Engineered microbial biofuel production and recovery under supercritical carbon dioxide

End-product toxicity, culture contamination, and energy efficient product recovery are long-standing issues in bioprocessing. Here, the authors address these problems using a fermentation strategy that combines microbial production of branched alcohols with supercritical carbon dioxide extraction.

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Autores principales: Jason T. Boock, Adam J. E. Freedman, Geoffrey A. Tompsett, Sarah K. Muse, Audrey J. Allen, Luke A. Jackson, Bernardo Castro-Dominguez, Michael T. Timko, Kristala L. J. Prather, Janelle R. Thompson
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Lenguaje:EN
Publicado: Nature Portfolio 2019
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Acceso en línea:https://doaj.org/article/3151690af413417bbbf9624cae19cb4c
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spelling oai:doaj.org-article:3151690af413417bbbf9624cae19cb4c2021-12-02T17:32:24ZEngineered microbial biofuel production and recovery under supercritical carbon dioxide10.1038/s41467-019-08486-62041-1723https://doaj.org/article/3151690af413417bbbf9624cae19cb4c2019-02-01T00:00:00Zhttps://doi.org/10.1038/s41467-019-08486-6https://doaj.org/toc/2041-1723End-product toxicity, culture contamination, and energy efficient product recovery are long-standing issues in bioprocessing. Here, the authors address these problems using a fermentation strategy that combines microbial production of branched alcohols with supercritical carbon dioxide extraction.Jason T. BoockAdam J. E. FreedmanGeoffrey A. TompsettSarah K. MuseAudrey J. AllenLuke A. JacksonBernardo Castro-DominguezMichael T. TimkoKristala L. J. PratherJanelle R. ThompsonNature PortfolioarticleScienceQENNature Communications, Vol 10, Iss 1, Pp 1-12 (2019)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Jason T. Boock
Adam J. E. Freedman
Geoffrey A. Tompsett
Sarah K. Muse
Audrey J. Allen
Luke A. Jackson
Bernardo Castro-Dominguez
Michael T. Timko
Kristala L. J. Prather
Janelle R. Thompson
Engineered microbial biofuel production and recovery under supercritical carbon dioxide
description End-product toxicity, culture contamination, and energy efficient product recovery are long-standing issues in bioprocessing. Here, the authors address these problems using a fermentation strategy that combines microbial production of branched alcohols with supercritical carbon dioxide extraction.
format article
author Jason T. Boock
Adam J. E. Freedman
Geoffrey A. Tompsett
Sarah K. Muse
Audrey J. Allen
Luke A. Jackson
Bernardo Castro-Dominguez
Michael T. Timko
Kristala L. J. Prather
Janelle R. Thompson
author_facet Jason T. Boock
Adam J. E. Freedman
Geoffrey A. Tompsett
Sarah K. Muse
Audrey J. Allen
Luke A. Jackson
Bernardo Castro-Dominguez
Michael T. Timko
Kristala L. J. Prather
Janelle R. Thompson
author_sort Jason T. Boock
title Engineered microbial biofuel production and recovery under supercritical carbon dioxide
title_short Engineered microbial biofuel production and recovery under supercritical carbon dioxide
title_full Engineered microbial biofuel production and recovery under supercritical carbon dioxide
title_fullStr Engineered microbial biofuel production and recovery under supercritical carbon dioxide
title_full_unstemmed Engineered microbial biofuel production and recovery under supercritical carbon dioxide
title_sort engineered microbial biofuel production and recovery under supercritical carbon dioxide
publisher Nature Portfolio
publishDate 2019
url https://doaj.org/article/3151690af413417bbbf9624cae19cb4c
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AT adamjefreedman engineeredmicrobialbiofuelproductionandrecoveryundersupercriticalcarbondioxide
AT geoffreyatompsett engineeredmicrobialbiofuelproductionandrecoveryundersupercriticalcarbondioxide
AT sarahkmuse engineeredmicrobialbiofuelproductionandrecoveryundersupercriticalcarbondioxide
AT audreyjallen engineeredmicrobialbiofuelproductionandrecoveryundersupercriticalcarbondioxide
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AT michaelttimko engineeredmicrobialbiofuelproductionandrecoveryundersupercriticalcarbondioxide
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AT janellerthompson engineeredmicrobialbiofuelproductionandrecoveryundersupercriticalcarbondioxide
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