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Producing carbohydrate-rich microalgal biomass grown under mixotrophic conditions as feedstock for biohydrogen production

机译:生产在混合营养条件下生长的富含碳水化合物的微藻生物质,作为生产生物氢的原料

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Three indigenous microalgae strains (Scenedesmus subspicatus GY-16, Chlorella vulgaris FSP-E, and Anistrodesmus gracilis GY-09) were evaluated for their ability to accumulate carbohydrates to subsequently serve as feedstock for biohydrogen production. The results of photoautotrophic growth show that among the three strains examined, C. vulgaris FSP-E displayed the highest biomass productivity (825.6 mg/L/d) and carbohydrate productivity (365.8 mg/L/d). Mixotrophic growth of C. vulgaris FSP-E with the addition of 2.0 g/l of sodium acetate further increased the biomass and carbohydrate productivity to 1022.3 mg/L/d and 498.5 mg/L/d, respectively. Moreover, operating photobioreactor on semi-batch mode enhanced the stability for prolonged incubation of the carbohydrate-rich C. vulgaris FSP-E and the biomass and carbohydrate productivity obtained were 1063.3 and 384.8 mg/L/d, respectively. The biomass of C. vulgaris FSP-E was then used as feedstock for biohydrogen production via separate hydrolysis and fermentation processes. The acidic hydrolysate (hydrolyzed with 1% H2SO4) was fermented with Clostridium butyricum CGS5, giving a maximum H-2 yield of 2.87 mmol H-2/g biomass and a H-2 production rate of 176.9 ml/h'l, which are higher than most reported values. The results obtained in this work indicate that carbohydrate-based microalgae feedstock shows good potential for biohydrogen production. Copyright (C) 2015, Hydrogen Energy Publications, LLC. Published by Elsevier Ltd. All rights reserved.
机译:对三种本地微藻菌株(Scenedesmus subspicatus GY-16,小球藻FSP-E和Anistrodesmus gracilis GY-09)进行了评估,它们具有积累碳水化合物的能力,这些碳水化合物可随后用作生产生物氢的原料。光合自养生长的结果表明,在所考察的三个菌株中,寻常型梭状芽孢杆菌FSP-E表现出最高的生物量生产率(825.6 mg / L / d)和碳水化合物生产率(365.8 mg / L / d)。添加2.0 g / l乙酸钠的寻常型C. FSP-E的混合营养生长进一步将生物量和碳水化合物的生产率分别提高到1022.3 mg / L / d和498.5 mg / L / d。此外,在半分批模式下操作光生物反应器提高了长时间保温富含碳水化合物的小球藻FSP-E的稳定性,所获得的生物量和碳水化合物生产率分别为1063.3和384.8 mg / L / d。寻常梭状芽孢杆菌FSP-E的生物质然后通过分离的水解和发酵过程用作生产生物氢的原料。将酸性水解产物(用1%H2SO4水解)用丁酸梭菌CGS5发酵,得到的最大H-2产量为2.87 mmol H-2 / g生物量,H-2产生率为176.9 ml / h'l,高于大多数报告的值。在这项工作中获得的结果表明,基于碳水化合物的微藻原料显示出良好的生物氢生产潜力。 Hydrogen Energy Publications,LLC版权所有(C)2015。由Elsevier Ltd.出版。保留所有权利。

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