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Biological treatment of eucalypt spent sulphite liquors: A way to boost the production of second generation bioethanol

机译:桉树废亚硫酸盐溶液的生物处理:增加第二代生物乙醇产量的一种方法

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The fermentation of reducing sugars from hardwood (eucalypt) spent sulphite liquor (HSSL) into ethanol by Pichia (Scheffersomyces) stipitis is hindered by concomitant inhibitors of microbial metabolism. The conditions for the HSSL biological treatment step by Paecilomyces variotii were evaluated and optimised. Two different strategies of reactor operation were compared using single batch (B) and sequential batch reactor (SBR). Biological treatment of HSSL in the SBR revealed the best results with respect to the removal of microbial inhibitors. Also, most of inhibitory compounds, acetic acid, gallic acid, pyrogallol, amongst others, were removed from HSSL by P. variotii before the ethanol fermentation. The bio-detoxified HSSL was subjected to a successful fermentation by P. stipitis, attaining a maximum ethanol concentration of 2.4gL~(-1) with a yield of 0.24gethanolgsugars~(-1).
机译:伴随毕赤酵母(Scheffersomyces)壁球菌引起的还原糖从硬木(桉树)废亚硫酸盐溶液(HSSL)发酵为乙醇的过程​​受到微生物代谢抑制剂的阻碍。评估并优化了水痘拟青霉进行HSSL生物处理步骤的条件。比较了使用单批(B)和顺序批反应器(SBR)的两种不同的反应器操作策略。在SBR中对HSSL进行生物处理显示出去除微生物抑制剂方面的最佳结果。同样,在乙醇发酵之前,大多数抑制性化合物(乙酸,没食子酸,连苯三酚等)均已通过水痘假单胞菌从HSSL中去除。经过生物解毒的HSSL进行了毕赤酵母的成功发酵,最大乙醇浓度为2.4gL〜(-1),产量为0.24g乙醇糖〜(-1)。

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