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Asphaltenes in asphalt: Direct observation and evaluation of their impacts on asphalt properties

机译:沥青中的沥青中的沥青:直接观察和评估它们对沥青特性的影响

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Over the years, different hypotheses and speculations have been developed on asphaltenes, but their presence in asphalt has never been directly observed. In this study, asphaltenes in nine types of asphalt that vary in crude oil source and aging states are examined through scanning transmission electron microscopy (STEM) and atomic force microscopy (AFM). No solvent casting is used in sample preparation; hence, the natural state of the asphaltenes is preserved. Asphaltene particles are also separated and examined for their morphology and toughness. The impacts of asphaltene content and morphology on the zero shear viscosity (ZSV) and derived ductility of asphalt are investigated. STEM images reveal that asphaltenes in non-aged asphalt are generally well dispersed, with occasional formation of large agglomerates, and both the size of well-dispersed asphaltenes and the abundance of the agglomerates are dependent on asphalt source. Rod-shaped, crystal-like asphaltene particles can be found in both artificially-aged and field-aged asphalts. A probe into asphaltene particles using AFM suggests that the toughness of the particles is low. Rheological test results indicate that asphaltene content plays a predominant role in determining the relative ZSV (ratio between the system ZSV and the liquid phase ZSV), and asphaltene morphology likely plays a secondary role. Conversely, both the content and morphology of asphaltenes likely play major roles in determining the derived ductility of asphalt. (C) 2020 Elsevier Ltd. All rights reserved.
机译:多年来,在沥青中已经开发了不同的假设和猜测,但它们在沥青中的存在从未被直接观察到。在该研究中,通过扫描透射电子显微镜(茎)和原子力显微镜(AFM)检查原油源和老化状态的九种沥青中的沥青。除样品制备中不使用溶剂铸件;因此,保留了沥青质的自然状态。也分离沥青质颗粒并检查它们的形态和韧性。研究了沥青质含量和形态对零剪切粘度(ZSV)和沥青衍生延性的影响。茎图像揭示了非老子沥青中的沥青质通常在偶尔形成大附聚物,并且井分散的沥青质的尺寸和附聚物的丰度依赖于沥青源。杆状,晶体状沥青质颗粒可以在人工老化和野外沥青中找到。使用AFM探针倾向于沥青质颗粒表明颗粒的韧性低。流变测试结果表明沥青质含量在确定相对ZSV(ZSV和液相ZSV之间的比率)中起着主要作用,并且沥青质形态可能发挥二级作用。相反,沥青质的含量和形态可能在确定沥青的衍生延性时发挥重要作用。 (c)2020 elestvier有限公司保留所有权利。

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