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Analysis of methane biodegradation by Methylosinus trichosporium OB3b

机译:甲烷三孢子霉OB3b对甲烷的生物降解分析

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摘要

The microbial oxidation of methane in the atmosphere is performed by methanotrophic bacteria that use methane as a unique source of carbon and energy. The objective of this work consisted of the investigation of the best conditions of methane biodegradation by methanotrophic bacteria Methylosinus trichosporium OB3b that oxidize it to carbon dioxide, and the use of these microorganisms in monitoring methods for methane. The results showed that M. trichosporium OB3b was capable to degrade methane in a more effective way with an initial microorganism concentration of 0.0700 g.L-1, temperature of 30ºC, pH 6.5 and using 1.79 mmol of methane. In these same conditions, there was no bacterial growth when 2.69 mmol of methane was used. The specific rate of microorganism growth, the conversion factor, the efficiency and the volumetric productivity, for the optimized conditions of biodegradation were, respectively, 0.0324 h-1, 0.6830 gcells/gCH4, 73.73% and 2.7732.10-3 gcells/L.h. The final product of methane microbiological degradation, carbon dioxide, was quantified through the use of a commercial electrode, and, through this, the grade of methane conversion in carbon dioxide was calculated.
机译:甲烷中的微生物氧化是由甲烷营养细菌进行的,甲烷营养细菌利用甲烷作为唯一的碳和能量来源。这项工作的目的包括研究由甲烷氧化营养细菌甲烷氧化单孢菌OB3b氧化成二氧化碳的甲烷生物降解的最佳条件,以及将这些微生物用于监测甲烷的方法。结果表明,在初始微生物浓度为0.0700 g.L ,温度为30ºC,pH值为6.5和使用1.79 mmol的甲烷的条件下,毛孢霉OB3b能够更有效地降解甲烷。在这些相同的条件下,使用2.69 mmol的甲烷时,细菌不会生长。优化的生物降解条件下,微生物生长的比速率,转化因子,效率和容积生产率分别为0.0324 hsup-1,0.6830 gcells / gCH4、73.73%和2.7732。 10 -3 gcells / Lh甲烷微生物降解的最终产物二氧化碳通过使用商业电极进行定量,并由此计算出甲烷在二氧化碳中的转化率。

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