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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Enhanced degradation of heavy oil in an aqueous system by a Pseudomonas sp. in the presence of natural and synthetic sorbents
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Enhanced degradation of heavy oil in an aqueous system by a Pseudomonas sp. in the presence of natural and synthetic sorbents

机译:假单胞菌属菌增强了水性系统中重油的降解。在天然和合成吸附剂的存在下

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摘要

The microbial degradation of the saturated and sulfur aromatic fractions of a heavy oil was examined in aerobic aqueous conditions employing a pure culture of a Pseudomonas sp. in the presence of natural and synthetic sorbents. All three natural sorbents tested (keratin, chitosan and chitin) were capable of adsorbing large amounts of heavy oil as well as enormously increasing the n-alkane biodegradation rate and decreasing the lag phase by up to five-seven times as much as that in the absence of sorbents. In the presence of natural sorbents n-alkane biodegradation was complete after 7 days while in their absence the same result took 40 days. This time decrease was ascribed to an improved interaction between the oil and the microorganisms derived from the formation of a water/cell/oil/sorbent interphase. The values of the accelerating conversion factor, b, and the length of the lag phase, 1/ab, were determined for the different sorbents using a mathematical expression, and they could represent two important parameters for the description of n-alkane biodegradation kinetics.
机译:在纯水的假单胞菌属培养物中,在好氧水性条件下检查了重油的饱和和硫芳烃馏分的微生物降解。在天然和合成吸附剂的存在下。测试的所有三种天然吸附剂(角蛋白,壳聚糖和几丁质)均能够吸附大量重油,并且能够极大地提高正构烷烃的生物降解率,并且使滞后相的降低幅度是吸附剂的五分之七。没有吸附剂。在天然吸附剂存在下,正构烷烃在7天后生物降解完成,而在不存在天然吸附剂的情况下,相同的结果需要40天。时间的减少归因于油与源自水/细胞/油/吸附剂界面形成的微生物之间的相互作用得到改善。使用数学表达式确定了不同吸附剂的加速转化因子b和滞后相长度1 / ab的值,它们可以代表描述正构烷烃生物降解动力学的两个重要参数。

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