首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Isolation and characterization of biosurfactant producing and oil degrading Bacillus subtilis MG495086 from formation water of Assam oil reservoir and its suitability for enhanced oil recovery
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Isolation and characterization of biosurfactant producing and oil degrading Bacillus subtilis MG495086 from formation water of Assam oil reservoir and its suitability for enhanced oil recovery

机译:生物素耐药物生产和油脂降解芽孢杆菌Mg495086从ASSAM储存器形成水分中的分离与表征及其适宜加油回收

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摘要

The strains isolated from the formation water were characterized and screened considering their crude oil degradation capability and biosurfactant production ability. The growth kinetics study of isolated Bacillus subtilis MG495086 was carried out by varying growth parameters i.e. carbon source, temperature, pH and salinity. The biosurfactant production was optimized adopting RSM-CCD considering carbon source (1-5%), pH (3-11) and temperature (25-65 degrees C) as matrix parameters. The optimum biosurfactant production (6.3 +/- 0.1 g/L) and the minimum surface tension 29.85 mN/m were obtained after 96 h of incubation under optimal conditions i.e. 3.8% (v/v) of light-paraffin oil as sole carbon source at 62.4 degrees C and pH 7.7 with the maximum oil degradation capability of 91.3 +/- 5%. Critical micelle concentration value of crude biosurfactant was found to be 40 mg/L with high emulsification activity of 72.45 +/- 0.85%. The produced biosurfactant was identified as lipopeptide (Surfactin) and characterized using various analytical techniques to establish its suitability for microbial enhanced oil recovery.
机译:考虑到其原油降解能力和生物活性剂的生产能力,表征和筛选出从地层水分离的菌株。通过不同的生长参数I. I.碳源,温度,pH和盐度进行分离的芽孢杆菌MG495086的生长动力学研究。考虑碳源(1-5%),pH(3-11)和温度(25-65摄氏度)作为基质参数,优化生物活性剂的生产优化了RSM-CCD。在最佳条件下孵育的96小时内,最佳的生物活性剂(6.3 +/- 0.1g / L)和最小表面张力29.85mN / m在作为唯一的碳源的3.8%(v / v)在62.4摄氏度和pH 7.7,最大油降解能力为91.3 +/- 5%。发现粗胶束浓度值的粗胶质表面活性剂被发现为40mg / L,乳化活性为72.45 +/- 0.85%。所生产的生物活性剂被鉴定为脂肽(SUSFACTIN),并用各种分析技术表征,以确定其对微生物增强的采油的适合性。

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