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首页> 外文期刊>Journal of environmental biology >Biodegradation of crude petroleum and petroleum products by fungi isolated from two oil seeds (melon and soybean)
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Biodegradation of crude petroleum and petroleum products by fungi isolated from two oil seeds (melon and soybean)

机译:从两种油籽(甜瓜和大豆)中分离出的真菌对原油和石油产品进行生物降解

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Crude petroleum oil degrading fungi were isolated from two oil seeds, Cucumeropsis mannii (melon) and Glycine max (soybean) seeds in the presence and absence of petroleum fumes. An assessment of the relative ability of each fungus to degrade crude petroleum, diesel and kerosene on minimum salt solution was done using change in optical density read on spectrophotometer. Twenty-one fungal species (14 genera) were isolated altogether during this experiment. These include eight species of Aspergillus; one species each of Botryodiplodia, Bipolaris, Cladosporium, Cunnighamella, Dreschlera, Fusarium, Helminthosporium, Macrophomina, Mucor, Paeciliomyces, Penicillium, Rhizopus and Talariomyces. It was evident that most of the fungi tested were able to biodegrade the crude petroleum oil, though at different rates. Bipolaris had a low rate of biodegradation of the petroleum oil of all the fungal species isolated Botryodiplodia theobromae had the highest degrading ability on the crude oil, while Aspergillus flavus had the least after 40 days of incubation. Aspergillus flavus had the highest ability to biodegrade diesel while A. niger had the least ability. In kerosene, Macrophomina phaseolina had the highest ability while A. niger had the least ability to biodegrade it. There was fluctuation in the growth pattern of the fungi in the petroleum oil medium. The implication of these are discussed.
机译:在存在和不存在石油烟雾的情况下,从两种含油种子,曼氏黄瓜瓜和大豆种子中分离出原油降解真菌。使用分光光度计上读取的光密度变化来评估每种真菌在最低盐溶液中降解原油,柴油和煤油的相对能力。在该实验中一共分离了二十一种真菌(14属)。其中包括八种曲霉。 Botryodiplodia,Bipolaris,Cladosporium,Cunnighamella,Dreschlera,Fusarium,Helminthosporium,Macromphomina,Mucor,Paeciliomyces,Penicillium,Rhizopus和Talariomyces各有1种。显然,尽管速率不同,大多数测试的真菌都能够生物降解原油。在培养40天后,分离出的所有真菌种类中的双孢霉对油生真菌的降解率均较低,而黄曲霉的生物降解率最低。黄曲霉具有最高的生物降解能力,而黑曲霉的生物降解能力最低。在煤油中,Phasephomina phaseolina的能力最高,而黑曲霉的生物降解能力却最低。石油培养基中真菌的生长方式存在波动。讨论了这些含义。

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