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Biohydrogen production from palm oil mill effluent (POME) using immobilized mixed culture (SLUDGE)

机译:使用固定混合培养(SLUDGE)从棕榈油厂废水(POME)中生产生物氢

摘要

The cell immobilization techniques by using immobilized anaerobic sludge as the seed culture were used to generate hydrogen. The substrate carbon source was taken from Palm Oil Mill Effluent (POME). It was revealed that by using the same concentration of POME, the suspended cell reactor was able to produce hydrogen at an optimal rate of 0.349111-12/1 POME at HRT 6 h. However, the immobilized cell reactor was able to exhibit better hydrogen production rate at ud0.587 1 I H2/I P0MB h at HRT 2 h. The present of beads enhanced the production of hydrogen during lower HRT without encountering wash out of cell. This could be shown by higher production of hydrogen at HRT 1 h with 0.53 5 I H2/I POME by using immobilized cell reactor. Compared to suspended cell reactor, the production of hydrogen at HRT 1 h was very low with 0.092 1112/1 POME due to wash out of cell during this time. The side products during hydrogen production were soluble metabolites including butyric acid and acetic acid, followed by udpropionic acid and ethanol.
机译:通过使用固定的厌氧污泥作为种子培养物的细胞固定技术来产生氢气。底物碳源取自Palm Oil Mill Efffluent(POME)。结果表明,通过使用相同浓度的POME,悬浮细胞反应器能够在HRT 6 h时以0.349111-12 / 1 POME的最佳速率产生氢气。但是,固定电池反应器在HRT 2 h时,在 ud0.587 1 I H2 / I P0MB h时能表现出更好的制氢速率。珠粒的存在增强了在较低的HRT期间氢的产生,而不会遇到洗出细胞的情况。这可以通过使用固定式细胞反应器在HRT 1 h以0.53 5 I H2 / I POME更高的氢气产量来证明。与悬浮电池反应器相比,HRT 1 h的氢气产量非常低,为0.092 1112/1 POME,这是由于这段时间从电池中冲出了氢气。产氢过程中的副产物是可溶的代谢产物,包括丁酸和乙酸,其次是丙酸和乙醇。

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    Nur Fahriza Mohd Ali;

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  • 年度 2013
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