Biodegradation Of Mtbe By Mycobacterium Vaccae Job5 And Graphium Sp.: Cometabolism, Inhibition, Kinetics And Modeling Of Mtbe, Tbf, And Tba By Propane And Iso-Pentane Grown Microorganisms. Cet article n’est pas disponible.
Martínez-Prado, María-Adriana; Williamson, Kenneth J.; Martínez-Prado, María-Adriana; Williamson, Kenneth J.
Langue : anglais
Edité par Lap Lambert Academic Publishing, 2011
- Livre broché
- Neuf

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A propos de cet article
176 pages. 8.66x5.91x0.40 inches. In Stock.
N° de réf. du vendeur 3846522732
- Titre
- Biodegradation Of Mtbe By Mycobacterium Vaccae Job5 And Graphium Sp.: Cometabolism, Inhibition, Kinetics And Modeling Of Mtbe, Tbf, And Tba By Propane And Iso-Pentane Grown Microorganisms
- Auteur
- Martínez-Prado, María-Adriana; Williamson, Kenneth J.; Martínez-Prado, María-Adriana; Williamson, Kenneth J.
- Éditeur
- Lap Lambert Academic Publishing
- Année de publication
- 2011
- État de l'article
- Brand New
- Reliure
- Paperback
- Langue
- anglais
- ISBN à 10 chiffres
- 3846522732
- ISBN à 13 chiffres
- 9783846522738
- Poids de l'article
- 0,31 kilogramme
Since the early 1980s, methyl tert-butyl ether (MTBE) has been the most common octane booster and fuel oxygenate used in gasoline in the United States. The Clean Air Act of 1990 mandated the use of so-called “reformulated gasoline”; by the late 1990s, widespread surface and groundwater MTBE contamination caused by gasoline spills and leakage became a crisis across the US. Two different microorganisms, Mycobacterium vaccae JOB5 and Graphium sp., were studied to evaluate their ability to aerobically cometabolize MTBE and its metabolites after growth on propane and iso-pentane. Both cultures were capable of cometabolizing MTBE and the metabolites, tert-butyl formate (TBF) and tert-butyl alcohol (TBA). MTBE, TBF, and TBA did not support growth of either microbe. Higher degradation rates were obtained in the bacterial system when the cultures were grown on iso-pentane. Nonlinear least squares regression and direct linear plot methods were used to estimate kinetic coefficients and provided comparable results. The enzymes involved in cometabolism of MTBE and its metabolites exhibited similar kinetics and substrate inhibition. Experimental data was modeled with Monod kinetics and STELLA®.
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Présentation de l'éditeur
Since the early 1980s, methyl tert-butyl ether (MTBE) has been the most common octane booster and fuel oxygenate used in gasoline in the United States. The Clean Air Act of 1990 mandated the use of so-called “reformulated gasoline”; by the late 1990s, widespread surface and groundwater MTBE contamination caused by gasoline spills and leakage became a crisis across the US. Two different microorganisms, Mycobacterium vaccae JOB5 and Graphium sp., were studied to evaluate their ability to aerobically cometabolize MTBE and its metabolites after growth on propane and iso-pentane. Both cultures were capable of cometabolizing MTBE and the metabolites, tert-butyl formate (TBF) and tert-butyl alcohol (TBA). MTBE, TBF, and TBA did not support growth of either microbe. Higher degradation rates were obtained in the bacterial system when the cultures were grown on iso-pentane. Nonlinear least squares regression and direct linear plot methods were used to estimate kinetic coefficients and provided comparable results. The enzymes involved in cometabolism of MTBE and its metabolites exhibited similar kinetics and substrate inhibition. Experimental data was modeled with Monod kinetics and STELLA®.
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