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Seed inocula for biohydrogen production from biodiesel solid residues

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논문

Seed inocula for biohydrogen production from biodiesel solid residues

학술지

International journal of hydrogen energy

저자명

Kumar, G.; Lay, C.H.; Chu, C.Y.; Wu, J.H.; Lee, S.C.; Lin, C.Y.

초록

This study aimed to optimize the hydrogen production from various seed sludges (two kinds of sewage sludges (S1, S2), cow dung (S3), granular sludge (S4) and effluent from condensed soluble molasses H<SUB>2</SUB> fermenter (S5)) and enhancement of hydrogen production via heat treatment for substrate and seed sludge by using the solid residues of biodiesel production (BDSR). Two batch assay tests were operated at a biodiesel solid residue concentration of 10g/L, temperature of 55<SUP>o</SUP>C and an initial cultivation pH of 8. The results showed that the peak hydrogen yield (HY) of 94.6mL H<SUB>2</SUB>/g volatile solid (VS) (4.1mmolH<SUB>2</SUB>/gVS) was obtained from S1 when substrate and seed sludge were both heat treated at 100<SUP>o</SUP>C for 1h. However, the peak hydrogen production rate (HPR) and specific hydrogen production rate (SHPR) of 1.48LH<SUB>2</SUB>/L-d and 0.30LH<SUB>2</SUB>/g VSS-d were obtained from S2 without any treatment. The heat treatment was found to increase the HY in both the cases of sewage sludges S1 and S2.The HY of 89.5mL H<SUB>2</SUB>/gVS (without treatment) was increased to 94.6mL H<SUB>2</SUB>/gVS and 82.6mLH<SUB>2</SUB>/gVS (without treatment) was increased to 85.7mLH<SUB>2</SUB>/gVS for S1 and S2. The soluble metabolic product (SMP) analysis showed that the fermentation followed mainly acetate-butyrate pathway with considerable production of ethanol. The total bioenergy production was calculated as 2.8 and 2.9kJ/gVS for favorable hydrogen and ethanol production, respectively. The BDSR could be used as feedstock for dark fermentative hydrogen production.

발행연도

2012

발행기관

Pergamon Press ; Elsevier Science Ltd

ISSN

0360-3199

ISSN

1879-3487

37

20

페이지

pp.15489-15495

주제어

Biodiesel solid residues; Hydrogen production rate; Hydrogen yield; Soluble metabolic product

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논문; 2012-10-01

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