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含树皮的蒸汽爆破软木半纤维素水解产物的糖回收率和发酵性。

Sugar recovery and fermentability of hemicellulose hydrolysates from steam-exploded softwoods containing bark.

作者信息

Boussaid A, Cai Y, Robinson J, Gregg D J, Nguyen Q, Saddler J N

机构信息

Chair of Forest Products Biotechnology, Department of Wood Science, University of British Columbia, Vancouver, BC V6T 1Z4, Canada.

出版信息

Biotechnol Prog. 2001 Sep-Oct;17(5):887-92. doi: 10.1021/bp010092b.

Abstract

The hemicellulose sugar recovery and ethanol production obtained from SO2-catalyzed steam explosion of a mixed white fir (70%) and ponderosa pine (30%) feedstock containing bark (9% dry weight/dry weight) was assessed. More than 90% of the available hemicellulose sugars could be recovered in the hydrolysate obtained after steam explosion at 195 degrees C, 2.38 min, and 3.91% SO2, with 59% of the original hemicellulose sugars detected in a monomeric form. Despite this high sugar recovery, this hydrolysate showed low ethanol yield (64% of theoretical yield) when fermented with a spent sulfite liquor-adapted strain of Saccharomyces cerevisiae. In contrast, most hydrolysates prepared at higher steam explosion severity showed comparable or higher ethanol yields. Furthermore, the hydrolysates prepared from bark-free feedstock showed better fermentability (87% of theoretical yield) despite containing higher concentration of known inhibitors. The ethanol yield from the hydrolysate prepared from a bark-containing wood sample could be improved to 81% by an extra stage acid hydrolysis (121 degrees C for 1 h in 3% sulfuric acid). This extra stage acid hydrolysis and steam explosion at higher severity conditions seem to improve the fermentability of the hydrolysates by transforming certain inhibitory compounds present in the hydrolysates prepared from the bark-containing feedstock and thus lowering their inhibitory effect on the yeast used for the ethanol fermentation.

摘要

评估了从含有树皮(干重/干重为9%)的白云杉(70%)和黄松(30%)混合原料的SO₂催化蒸汽爆破中获得的半纤维素糖回收率和乙醇产量。在195℃、2.38分钟和3.91% SO₂条件下进行蒸汽爆破后,水解产物中可回收超过90%的可用半纤维素糖,其中59%的原始半纤维素糖以单体形式被检测到。尽管糖回收率很高,但用适应亚硫酸盐废液的酿酒酵母菌株发酵时,这种水解产物的乙醇产量较低(为理论产量的64%)。相比之下,在更高蒸汽爆破强度下制备的大多数水解产物显示出相当或更高的乙醇产量。此外,由无树皮原料制备的水解产物尽管含有较高浓度的已知抑制剂,但显示出更好的发酵能力(为理论产量的87%)。通过额外的酸水解阶段(在3%硫酸中于121℃水解1小时),由含树皮木材样品制备的水解产物的乙醇产量可提高到81%。这种额外的酸水解阶段以及在更高强度条件下的蒸汽爆破似乎通过转化含树皮原料制备的水解产物中存在的某些抑制性化合物,从而降低其对用于乙醇发酵的酵母的抑制作用,提高了水解产物的发酵能力。

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