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Biohydrogen production performance in a draft tube bioreactor with immobilized cell

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바이오화학분류
    • 바이오플라스틱
      1. 플라스틱
    • 바이오정밀화학
      1. 용매
      2. 화학제품
      3. 연료
    • 화장품용 기능성소재
      1. 계면활성제⁄증점제
    • 의료용 화학소재
      1. 치료제
      2. 식품첨가제
논문

Biohydrogen production performance in a draft tube bioreactor with immobilized cell

학술지

International journal of hydrogen energy

저자명

Chu, C.Y.; Wu, S.Y.; Shen, Y.C.

초록

The research was carried out using a draft tube fluidized bed bioreactor (DTFBR) system with immobilized cell. The total working volume of the DTFBR including the buffer tank and pipe was 2.4 L. The pH, volatile suspended solid (VSS) and total solid (TS) concentrations of the seed sludge were 6.8, 33.3 and 65.1 g/L, respectively. The thermally treated sludge was used for immobilization. Immobilization of cell was essentially achieved by silicone gel (SC) entrapment approaches. The entrapped-cell system operated stably at a low HRT without any cell washout. Hence, the H<SUB>2</SUB> production rate was enhanced via increasing organic loading rates. The system was fed with sucrose-based synthetic medium, and was examined for its H2 production performance under different influent sucrose concentrations, different solid volume volumetric content and hydraulic retention times. It was found that the optimal solid volume volumetric content was 7.5% (v/v) when the solid volume volumetric contents ranged from 5 to 15% in the DTFBR. The maximum H<SUB>2</SUB> production rate of 2.59 H<SUB>2</SUB> L/h/L with H<SUB>2</SUB> volumetric content of 36.8% and sucrose conversion of 80.5% was obtained at initial substrate concentration of 20 g COD/L, 7.5% (v/v) of solid volume, and HRT 0.5 h. The features of well mixing, high H<SUB>2</SUB>-producing performance and stable operation imply that using DTFBR system is a feasible approach to continuous H<SUB>2</SUB> production in reality.

발행연도

2012

발행기관

Pergamon Press ; Elsevier Science Ltd

ISSN

0360-3199

ISSN

1879-3487

37

20

페이지

pp.15658-15665

주제어

Draft tube fluidized bed; Immobilized cell; Silicone gel entrapment approaches; Fermentative hydrogen production

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논문; 2012-10-01

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