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首页> 外文期刊>Current Microbiology: An International Journal >Diesel and Kerosene Degradation by Pseudomonas desmolyticum NCIM 2112 and Nocardia hydrocarbonoxydans NCIM 2386
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Diesel and Kerosene Degradation by Pseudomonas desmolyticum NCIM 2112 and Nocardia hydrocarbonoxydans NCIM 2386

机译:溶解性假单胞菌NCIM 2112和诺卡氏烷氧基烃NCIM 2386对柴油和煤油的降解

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摘要

Pseudomonas desmolyticum NCIM 2112 (Pd 2112) and Nocardia hydrocarbonoxydans NCIM 2386 (Nh 2386) demonstrated an ability to degrade diesel and kerosene. Triton X-100 had enhanced the diesel degradation process by reducing the time required for the maximum utilization of total petroleum hydrocarbon. Fourier transform infrared spectroscopy spectrum of degraded diesel indicates the presence of aliphatic and aromatic aldehydes, C=C aromatic nuclei, and substituted benzenes. Surface tension reduction and stable emulsification was increased using consortium when compared to individual strains. Triton X-100 showed increase in microbial attachment to hydrocarbon among the various chemical surfactants tested. For generating a rapid assay to screen microorganisms capable of degrading kerosene, the acetaldehyde produced in the degradation process could be used as an indicator of degradation. These results indicate diesel and kerosene degradation ability of both of the strains.
机译:desmolyticus假单胞菌NCIM 2112(Pd 2112)和Nocardia oxyoxyoxydans NCIM 2386(Nh 2386)表现出降解柴油和煤油的能力。 Triton X-100通过减少最大程度利用总石油烃所需的时间来增强了柴油的降解过程。降解柴油的傅里叶变换红外光谱表明存在脂肪族和芳香族醛,C = C芳香族核和取代的苯。与单个菌株相比,使用联合体提高了表面张力的降低和稳定的乳化作用。在所测试的各种化学表面活性剂中,Triton X-100显示出微生物与碳氢化合物的附着增加。为了产生快速测定以筛选能够降解煤油的微生物,可以将在降解过程中产生的乙醛用作降解指标。这些结果表明两种菌株的柴油和煤油降解能力。

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