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Effects of L-cysteine and Giant Panda Excrement on Hydrogen Production from Cassava Residues

机译:L-半胱氨酸和大熊猫粪便对木薯残渣产氢的影响

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This study investigated the anaerobic hydrogen production from cassava residues using the mixed culture from giant panda (Ailuropoda melanoleuca) excrement. The FTIR and XRD results demonstrated that cassava residues could be degraded by the anaerobic mixed culture from grand panda excrement, and that maximum H2 production rate (Rmax) and the maximum cumulative H2 production (Hmax) and were 152.86 mL·L–1·h–1 and 688.36 mL·L–1 respectively in the dark fermentation. The effects of L-cysteine on H2 production, substrate utilization, metabolites distribution and biomass were studied in batch-mode tests. The results showed that the cassava residues were degraded by 31.6% through H2 production. After adding L-cysteine (0.5–2.0 g·L–1) to the nutrient solution, the biomass concentration reached to 1.53 g·L–1, about 1.36 times higher than that of the control group without L-cysteine addition, and the dark fermentative H2 production was 1.6–2.0 times higher than that of the control group. Our results demonstrated that by using the anaerobic mixed culture from giant panda excrement, cassava residues could be converted into H2 efficiently with the addition of L-cysteine during the dark fermentation.
机译:这项研究使用大熊猫粪便(Ailuropoda melanoleuca)的混合培养物研究了木薯残渣产生的厌氧氢。 FTIR和XRD结果表明,大熊猫粪便厌氧混合培养可降解木薯残渣,最大H2产生率(Rmax)和最大H2累积产生量(Hmax)为152.86 mL·L–1·h黑暗发酵分别为–1和688.36 mL·L–1。在批处理模式测试中研究了L-半胱氨酸对H2产生,底物利用率,代谢产物分布和生物量的影响。结果表明,木薯残渣通过H 2的生产被降解了31.6%。在营养液中加入L-半胱氨酸(0.5–2.0 g·L–1)后,生物量浓度达到1.53 g·L–1,约为不添加L-半胱氨酸的对照组的1.36倍,深色发酵H2的产量比对照组高1.6-2.0倍。我们的结果表明,通过使用大熊猫粪便中的厌氧混合培养物,在黑暗发酵中添加L-半胱氨酸可以将木薯残留物有效地转化为H2。

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