James L. Gaddy
University of Arkansas
60 Papers
1.4K Citations
James L. Gaddy is an academic researcher from University of Arkansas. The author has contributed to research in topics: Fermentation & Syngas. The author has an hindex of 29, co-authored 60 publications. Previous affiliations of James L. Gaddy include Business International Corporation & University of Arkansas at Little Rock.
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Papers
Patent
Methods for increasing the production of ethanol from microbial fermentation
James L. Gaddy,Dinesh K. Arora,Ching-Whan Ko,John Randall Phillips,Rahul Basu,Wikstrom Carl,Edgar C. Clausen +6 more
- 20 Dec 2011
TL;DR: In this article, a stable continuous method for producing ethanol from the anaerobic bacterial fermentation of a gaseous substrate containing at least one reducing gas was proposed, which allows ethanol and acetate to be produced in the fermentation broth in the bioreactor at a productivity of greater than 10 g/L per day.
262
Patent
Clostridiumm ljungdahlii, an anaerobic ethanol and acetate producing microorganism
James L. Gaddy,Edgar C. Clausen +1 more
- 09 Nov 1990
TL;DR: A newly discovered microorganism was isolated in a biologically pure culture and designated Clostridium ljungdahlii, having the identifying characteristics of ATCC No 49587 as discussed by the authors.
Bioconversion of synthesis gas into liquid or gaseous fuels
TL;DR: In this article, CSTR and packed-column models for the biological production of liquid and gaseous fuels from coal synthesis gas were presented for both liquid and gas synthesis gas.
186
Patent
Microbial process for the preparation of acetic acid as well as solvent for its extraction from the fermentation broth
James L. Gaddy,Edgar C. Clausen,Ching-Whan Ko,Wade Leslie E,Wikstrom Carl +4 more
- 07 Sep 1999
TL;DR: In this paper, a modified water-immiscible solvent is used for the extraction of acetic acid from aqueous streams, which is a substantially pure mixture of isomers of highly branched di-alkyl amines.
165
The Biological production of ethanol from synthesis gas
TL;DR: In this article, a culture has been isolated from animal waste that is capable of producing ethanol and acetate from carbon monoxide and from hydrogen and carbon dioxide, the major components of synthesis gas.
164