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首页> 外文期刊>Soil & Sediment Contamination >Petroleum Degradation, Biosurfactant and Laccase Production by Fusarium neocosmosporiellum RH-10: A Microcosm Study
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Petroleum Degradation, Biosurfactant and Laccase Production by Fusarium neocosmosporiellum RH-10: A Microcosm Study

机译:石油降解,生物活性剂和漆酶通过镰刀菌新科孢子素RH-10:微观研究

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The aim of this study was to evaluate the potential of crude oil removal by fungal strains isolated from Arak refinery. The results showed that the RH10 strain is a potent strain as a surfactant producer and degrader of petrochemical hydrocarbons. The strain was identified as a Fusarium neocosmosporiellum and could degrade 58% of hydrocarbons in the minimal medium and reduce the surface tension from 45 to 26.5mN m(-1). Moreover, residual crude oil analysis with Fourier transform infrared spectrophotometry showed that this strain was able to degrade 50% of aliphatic compounds. To investigate the mechanism of degradation, oxidase enzymes were assayed and it was found that F. neocosmosporiellum can produce 1.94U L-1 of laccase in 10g L-1 crude oil. Carbon, nitrogen, phosphorus and soil pattern optimization in a microcosm study showed that this strain removed 44% and 27% of the crude oil from contaminated soil in 1% and 5% crude oil concentrations, respectively. Under optimum condition, 9.66g kg(-1) crude oil was removed by F. neocosmosporiellum when the initial oil concentration was 50g kg(-1), at the end of 150days microcosm experiment. The results demonstrated the promising potential of fungi strain for cleaning of contaminated soil.
机译:本研究的目的是评估从Araak炼油厂分离的真菌菌株的原油除去的潜力。结果表明,RH10菌株是作为石化烃的表面活性剂生产者和降解剂的有效菌株。将该菌株鉴定为镰刀菌孢子菌素,可以降解最小培养基中的58%的烃,并将表面张力降低45至26.5mn m(-1)。此外,具有傅里叶变换红外分光光度法的残余原油分析表明该菌株能够降解50%的脂族化合物。为了研究降解的机制,测定氧化酶酶,发现F. neocosmoscoriellum可以在10g L-1原油中产生1.94UL-1漆酶。微观研究中的碳,氮,磷和土壤模式优化表明,该应变分别从1%和5%原油浓度的污染土壤中除去44%和27%的原油。在最佳条件下,当初始油浓度为50g kg(-1)时,在150天微观的实验结束时,F. neocosmosporiellum去除9.66g kg(-1)原油。结果表明了真菌菌株清洁污染土壤的有希望的潜力。

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