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首页> 外文期刊>Bioremediation journal >Bioremediation of contaminated diesel and motor oil through the optimization of biosurfactant produced by Paenibacillus sp. D9 on waste canola oil
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Bioremediation of contaminated diesel and motor oil through the optimization of biosurfactant produced by Paenibacillus sp. D9 on waste canola oil

机译:通过优化Paenibacillus sp。生产的生物表面活性剂对受污染的柴油和机油进行生物修复。 D9在低芥酸菜子油上

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摘要

The potential of the indigenously isolated biosurfactant producing organism, Paenibacillus sp. D9 to utilize waste frying oils (canola, sunflower, castor, and coconut) were investigated as alternate cheap substrates for synthesis of biosurfactant. This work aimed to study optimum parameters, functional properties, and applicability for bioremediation. Initial biosurfactant yield showed 2.11 g/L and 33.7 mN/m, a representative of low production. There was an improvement on maximum reduction in surface tension and biosurfactant yield of 31.2 mN/m and 5.31 g/L, respectively as the two quadratic models were adequate with regards to biosurfactant yield (R-2 = 0.9937) and surface tension (R-2 = 0.9862). The proficiency of biosurfactant when contrasted to a chemical surfactant bring about the degradation of 73.2% motor oil, 71.8% diesel (shaking condition), 63.3% motor oil, and 59.3% diesel (static condition) in a solid environment. In contrast, using an aqueous environment, there was bio-removal of 77.6% motor oil, 74.3% diesel (shaking condition), 62.2% motor oil, and 57.4% diesel (static condition) respectively. The response surface methodology tool was suitable in identifying the optimum conditions on low-cost substrates and the biosurfactant is capable for bioremediation of diesel and motor and from contaminated environment.
机译:本地分离的生物表面活性剂生产菌Paenibacillus sp。的潜力。研究了利用废油炸油(低芥酸菜子,向日葵,蓖麻和椰子)的D9作为合成生物表面活性剂的廉价替代底物。这项工作旨在研究生物修复的最佳参数,功能特性和适用性。最初的生物表面活性剂产量显示为2.11 g / L和33.7 mN / m,这是低产量的代表。表面张力和生物表面活性剂产量的最大降低分别提高了31.2 mN / m和5.31 g / L,因为两个二次模型在生物表面活性剂产量(R-2 = 0.9937)和表面张力(R- 2 = 0.9862)。与化学表面活性剂相比,生物表面活性剂的熟练程度导致固体环境中73.2%的机油,71.8%的柴油(摇动条件),63.3%的机油和59.3%的柴油(静态条件)降解。相比之下,在水性环境下,生物去除率分别为77.6%机油,74.3%柴油(摇动条件),62.2%机油和57.4%柴油(静态条件)。响应表面方法学工具适合于确定低成本基材上的最佳条件,并且该生物表面活性剂能够对柴油和发动机进行生物修复以及从污染的环境中进行生物修复。

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