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Ethanol fermentation characteristics of Pichia stipitis yeast from sugar beet pulp hydrolysate: Use of new detoxification methods

机译:甜菜浆水解产物中毕赤酵母酵母的乙醇发酵特性:新解毒方法的应用

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This study investigates the ethanol production characteristics of adapted Pichia stipitis yeast in growth media containing various sugar sources, namely, synthetic xylose, sulfuric acid hydrolyzed sugar beet pulp and sugar beet pulp hydrolysate-synthetic xylose mixture. In synthetic growth media, the xylose concentration range of 10-75 g l(-1) did not exhibit substrate inhibition and at an initial xylose concentration of 75.1 g l(-1), 37.1 g l(-1) ethanol was obtained after 75 h with productivity of 0.494 g l(-1) h(-1). Prior to fermentation, the inhibitory components of the sugar beet pulp hydrolysate was detoxified using three different treatments: commercial activated charcoal with overliming, activated charcoal obtained from sugar beet pulp with overliming and fly ash treatment. Phenolics and furan compounds were significantly adsorbed with activated charcoal treatments and overliming with CaO showed to enhance their reduction. A significant amount of furan was removed by fly ash treatment due to its high CaO content. Neither case demonstrated a noticeable decrease in acetic acid concentration. Ethanol concentrations and productivities ranged between 10.8-12.2 g l(-1) and 0.119-0.286 g l(-1) h(-1) respectively, over 50-121 h, in the detoxified hydrolysate media which contained 48.2 g l(-1) of total reducing sugar. Increase in inoculum concentration also improved the ethanol production yield. (C) 2015 Elsevier Ltd. All rights reserved.
机译:这项研究调查了适应毕赤酵母在含有各种糖源的生长培养基中的乙醇生产特性,这些糖源包括合成木糖,硫酸水解的甜菜浆和甜菜浆水解产物-合成木糖混合物。在合成生长培养基中,木糖浓度范围为10-75 gl(-1)不会表现出底物抑制作用,并且在初始木糖浓度为75.1 gl(-1)时,经过75 h的操作后,可获得37.1 gl(-1)乙醇生产率为0.494 gl(-1)h(-1)。在发酵之前,使用三种不同的处理对甜菜果肉水解产物的抑制成分进行解毒:带有超高限度的商业活性炭,带有超高限度的甜菜粕获得的活性炭和飞灰处理。活性炭处理可显着吸附酚类和呋喃类化合物,而CaO过量添加可增强其还原作用。由于其高的CaO含量,可通过粉煤灰处理除去大量的呋喃。两种情况均未显示出乙酸浓度的显着降低。在含有48.2 gl(-1)的解毒水解产物介质中,经过50-121 h乙醇浓度和生产率分别介于10.8-12.2 gl(-1)和0.119-0.286 gl(-1)h(-1)之间。总还原糖。接种物浓度的增加也提高了乙醇的产量。 (C)2015 Elsevier Ltd.保留所有权利。

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