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Simultaneous biohydrogen production from dark fermentation of duckweed and waste utilization for microalgal lipid production

机译:浮萍黑暗发酵的同时发生生物氢化和垃圾利用用于微藻脂质生产

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摘要

A cost-effective and environmentally friendly method for biofuel production was developed, by utilizing duckweed as feedstock for biohydrogen production through dark fermentation and simultaneously using the fermentative waste to produce microalgal lipids. The results suggested that acid hydrolysis (1% H2SO4) was more suitable for the pretreatment of duckweed biomass. Maximum hydrogen production of 169.30 mL g(-1) dry weight was determined under a temperature of 35 degrees C and an initial pH of 7.0. After the dark fermentation, the volatile fatty acids (VFAs) including acetate and butyrate, were detected in the waste, with concentration determined as 1.04 g L-1 and 1.52 g L-1, respectively. During the mixotrophic cultivation of Chlorella sacchrarophila FACHB-4 using waste as feedstock, the maximum microalgal biomass and the lipid productions were about 2.8 and 33 times higher with respect to the autotrophic growth. The simultaneous biohydrogen production and waste utilization method provided a green strategy for biofuel production.
机译:通过使用黑暗发酵的生物氢化为原料和使用发酵垃圾来产生一种经济高效的生物燃料生产方法,并利用生物氢化,并使用发酵废物产生微藻脂质。结果表明酸水解(1%H 2 SO 4)更适合于浮萍生物质的预处理。在35℃的温度和7.0的初始pH值下测定最大氢气量为169.30ml g(-1)干重。在黑暗发酵后,在废物中检测到包括乙酸盐和丁酸盐的挥发性脂肪酸(VFA),浓度分别测定为1.04g L-1和1.52g L-1。在使用废物作为原料中的Chlarella Sacchrarophila Fachb-4的混纺培养期间,相对于自养生长,最大微藻生物质和脂质制作的含量约为2.8%和33倍。同时发生的生物氢生产和废物利用方法为生物燃料生产提供了绿色策略。

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