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Microcalorimetry Study of the Adsorption of Asphaltenes and Asphaltene Model Compounds at the Liquid-Solid Surface

机译:微量量热法研究液固表面吸附沥青质和沥青质模型化合物

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The adsorption of an acidic polyaromatic asphaltene model compound (CSPeC11) and indigenous C-6-asphaltenes onto the liquid-solid surface is studied. Model compound CSPeC11 exhibits a similar type of adsorption with a plateau adsorbed amount as C-6-asphaltenes onto three surfaces (silica, calcite, and stainless steel). Model compound BisAC11, with aliphatic end groups and no acidic functionality, does not adsorb at the liquid silica surface, indicating the importance of polar interactions on adsorption. The values of the adsorption enthalpy characterized by the Delta H-z parameter (the enthalpy at zero coverage) indicate that the type of adsorption and the driving force depend on the surface, a key feature when discussing asphaltene deposition. The adsorption of CSPeC11 onto silica is shown to be driven primarily by H bonding (Delta H-z = 34.9 kJ/mol), unlike adsorption onto calcite where polar van der Waals and acidic/basic interactions are thought to be predominant (Delta H-z = -23.5 kJ/mol). Interactions between CSPeC11 and stainless steel are found to be weak (Delta H-z = -7.7 kJ/mol). Comparing C-6-asphaltenes and their esterified counterpart shows that adsorption at the liquid-solid surface is not influenced by the formation of H bonds. This was evidenced by the similar adsorbed amounts obtained. Finally, CSPeC11 captures, to a certain extent, the adsorption interactions of asphaltenes present at the calcite-oil and stainless steel-oil surfaces.
机译:研究了酸性聚芳族沥青质模型化合物(CSPeC11)和天然C-6沥青在液-固表面的吸附。模型化合物CSPeC11表现出与C-6沥青在三个表面(二氧化硅,方解石和不锈钢)上相似的吸附类型,具有稳定的吸附量。具有脂族端基且没有酸性官能团的模型化合物BisAC11不会吸附在液体二氧化硅表面,表明极性相互作用对吸附的重要性。以Delta H-z参数(零覆盖率下的焓)为特征的吸附焓值表明,吸附类型和驱动力取决于表面,这是讨论沥青质沉积的关键特征。结果表明,CSPeC11在二氧化硅上的吸附主要是由氢键驱动的(Delta Hz = 34.9 kJ / mol),而方解石的吸附主要是通过极性范德华力和酸/碱相互作用(Delta Hz = -23.5)来实现的。 kJ / mol)。发现CSPeC11与不锈钢之间的相互作用较弱(Delta H-z = -7.7 kJ / mol)。比较C-6-沥青和它们的酯化对应物表明,在液-固表面的吸附不受H键形成的影响。这由获得的相似的吸附量证明。最后,CSPeC11在一定程度上捕获了方解石油和不锈钢油表面存在的沥青质的吸附相互作用。

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