of more than half of the industrial enzymatic reactions were operated under high temperature, thermostable cellulases from bacteria are potentially valuable for industrial applications.

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  • 因为超过一半工业酵素反应需要高温环境进行,因此来自细菌的热稳定性纤维素分解在工业应用上具有潜在的利用价值

    Because of more than half of the industrial enzymatic reactions were operated under high temperature, thermostable cellulases from bacteria are potentially valuable for industrial applications.

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