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1.
Cogn Neurodyn ; 4(4): 399-400, 2010 Dec.
Artigo em Inglês | MEDLINE | ID: mdl-22132048
2.
Biodegradation ; 17(4): 369-77, 2006 Aug.
Artigo em Inglês | MEDLINE | ID: mdl-16570229

RESUMO

The biodegradation capacity of indigenous microbial populations was examined in a desert soil contaminated with crude oil. To evaluate biodegradation, soil samples supplemented with 5, 10 or 20% (w/w) of crude oil were incubated for 90 days at 30 degrees C. The effect of augmentation of the soil with vermiculite (50% v/v) as a bulking agent providing increased surface/volume ratio and improved soil aeration was also tested. Maximal biodegradation (91%) was obtained in soil containing the highest concentration of crude oil (20%) and supplemented with vermiculite; only 74% of the oil was degraded in samples containing the same level of crude oil but lacking vermiculite. Gas chromatograms of distilled fractions of crude oil extracted from the soil before and after incubation demonstrated that most of the light and part of the intermediate weight fractions initially present in the oil extracts could not be detected after incubation. Monitoring of microbial population densities revealed an initial decline in bacterial viable counts after exposure to oil, presumably as a result of the crude oil's toxicity. This decline was followed by a steep recovery in microbial population density, then by a moderate increase that persisted until the end of incubation. By contrast, the inhibitory effect of crude oil on the fungal population was minimal. Furthermore, the overall increased growth response of the fungal population, at all three levels of contamination, was about one order of magnitude higher than that of the bacterial population.


Assuntos
Bactérias/metabolismo , Biodegradação Ambiental , Fungos/metabolismo , Petróleo , Microbiologia do Solo , Silicatos de Alumínio/química , Cromatografia Gasosa , Ecossistema , Poluentes do Solo , Temperatura , Fatores de Tempo
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