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The Polarity of Crude Oil Fractions Affects the Asphaltenes Stability

机译:原油级分的极性影响了沥青钢稳定性

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Asphaltenes and resins are the polar and saturates and aromatics are the nonpolar fractions of the crude oil. The mutual interaction within crude oil fractions results in different overall polarity. With the onset asphaltene precipitation, the overall polarity starts to change drastically and this change affects the asphaltene stability more. This study investigates the crude oil fractions polarity and their individual impact on asphaltene precipitation. Two crude oil samples with different asphaltene content, API gravity, and viscosity were divided into their Saturates, Aromatics, Resins, and Asphaltenes (SARA) fractions. The crude oils and their SARA fractions were characterized by Fourier Transform InfraRed (FTIR) spectroscopy. The polarity of crude oils and their SARA fractions were determined through dielectric constant measurements by in-house-built capacitance. The polarity of the individual fractions and bulk crude oil samples were analyzed together to understand how the mutual interaction of crude oil fractions affects the asphaltene stability. The overall polarity of the crude oil is the key to asphaltene stability. Resins and asphaltenes are the polar components of crude oil, thus, resins to asphaltenes ratio affects the overall stability of the asphaltenes. Asphaltenes are soluble in aromatic solvents and insoluble in normal alkanes, thus, while the increase in the saturates fraction in crude oil decreases the asphaltene stability, the increase in the aromatics fraction in crude oil reestablishes the stabilization. The solvent power of saturates and aromatics fractions are controlled by the impurities in saturates and aromatics fractions. Because while saturates and aromatics are known as nonpolar fractions of crude oils, the impurity content of those fractions results in polar sides in both saturates and aromatics fractions. The polar side of those fractions makes the interaction with asphaltenes more pronounced and affect the stability of asphaltenes considerably. The holistic understanding of the asphaltene stability is achieved by analyzing the polarity of asphaltenes alone and within crude oil. These results are very useful in preventing the asphaltene precipitation and modelling its stability.
机译:沥青质和树脂是极性和饱和物,芳烃是原油的非极性级分。原油馏分内的相互相互作用导致不同的总极度不同。随着发病沥青质沉淀,总极体开始大幅度变化,并且这种变化会影响沥青质稳定性。本研究研究了原油级分极性及其对沥青质沉淀的个体影响。两种具有不同沥青质含量,API重力和粘度的原油样品分为饱和,芳烃,树脂和沥青质(SARA)级分。通过傅里叶变换红外(FTIR)光谱,表征原油及其SARA级分。通过内部内置电容通过介电常数测量确定原油及其SARA级分的极性。分析各个级分和散装原油样品的极性,以了解原油馏分的相互相互作用如何影响沥青质稳定性。原油的总极性是沥青质稳定性的关键。树脂和沥青质是原油的极性成分,因此,沥青质比的树脂影响了沥青质的整体稳定性。沥青质溶于芳族溶剂并不溶于正常的烷烃,而原油中饱和级分的增加降低了沥青质稳定性,但原油中芳烃级分的增加重新建立了稳定性。饱和物和芳烃级分的溶剂功率由饱和酸盐和芳烃级分中的杂质控制。因为虽然饱和和芳烃被称为原油的非极性级分,但是这些级分的杂质含量导致饱和物和芳烃级分中的极侧。这些级分的极侧使得与沥青质的相互作用更加明显并显着影响沥青质的稳定性。通过分析单独的沥青质的极性和原油中的极性来实现对沥青质稳定性的整体理解。这些结果对于防止沥青质沉淀并建模其稳定性非常有用。

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