Abstract
Six model hydrocarbons, representing various classes of chemicals found in gasoline, and methyl ethyl ketone, were assayed for their inhibitory effect on glucose methanogenesis in slurries prepared from aquifer sediments and ground water. Biogas (CH 4 and CO 2 ) production was monitored with an automated pressure transducer system. Benzene, 1-methyl naphthalene, and methyl tert -butyl ether (MTBE) were found to have no inhibitory influence on biogas production rates at concentrations up to 71·7 mg/L. Similarly, octane, cyclohexane, indan, and methyl ethylketone (MEK) were found to have only marginal negative effects on the rate of biogas production in aquifer slurries, at concentrations ranging from 51·7 to 72·1 mg/L. Thus, gasoline components had low apparent toxicities to microorganisms responsible for glucose methanogenesis in aquifier slurries. As the concentrations of the assayed hydrocarbons are about 100 times those typically reported after an aquifer has been contaminated with gasoline, it is unlikely that individual hydrocarbons will substantially impact anaerobic metabolic processes.
| Original language | American English |
|---|---|
| Journal | Anaerobe |
| Volume | 2 |
| DOIs | |
| State | Published - Oct 1 1996 |
Keywords
- 1 Methylnaphthalene
- 2 Butanone
- Anaerobic Metabolism
- Aquifer
- Bacteria (Microorganisms)
- Bacterial Metabolism
- Benzene
- Biogas
- Carbon Dioxide
- Controlled Study
- Cyclohexane
- Gasoline
- Glucose
- Glucose Metabolism
- Ground Water
- Hydrocarbons
- Indan Derivative
- Methane
- Methanobacterium
- Methanogenesis
- Nonhuman
- Octane
- Pressure Transducer
- Sediment
- Tert Butyl Methyl Ether
- Toxicity
Disciplines
- Chemical Engineering
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