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Low-lignin mutant biomass resources: Effect of compositional changes on ethanol yield

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바이오화학분류
    • 바이오플라스틱
      1. 플라스틱
    • 바이오정밀화학
      1. 용매
      2. 화학제품
      3. 연료
    • 화장품용 기능성소재
      1. 계면활성제⁄증점제
    • 의료용 화학소재
      1. 식품첨가제
논문

Low-lignin mutant biomass resources: Effect of compositional changes on ethanol yield

학술지

Industrial crops and products

저자명

Yadhu N. Guragain; K.M. Ganesh; Sunil Bansal; R. Sai Sathish; Nageshwara Rao

초록

Low-lignin content bmr (Brown Mid-Rib)-mutant forage sorghum (Sorghum bicolor) grown at Riley and Doniphan counties (Kansas, USA) were compared with wild type high-lignin content forages to evaluate the effect of reduced lignin content in biomass on bioethanol production. Sorghum bagasse (Sorghum bicolor), wheat straw (Triticum aestivum), switchgrass (Panicum virgatum) and miscanthus (Miscanthus giganteus) were used as wild type forages. Ground biomass samples were pretreated with 2% sodium hydroxide at 121<SUP>o</SUP>C for 30min followed by enzymatic hydrolysis using cellulase complex and &beta;-glucosidase at high solid loading (20%, W/V), and the sugars released were fermented using Saccharomyces cerevisiae. Lignin content of all types of biomass was reduced to statistically equal levels (2-4%) after alkali pretreatment irrespective of their initial lignin content. However, saccharification efficiency of the pretreated biomass samples varied significantly from each other and showed a weak relationship between saccharification efficiency and total lignin content in raw and/or pretreated biomass. These results indicated that the reduced total lignin content in bmr-mutant crops does not necessarily benefit bioethanol production. Therefore, number of other factors, including lignin structure, crystallinity of cellulose and type of linkages in cellulose-hemicellulose-lignin complex must be further assessed to evaluate new crop lines for bioethanol production. The Fourier transform infrared spectroscopy (FTIR) peak intensities of ester linkages, aromatic C?C linkages and glycosidic linkages for raw, pretreated and hydrolyzed biomass samples are in agreement with the variation in saccharification efficiencies among biomass types. Ethanol yield was more than 95% of the maximum possible theoretical yield based on released glucose in all types of biomass, which showed that biomass after alkali pretreatment followed by washing with water does not inhibit S. cerevisiae, regardless of feedstock sources.

발행연도

2014

발행기관

Elsevier

ISSN

0926-6690

61

페이지

pp.1-8

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1 2023-12-11

논문; 2014-11-01

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