首页> 外文OA文献 >Optimal physical and nutrient parameters for growth of trichoderma virens UKMP-1M for heavy crude oil degradationud(Pengoptimuman Parameter Fizikal dan nutrien bagi pertumbuhan trichoderma virens UKMP-1M untuk degradasi minyak mentah berat)
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Optimal physical and nutrient parameters for growth of trichoderma virens UKMP-1M for heavy crude oil degradationud(Pengoptimuman Parameter Fizikal dan nutrien bagi pertumbuhan trichoderma virens UKMP-1M untuk degradasi minyak mentah berat)

机译:用于重质原油降解的维氏木霉UKMP-1M生长的最佳物理和营养参数 ud(UKMP-1M木霉生长严重原油降解的物理和营养参数的优化)

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摘要

This study was carried out to determine the optimal parameters for the production of biomass of Trichoderma virens UKMP-1M, a fungus isolated from oil-polluted wastewater. The isolate showed maximum growth at day six after incubation in Mineral Salt Medium (MSM) in the presence of 3% (v/v) heavy Khefji Sour crude oil. Although it grew at pH between 5.0 and 7.0, it grew best at pH 5.5. T. virens UKMP-1M grew at temperatures between 25°C and 35°C, with its highest growth at 30°C. Aeration by agitation at 200 rpm was shown to yield the greatest biomass. Peptone at concentration of 1.5% (w/v) was determined to be a better nitrogen source than urea, potassium nitrate (KNO3), yeast extract, ammonium sulphate ((NH4)2SO4) and ammonium chloride (NH4Cl). Addition of 1% (v/v) crude oil to the MSM medium led to higher biomass production than the addition of 3%, 5%, 7% and 10% (v/v) crude oil. The result also revealed that 40% of total petroleum hydrocarbon (TPH), 100% of pristane and 74% of phytane compounds were degraded after 9 days of incubation at optimal physical and nutrient parameters.
机译:这项研究旨在确定生产木霉木霉UKMP-1M(从油污染的废水中分离出的真菌)生物质的最佳参数。在含有3%(v / v)重Khefji Sour原油的矿物盐培养基(MSM)中温育后,分离株在生长的第6天显示出最大的生长。尽管它在5.0和7.0之间的pH值下生长,但在pH值5.5时生长最好。 T. virens UKMP-1M在25°C至35°C的温度下生长,在30°C时最高。已显示以200 rpm的搅拌通气产生最大的生物量。确定浓度为1.5%(w / v)的蛋白ept是比尿素,硝酸钾(KNO3),酵母提取物,硫酸铵((NH4)2SO4)和氯化铵(NH4Cl)更好的氮源。与添加3%,5%,7%和10%(v / v)的原油相比,向MSM培养基中添加1%(v / v)的原油导致更高的生物量生产。结果还表明,在最佳物理和营养参数下孵育9天后,总石油烃(TPH)的40%、,烷的100%和植烷化合物的74%降解。

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