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The use of thermophilic bacteria in accelerated hydrocarbon bioremediation

机译:嗜热细菌在加速碳氢化合物生物修复中的应用

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Successful bioremediation of hydrocarbon contamination in terrestrial as well as aquatic ecosystems is generally limited by the low bioavailability of hydrophobic pollutants. Considerably higher mass transfer rates and hydrocarbon solubilities can be obtained at higher temperatures, but so far approaches to bioremediation at increased temperature have hardly been investigated. The biotechnological significance and the benefits of the use of thermophilic bacteria in enhancing hydrocarbon removal under different environmental conditions were investigated. Expression of the alkane mono-oxygenase alkB gene responsible for the initial step in the degradation of alkanes in soil geobacilli was found to be induced by the presence of such a substrate at high temperature, and this explains the increased degradation rates achieved in hexadecane-contaminated microcosms incubated at 60℃ compared to mesophilic conditions. Additional benefits of increasing hydrocarbon degradation also occur when thermophilic bacteria capable of producing biosurfactants which act as solubilising agents in such systems are introduced. We conclude that thermally accelerated bioremediation may be an effective technology for hydrocarbon contaminated soil bioremediation.
机译:陆地和水生生态系统中碳氢化合物污染的成功生物修复通常受到疏水性污染物生物利用度低的限制。在较高的温度下可以获得相当高的传质速率和烃溶解度,但是到目前为止,尚未研究在升高的温度下进行生物修复的方法。研究了嗜热细菌在不同环境条件下提高脱烃能力的生物技术意义和益处。发现在土壤土杆菌中降解烷烃的第一步是烷烃单加氧酶alkB基因的表达是由这种底物在高温下诱导的,这解释了被十六烷污染的降解率提高了。与中温条件相比,在60℃孵育的微观世界。当引入能够产生在这种体系中用作增溶剂的生物表面活性剂的嗜热细菌时,也会增加烃降解的额外好处。我们得出的结论是,热加速生物修复可能是碳氢化合物污染的土壤生物修复的有效技术。

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