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氯化铁预处理和表面活性剂增强甘蔗渣的酶水解。

Enhanced enzymatic hydrolysis of sugarcane bagasse with ferric chloride pretreatment and surfactant.

机构信息

College of New Energy and New Materials, Key Laboratory of Energy Plants Resource and Utilization, Ministry of Agriculture, College of Forestry and Landscape Architecture, South China Agricultural University, Guangzhou, Guangdong 510642, PR China; State Key Laboratory for Conservation and Utilization of Subtropical Agro-bioresources, Guangxi University, Nanning, Guangxi 530003, PR China.

College of New Energy and New Materials, Key Laboratory of Energy Plants Resource and Utilization, Ministry of Agriculture, College of Forestry and Landscape Architecture, South China Agricultural University, Guangzhou, Guangdong 510642, PR China.

出版信息

Bioresour Technol. 2017 Apr;229:96-103. doi: 10.1016/j.biortech.2017.01.013. Epub 2017 Jan 12.

Abstract

A FeCl pretreatment methodology was developed to convert raw sugarcane bagasse to highly digestible pretreated solid and selectively extract up to ∼100% of the hemicellulose from lignocellulosic biomass. FeCl pretreated solids yielded a quite high fermentable sugar yield compared to the native material. In addition, characterization of raw material and pretreated solid by X-ray diffraction (XRD), scanning electron microscopy (SEM), and thermogravimetric (TG) analysis was carried out to better understand how hemicellulose removal affected subsequent enzymatic hydrolysis. Furthermore, the addition of surfactants during enzymatic hydrolysis achieved higher glucose yields. 82.3% of glucose could be obtained with addition of BSA, combined with that generated during pretreatment process, the total glucose yield reached 42.2g/100g raw material, representing 93.8% of glucose in the raw sugarcane bagasse. The FeCl process offered the potential to co-produce xylose-derived and glucose-derived chemicals in the bio-refinery.

摘要

开发了一种 FeCl 预处理方法,将原甘蔗渣转化为可高度消化的预处理固体,并从木质纤维素生物质中选择性提取高达约 100%的半纤维素。与天然材料相比,FeCl 预处理固体的发酵糖产率相当高。此外,通过 X 射线衍射 (XRD)、扫描电子显微镜 (SEM) 和热重 (TG) 分析对原料和预处理固体进行了表征,以更好地了解半纤维素去除如何影响后续的酶解。此外,在酶解过程中添加表面活性剂可以获得更高的葡萄糖产率。添加 BSA 可获得 82.3%的葡萄糖,与预处理过程中产生的葡萄糖相结合,总葡萄糖产率达到 100g 原料 42.2g,占原甘蔗渣中葡萄糖的 93.8%。FeCl 工艺为生物精炼厂中同时生产木糖衍生和葡萄糖衍生化学品提供了潜力。

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