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水解预处理方法提高从农业工业废物生产生物丁醇。

Hydrolytic pre-treatment methods for enhanced biobutanol production from agro-industrial wastes.

机构信息

Institut national de la recherche scientifique, Centre - Eau Terre Environnement, 490, Rue de la Couronne, Québec G1K 9A9 Canada.

Institut national de la recherche scientifique, Centre - Eau Terre Environnement, 490, Rue de la Couronne, Québec G1K 9A9 Canada; University of the Basque Country (UPV/EHU), Department of Chemical and Environmental Engineering, University College of Engineering of Vitoria/Gasteiz, Nieves Cano 12, 01006 Vitoria/Gasteiz, Spain.

出版信息

Bioresour Technol. 2018 Feb;249:673-683. doi: 10.1016/j.biortech.2017.09.132. Epub 2017 Oct 5.

Abstract

Brewery industry liquid waste (BLW), brewery spent grain (BSG), apple pomace solid wastes (APS), apple pomace ultrafiltration sludge (APUS) and starch industry wastewater (SIW) have been considered as substrates to produce biobutanol. Efficiency of hydrolysis techniques tested to produce fermentable sugars depended on nature of agro-industrial wastes and process conditions. Acid-catalysed hydrolysis of BLW and BSG gave a total reducing sugar yield of 0.433 g/g and 0.468 g/g respectively. Reducing sugar yield from microwave assisted hydrothermal method was 0.404 g/g from APS and 0.631 g/g from APUS, and, 0.359 g/g from microwave assisted acid-catalysed SIW dry mass. Parameter optimization (time, pH and substrate concentration) for acid-catalysed BLW hydrolysate utilization using central composite model technique produced 307.9 g/kg glucose with generation of inhibitors (5-hydroxymethyl furfural (20 g/kg), furfural (1.6 g/kg), levulinic acid (9.3 g/kg) and total phenolic compound (0.567 g/kg)). 10.62 g/L of acetone-butanol-ethanol was produced by subsequent clostridial fermentation of the substrate.

摘要

啤酒厂废液(BLW)、啤酒糟(BSG)、苹果渣固体废弃物(APS)、苹果渣超滤污泥(APUS)和淀粉工业废水(SIW)已被认为是生产生物丁醇的底物。为生产可发酵糖而测试的水解技术的效率取决于农业工业废物的性质和工艺条件。BLW 和 BSG 的酸催化水解分别得到 0.433 g/g 和 0.468 g/g 的总还原糖产量。微波辅助水热法从 APS 中得到 0.404 g/g 和从 APUS 中得到 0.631 g/g 的还原糖产量,从微波辅助酸催化 SIW 干物质中得到 0.359 g/g。利用中心复合模型技术对酸催化 BLW 水解产物的利用进行参数优化(时间、pH 值和底物浓度),产生了 307.9 g/kg 的葡萄糖,同时产生了抑制剂(5-羟甲基糠醛(20 g/kg)、糠醛(1.6 g/kg)、乙酰丙酸(9.3 g/kg)和总酚类化合物(0.567 g/kg))。随后对底物进行梭菌发酵,生产出 10.62 g/L 的丙酮丁醇乙醇。

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