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首页> 外文期刊>Fuel >A novel technique for interface analysis: Behaviour of sophorolipids biosurfactant obtained from Meyerozyma spp. MF138126 during low-salinity heavy-crude experiments
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A novel technique for interface analysis: Behaviour of sophorolipids biosurfactant obtained from Meyerozyma spp. MF138126 during low-salinity heavy-crude experiments

机译:一种新型界面分析技术:由Meyerozyma SPP获得的Sophorlipids生物活性剂的行为。 低盐度重质实验期间MF138126

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摘要

A novel technique for interface behaviour and thermodynamic properties analyses of sophorolipids (SLs) biosurfactant obtained from Meyerozyma spp. MF138126 under high-pressure high-temperature (HPHT), for low-salinity heavy-crude experiments is presented. An experimental rig for production of biosurfactant and determination of interfacial tension (IFT) under HPHT is developed specially for the purpose of this investigation. A reduction of a factor of seven and nine in IFT was obtained for experiments between brine and heavy-crude at temperatures of 45 degrees C and 65 degrees C respectively. Furthermore, with increasing temperature, the degree of SLs adsorption at the interface increases leading to a total collapse in the profiles of the adsorption graphs. The minimum area per molecule of SLs monomers for different conditions suggested that the interface weakens occupying more surface area as the temperature increases. The degree of counter-ion binding for SLs is obtained to be 0.86. The computed Gibbs free energy of micellisation is -1940 KJ/mol; which is exergonic depicting favourable reaction and spontaneous in forward direction. At a fixed temperature of 25 degrees C and pressure of 45 bar, IFT value of 0.251 mN/m was obtained. It is concluded that the produced SLs retained its molecular integrity and IFT reduction effectiveness under both unconfined and confined HPHT systems.
机译:一种新的界面行为和热力学性能分析来自Meyrozyma SPP获得的Sophorlipids(SLS)生物活性剂的分析。提出了高压高温(HPHT)下的MF138126,用于低盐度重金化实验。用于生产生物表面活性剂和界面张力测定(IFT)的实验钻机专门用于本调查的目的。在分别在45摄氏度和65℃的温度下盐水和重质之间的实验获得IFT中七和九倍的减少。此外,随着温度的升高,界面上的SLS吸附程度增加导致吸附图的轮廓中的总塌陷。针对不同条件的SLS单体的每个分子的最小面积表明,随着温度的增加,界面削弱了更多的表面积。获得SLS的反离子结合程度为0.86。胶束的计算的吉布斯自由能为-1940 kJ / mol;这是出现的,描绘有利反应和向前的自发性。在25摄氏度和45巴的压力的固定温度下,获得0.251mN / m的IFT值。得出结论,所生产的SLS在非整合和密闭的HPHT系统下保留其分子完整性和IFT降低效果。

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