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第一代和第二代生物燃料的整合:从麦粒和秸秆中发酵生产氢气。

Integration of first and second generation biofuels: fermentative hydrogen production from wheat grain and straw.

机构信息

Wageningen UR Food & Biobased Research, PO Box 17, 6700 AA Wageningen, The Netherlands.

出版信息

Bioresour Technol. 2013 Jan;128:345-50. doi: 10.1016/j.biortech.2012.09.083. Epub 2012 Oct 30.

Abstract

Integrating of lignocellulose-based and starch-rich biomass-based hydrogen production was investigated by mixing wheat straw hydrolysate with a wheat grain hydrolysate for improved fermentation. Enzymatic pretreatment and hydrolysis of wheat grains led to a hydrolysate with a sugar concentration of 93.4 g/L, while dilute-acid pretreatment and enzymatic hydrolysis of wheat straw led to a hydrolysate with sugar concentration 23.0 g/L. Wheat grain hydrolysate was not suitable for hydrogen production by the extreme thermophilic bacterium Caldicellulosiruptor saccharolyticus at glucose concentrations of 10 g/L or higher, and wheat straw hydrolysate showed good fermentability at total sugar concentrations of up to 10 g/L. The mixed hydrolysates showed good fermentability at the highest tested sugar concentration of 20 g/L, with a hydrogen production of 82-97% of that of the control with pure sugars. Mixing wheat grain hydrolysate with wheat straw hydrolysate would be beneficial for fermentative hydrogen production in a biorefinery.

摘要

研究了基于木质纤维素和富含淀粉的生物质的氢气生产的整合,通过混合小麦秸秆水解物和小麦谷物水解物来改善发酵。小麦籽粒的酶预处理和水解得到了糖浓度为 93.4 g/L 的水解物,而稀酸预处理和小麦秸秆的酶水解得到了糖浓度为 23.0 g/L 的水解物。当葡萄糖浓度为 10 g/L 或更高时,小麦籽粒水解物不适合由极端嗜热细菌 Caldicellulosiruptor saccharolyticus 用于生产氢气,而小麦秸秆水解物在总糖浓度高达 10 g/L 时表现出良好的发酵性。在最高测试糖浓度为 20 g/L 时,混合水解物表现出良好的发酵性,其氢气产量为纯糖对照的 82-97%。将小麦籽粒水解物与小麦秸秆水解物混合,将有利于在生物精炼厂中进行发酵性氢气生产。

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