Growth of Rhodospirilum rubrum on synthesis gas: Conversion of CO to H^sub 2^ and poly-[beta]-hydroxyalkanoate

To examine the potential use of synthesis gas as a carbon and energy source in fermentation processes, Rhodospirillum rubrum was cultured on synthesis gas generated from discarded seed corn. The growth rates, growth and poly-β-hydroxyalkanoates (PHA) yields, and CO oxidation/... evolution rates were...

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Veröffentlicht in:Biotechnology and bioengineering 2007-06, Vol.97 (2), p.279
Hauptverfasser: Do, Young S, Smeenk, Jerod, Broer, Karl M, Kisting, Clint J
Format: Artikel
Sprache:eng
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Zusammenfassung:To examine the potential use of synthesis gas as a carbon and energy source in fermentation processes, Rhodospirillum rubrum was cultured on synthesis gas generated from discarded seed corn. The growth rates, growth and poly-β-hydroxyalkanoates (PHA) yields, and CO oxidation/... evolution rates were evaluated in comparison to the rates observed with an artificial synthesis gas mixture. Depending on the gas conditioning system used, synthesis gas either stimulated or inhibited CO-oxidation rates compared to the observations with the artificial synthesis gas mixture. Inhibitory and stimulatory compounds in synthesis gas could be removed by the addition of activated charcoal, char-tar, or char-ash filters (char, tar, and ash are gasification residues). In batch fermentations, approximately 1.4 mol CO was oxidized per day per g cell protein with the production of 0.75 mol ... and 340 mg PHA per day per g cell protein. The PHA produced from R. rubrum grown on synthesis gas was composed of 86% β-hydroxybutyrate and 14% β-hydroxyvalerate. Mass transfer of CO into the liquid phase was determined as the rate-limiting step in the fermentation. (ProQuest-CSA LLC: ... denotes formulae/symbols omitted.)
ISSN:0006-3592
1097-0290