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首页> 外文期刊>International Journal of Environmental Science and Technology >Production and characterization of lipopeptide biosurfactant producing Paenibacillus sp. D9 and its biodegradation of diesel fuel
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Production and characterization of lipopeptide biosurfactant producing Paenibacillus sp. D9 and its biodegradation of diesel fuel

机译:脂肪肽生物活性剂生产Paenibacillus sp的生产和表征。 D9及其柴油的生物降解

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摘要

The current research aimed at analyzing the biodegradation efficiency of a potent biosurfactant producing Paenibacillus sp. D9, along with the characterization of the surface-active compound produced during diesel fuel biodegradation. The biosurfactant production by Paenibacillus sp. D9 was evaluated using diesel fuel as culture medium, subsequently analyzed for its structural characteristics using different methods and thus determining the biodegradation utilization. This strain showed wide cell surface hydrophobicity against varieties of hydrocarbon substrate tested. Paenibacillus sp. D9 displayed higher hydrophobicity to the long-chain hydrocarbons mixtures tested such as 71.5% diesel fuel, 70.0% engine oil and 76.0% n-paraffin. The optimum condition for biosurfactant synthesis was obtained in a medium containing 10% (v/v) diesel fuel with a production yield of 4.7g/L. The resultant biosurfactant reduced surface tension from 71.4 to 30.1mN/m against carbon source utilized. The critical micelle concentration value of the biosurfactant was 200mg/L with emulsification efficiencies against a wide range of hydrophobic pollutants. With different physiochemical and analytical methods, the study demonstrated that the genus Paenibacillus produced a low molecular weight lipopeptide biosurfactant. Its emulsifying ability further supports its potential use in environmental and biotechnological applications.
机译:目前的研究旨在分析生产Paenibacillus Sp的有效生物活性剂的生物降解效率。 D9,以及柴油生物降解期间产生的表面活性化合物的表征。 Paenibacillus sp的生物表面活性剂产生。使用柴油作为培养基评价D9,随后使用不同方法分析其结构特征,从而确定生物降解利用率。该菌株显示出对测试的烃基底物品种的宽细胞表面疏水性。 Paenibacillus sp。 D9显示出更高的疏水性,对长链烃混合物如71.5%柴油燃料,70.0%发动机油和76.0%N-石蜡测试。在含有10%(v / v)柴油燃料的培养基中获得生物活性剂合成的最佳条件,其产率为4.7g / l。所得的生物活性剂从71.4至30.1mn / m的表面张力降低到使用的碳源。生物表面活性剂的临界胶束浓度值为200mg / L,含有乳化效率,可抵抗各种疏水性污染物。采用不同的物理化学和分析方法,研究表明,Paenibacillus属生产低分子量的脂肽生物活性剂。其乳化能力进一步支持其在环境和生物技术应用中的潜在用途。

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