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Sugarcane straw as a feedstock for xylitol production by Candida guilliermondii FTI 20037

机译:甘蔗秸秆作为木糖醇生产的原料Candida guilliermondii FTI 20037

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摘要

Sugarcane straw has become an available lignocellulosic biomass since the progressive introduction of the non-burning harvest in Brazil. Besides keeping this biomass in the field, it can be used as a feedstock in thermochemical or biochemical conversion processes. This makes feasible its incorporation in a biorefinery, whose economic profitability could be supported by integrated production of low-value biofuels and high-value chemicals, e.g., xylitol, which has important industrial and clinical applications. Herein, biotechnological production of xylitol is presented as a possible route for the valorization of sugarcane straw and its incorporation in a biorefinery. Nutritional supplementation of the sugarcane straw hemicellulosic hydrolyzate as a function of initial oxygen availability was studied in batch fermentation of Candida guilliermondii FTI 20037. The nutritional supplementation conditions evaluated were: no supplementation; supplementation with (NH4)2SO4, and full supplementation with (NH4)2SO4, rice bran extract and CaCl2·2H2O. Experiments were performed at pH 5.5, 30 °C, 200 rpm, for 48 h in 125 mL Erlenmeyer flasks containing either 25 or 50 mL of medium in order to vary initial oxygen availability. Without supplementation, complete consumption of glucose and partial consumption of xylose were observed. In this condition the maximum xylitol yield (0.67 g g−1) was obtained under reduced initial oxygen availability. Nutritional supplementation increased xylose consumption and xylitol production by up to 200% and 240%, respectively. The maximum xylitol volumetric productivity (0.34 g L−1 h−1) was reached at full supplementation and increased initial oxygen availability. The results demonstrated a combined effect of nutritional supplementation and initial oxygen availability on xylitol production from sugarcane straw hemicellulosic hydrolyzate.
机译:自从巴西逐步引入非燃烧性收成以来,甘蔗秸秆已成为可利用的木质纤维素生物质。除了将这种生物质保留在田间,它还可以用作热化学或生化转化过程中的原料。这使得将其并入生物精炼厂成为可能,该生物精炼厂的经济利润可以通过具有重要工业和临床应用的低价值生物燃料和高价值化学品(例如木糖醇)的综合生产来支持。在本文中,木糖醇的生物技术生产被提出为甘蔗秸秆的增值及其在生物精炼厂中掺入的可能途径。甘蔗假丝半纤维素水解产物的营养补给与初始氧气供应量的关系,已在念珠菌FTI 20037的分批发酵中进行了研究。补充(NH4)2SO4,并充分补充(NH4)2SO4,米糠提取物和CaCl2·2H2O。在125 mL装有25或50 mL培养基的锥形瓶中,在pH 5.5、30°C,200 rpm下进行48 h实验,以改变初始氧气的利用率。在不补充的情况下,观察到葡萄糖的完全消耗和木糖的部分消耗。在这种条件下,在降低初始氧气供应量的情况下可获得最大木糖醇产量(0.67 g g -1 )。营养补充分别使木糖消耗和木糖醇产量分别增加了200%和240%。完全补充并增加初始氧气供应量时,木糖醇的最大生产率为0.34 g L -1 h -1 。结果表明营养补充和初始氧气供应对甘蔗秸秆半纤维素水解产物生产木糖醇的综合作用。

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