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Microbiological Degradation of Organic Components in Oil Shale Retort Water: Organic Acids
Author(s) -
John E. Rogers,
Robert G. Riley,
ShinYi Li,
Dale C. Mann,
R. E. Wildung
Publication year - 1981
Publication title -
applied and environmental microbiology
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.552
H-Index - 324
eISSN - 1070-6291
pISSN - 0099-2240
DOI - 10.1128/aem.42.5.830-837.1981
Subject(s) - retort , chemistry , incubation , dissolved organic carbon , total organic carbon , carbon fibers , environmental chemistry , oil shale , organic acid , microbial biodegradation , organic matter , food science , organic chemistry , bacteria , microorganism , biochemistry , waste management , biology , composite material , composite number , genetics , engineering , materials science
The losses of benzoic acid and a homologous series of both mono- and dibasic aliphatic acids in oil shale retort water were monitored with time (21 days) in liquid culture (4% retort water, vol/vol) inoculated with soil. The organic acids constituted approximately 12% of the dissolved organic carbon in retort water, which served as the sole source of carbon and energy in these studies. The levels of the acids in solution were reduced by 80 to 90% within 9 days of incubation. From mass balance calculations, the decrease in dissolved organic carbon with time of incubation was equal to the formation of CO(2) and bacterial cell carbon. The decrease in the level of the acid components, either from degradation to CO(2) or incorporation into bacteria, would account for approximately 70% of the loss in dissolved organic carbon within the first 9 days of incubation and would account for approximately 50% of the loss over the entire 21-day incubation period.

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