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Biological fermentative hydrogen and ethanol production using continuous stirred tank reactor

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      1. 용매
      2. 화학제품
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논문

Biological fermentative hydrogen and ethanol production using continuous stirred tank reactor

학술지

International journal of hydrogen energy

저자명

Han, Wei; Chen, Hong; Jiao, Anying; Wang, Zhanqing; Li, Yongfeng; Ren, Nanqi

초록

<P><B>Abstract</B></P><P>Hydrogen and ethanol are promising biofuels and have great potential to become alternatives to fossil fuels. The influence of organic loading rates (OLRs) on the production of fermentative hydrogen and ethanol were investigated in a continuous stirred tank reactor (CSTR) from fermentation using molasses as substrate. Four OLRs were examined, ranging from 8 to 32&nbsp;kg/m<SUP>3</SUP>&middot;d. The H<SUB>2</SUB> and ethanol production rate in CSTR initially increased with increasing OLR (from 8 to 24&nbsp;kg/m<SUP>3</SUP>&nbsp;d). The highest H<SUB>2</SUB> production rate (12.4&nbsp;mmol/h&nbsp;l) and ethanol production rate (20.27&nbsp;mmol/h&nbsp;l) were obtained in CSTR both operated at OLR&nbsp;&equals;&nbsp;24&nbsp;kg/m<SUP>3</SUP>&nbsp;d. However, the H<SUB>2</SUB> and ethanol production rate tended to decrease with an increase of OLR to 32&nbsp;kg/m<SUP>3</SUP>&nbsp;d. The liquid fermentation products were dominated by ethanol, accounting for 31&ndash;59% of total soluble metabolities. Linear regression results show that ethanol production rate (<I>y</I>) and H<SUB>2</SUB> production rate (<I>x</I>) were proportionately correlated which can be expressed as <I>y</I>&nbsp;&equals;&nbsp;0.5431<I>x</I>&nbsp;&plus;&nbsp;1.6816 (<I>r</I><SUP>2</SUP>&nbsp;&equals;&nbsp;0.7617). The total energy conversion rate based on the heat values of H<SUB>2</SUB> and ethanol was calculated to assess the overall efficiency of energy conversion rate. The best energy conversion rate was 31.23&nbsp;kJ/h&nbsp;l, occurred at OLR&nbsp;&equals;&nbsp;24&nbsp;kg/m<SUP>3</SUP>&nbsp;d.</P> <P><B>Highlights</B></P><P>&#x025BA; We examine organic loading rates on fermentative hydrogen and ethanol production. &#x025BA; Both the highest H<SUB>2</SUB> and ethanol production rate were obtained at OLR&nbsp;&equals;&nbsp;24 kg/m<SUP>3</SUP> d. &#x025BA; The production rate of ethanol and H<SUB>2</SUB> were proportionately correlated. &#x025BA; The total energy generation rate was calculated.</P>

발행연도

2012

발행기관

Elsevier

ISSN

0360-3199

ISSN

1879-3487

37

1

페이지

pp.843-847

주제어

Fermentative hydrogen production; Organic loading rate; Energy conversion rate; Continuous flow

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논문; 2012-01-01

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