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Growth and hydrogen production characteristics of Caldicellulosiruptor saccharolyticus on chemically defined minimal media

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논문

Growth and hydrogen production characteristics of Caldicellulosiruptor saccharolyticus on chemically defined minimal media

학술지

International journal of hydrogen energy

저자명

Willquist, Karin; van Niel, Ed W.J.

초록

<P><B>Abstract</B></P><P><I>Caldicellulosiruptor saccharolyticus</I> is an extreme thermophilic bacterium recognized for its saccharolytic ability and superior ability to produce high yields of hydrogen. However, most studies have been made using yeast extract (YE) as a rich but expensive nutrient source. For the first time, we show that <I>C. saccharolyticus</I> is able to grow on defined minimal media, including essential vitamins, provided that CO<SUB>2</SUB> was allowed to accumulate sufficiently in the culture broth to activate growth. Growth and hydrogen production performance on minimal media was analyzed in both batch and continuous mode. Absence of YE resulted in similar or higher hydrogen yields and specific hydrogen productivities but lower volumetric hydrogen productivities than with YE. The results also indicate that YE is used as a carbon- and energy source thus affecting metabolic flux calculations. This study clarified that YE is not essential making <I>C. saccharolyticus</I> more attractive for fundamental studies on its metabolism and future industrial exploitation.</P> <P><B>Highlights</B></P><P>&#x025BA; <I>Caldicellulosiruptor saccharolyticus</I> was cultured on defined minimal media. &#x025BA; YE was not required for growth in batch and continuous mode. &#x025BA; YE had a negative or indifferent effect on H<SUB>2</SUB> yield. &#x025BA; CO<SUB>2</SUB> was required to activate growth on minimal media. &#x025BA; Vitamins are required to support rigid growth on minimal media.</P>

발행연도

2012

발행기관

Elsevier

ISSN

0360-3199

ISSN

1879-3487

37

6

페이지

pp.4925-4929

주제어

Caldicellulosiruptor saccharolyticus; Minimal media; Hydrogen production; Growth activation; CO2 sparging

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논문; 2012-03-01

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