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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Enhancing alfalfa conversion efficiencies for sugar recovery and ethanol production by altering lignin composition
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Enhancing alfalfa conversion efficiencies for sugar recovery and ethanol production by altering lignin composition

机译:通过改变木质素组成提高苜蓿转化效率,以提高糖回收和乙醇生产

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摘要

Alfalfa (Medicago sativa L.) biomass was evaluated for biochemical conversion into ethanol using dilute-acid and ammonia pretreatments. The two alfalfa lines compared were a reduced S-lignin transgenic cultivar generated through down regulation of the caffeic acid O-methyltransferase gene and a wild-type control. Both were harvested at two maturities. All the samples had similar carbohydrate contents including a mean composition of 316. g glucan and 497. g total neutral carbohydrates per kg dry biomass, which corresponds to a theoretic ethanol yield of 382. l/ton. Ethanol yields for alfalfa stems pretreated with dilute-acid were significantly impacted by harvest maturity and lignin composition, whereas when pretreated with dilute-ammonia, yield was solely affected by lignin composition. Use of a recombinant xylose-fermenting Saccharomyces strain, for converting the ammonia pretreated alfalfa samples, further increased ethanol yields. Ethanol yields for the xylose-fermenting yeast were 232-278. l/ton and were significantly enhanced for the reduced S lignin cultivars.
机译:使用稀酸和氨预处理对苜蓿(Medicago sativa L.)生物质进行了生化转化为乙醇的评估。比较的两个苜蓿品系是通过咖啡酸O-甲基转移酶基因的下调和野生型对照产生的减少的S-木质素转基因品种。两种都是在两个成熟期收获的。所有样品均具有相似的碳水化合物含量,包括每千克干生物质平均316. g葡聚糖和497 g总中性碳水化合物的平均组成,这相当于理论乙醇产量382. l /吨。稀酸预处理对苜蓿茎秆的乙醇收率受收获成熟度和木质素组成的影响很大,而稀氨水预处理对乙醇产量的影响仅受木质素组成的影响。使用重组木糖发酵酵母菌株转化氨预处理的苜蓿样品,可进一步提高乙醇产量。木糖发酵酵母的乙醇产量为232-278。升/吨,并且对于减少的木质素品种显着增强。

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