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Asphaltene Flocculation Inhibition with Ultrasonic Wave Radiation: A Detailed Experimental Study of the Governing Mechanisms

机译:超声波辐射抑制沥青絮凝:调控机理的详细实验研究

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The concept of ultrasonic wave assisted asphaltene flocculation/deposition inhibition was earlier introduced by Najafi et al., (2011). Current study is based on a series of experimental analyses, rheological changes, flocculation behavior, and total asphaltene content of two types of crude oils.The role of ultrasonic wave radiation on these parameters are investigated in order to elaborate the changes in the kinetics of asphaltene flocculation which leads to inhibition of asphaltene flocs formation. Based on the results obtained from the experiments, one can conclude that ultrasonic wave radiation can be most effective if the wave is radiated up to an optimum time. Around this time the oil has its local minimum value of kinematic viscosity, the least value of asphaltene content, and least potential for formation of macro-structured flocsdue to reduction of aromatic to saturate ratio. More detailed studiesrevealed that during radiation timetwo main mechanisms are active in asphaltenic crude oil: asphaltene particles disintegration and formation of asphaltene particles. Based on asphaltene content analysis, the optimum radiation time can be defined as the time at which the two mechanisms have an equal rate. The optimum radiation times are observed to be in the same time range in different tests. According to the results obtained, ultrasonic wave technology can be a potential method of flocculation inhibition and can have extensive industrial application.
机译:Najafi等人(2011年)较早引入了超声波辅助沥青质絮凝/沉积抑制的概念。当前的研究是基于一系列实验分析,两种类型的原油的流变学变化,絮凝行为和总沥青质含量,研究了超声波辐射对这些参数的作用,以阐明沥青质动力学的变化。絮凝导致抑制沥青质絮凝物的形成。根据从实验中获得的结果,可以得出结论,如果辐射到最佳时间,超声波辐射将是最有效的。大约在这个时候,由于芳香烃与饱和烃比的降低,该油具有其运动粘度的局部最小值,沥青质含量的最小值和形成宏观结构絮凝物的最小可能性。更详细的研究表明,在辐射时间内,沥青质原油中存在两个主要机理:沥青质颗粒的分解和沥青质颗粒的形成。基于沥青质含量分析,最佳辐射时间可以定义为两种机理具有相同比率的时间。在不同的测试中,观察到最佳辐射时间在相同的时间范围内。根据获得的结果,超声波技术可能是一种潜在的絮凝抑制方法,并且可以在工业上得到广泛应用。

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