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通过相检测原子力显微镜观察沥青形态

Bitumen morphologies by phase-detection atomic force microscopy.

作者信息

Masson J-F, Leblond V, Margeson J

机构信息

Institute for Research in Construction, National Research Council Canada, Ottawa, Ontario, Canada.

出版信息

J Microsc. 2006 Jan;221(Pt 1):17-29. doi: 10.1111/j.1365-2818.2006.01540.x.

Abstract

Summary Bitumen is a complex mixture of hydrocarbons for which microstructural knowledge is incomplete. In an effort to detail this microstructure, 13 bitumens were analysed by phase-detection atomic force microscopy. Based on morphology, the bitumens could be classified into three distinct groups. One group showed fine domains down to 0.1 microm, another showed domains of about 1 microm, and a third group showed up to four different domains or phases of different sizes and shapes. No correlation was found between the atomic force microscopy morphology and the composition based on asphaltenes, polar aromatics, naphthene aromatics and saturates. A high correlation was found between the area of the 'bee-like' structures and the vanadium and nickel content in bitumen, and between the atomic force microscopy groups and the average size of molecular planes made of fused aromatics. The morphology and the molecular arrangements in bitumen thus appear to be partly governed by the molecular planes and the polarity defined by metallic cations.

摘要

摘要 沥青是一种碳氢化合物的复杂混合物,其微观结构的知识尚不完整。为了详细了解这种微观结构,通过相检测原子力显微镜对13种沥青进行了分析。基于形态学,这些沥青可分为三个不同的组。一组显示出低至0.1微米的精细区域,另一组显示出约1微米的区域,第三组显示出多达四个不同大小和形状的区域或相。在原子力显微镜形态与基于沥青质、极性芳烃、环烷芳烃和饱和烃的组成之间未发现相关性。在“蜜蜂状”结构的面积与沥青中的钒和镍含量之间,以及在原子力显微镜组与由稠合芳烃构成的分子平面的平均尺寸之间发现了高度相关性。因此,沥青中的形态和分子排列似乎部分受分子平面和金属阳离子定义的极性支配。

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