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March 10, 20260 citationsOpen Access

Effect of Hydrophobic Alkyl Chain Length on the Interfacial Adhesion Performance of Emulsified Asphalt–Aggregate Systems

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HXHaijiao XuPZPinhui ZhaoWWWenyu Wang

Key Points

  • This research seeks to understand how the length of hydrophobic hydrocarbon chains in emulsifiers affects the adhesion of emulsified asphalt to aggregates.
  • Employed molecular dynamics simulations to model the asphalt-aggregate interface.
  • Analyzed key parameters like relative concentration and diffusion coefficients.
  • Examined effects of different emulsifier and aggregate types on adhesion performance.
  • Longer hydrophobic chains initially improve adhesion but can weaken it past an optimal length.
  • Non-polar asphalt components show greater sensitivity to changes in emulsifier chain length.
  • Different aggregate surfaces impact adhesion, with basic surfaces showing superior interaction and adhesion compared to acidic surfaces.

Abstract

To elucidate the mechanisms by which the hydrophobic hydrocarbon chain length of emulsifiers and the surface properties of aggregates influence the adhesive performance at the emulsified asphalt–aggregate interface, this study employed molecular dynamics simulations to construct interface models. Key parameters, including relative concentration, diffusion coefficients, and interfacial adhesion work, were systematically analysed to reveal the intrinsic effects of imidazoline-type emulsifier chain length and aggregate type on interfacial behaviour. The results indicate that increasing the hydrophobic chain length of the emulsifier suppresses the adsorption of emulsified asphalt at the aggregate interface. The diffusion coefficients of both emulsifier and asphalt molecules initially increase and subsequently decrease with chain length, with the non-polar asphalt components (aromatics and saturates) exhibiting greater sensitivity to chain length variations. Moderate extension of the hydrophobic chain enhances interfacial adhesion work, whereas exceeding the optimal chain length reverses this trend, weakening adhesion. Aggregate surface properties exert a significant influence on interfacial behaviour. Compared with the acidic SiO2 (0 0 1) surface, the basic CaCO3 (1 0 4) surface exhibits lower peak relative concentrations of emulsified asphalt, reduced sensitivity to variations in emulsifier chain length, lower molecular diffusion coefficients, and stronger interactions with asphalt molecules, resulting in superior interfacial adhesion. This study provides a molecular-level theoretical basis for the targeted design of emulsifier structures and the efficient adaptation of emulsified asphalt to different aggregate systems.

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Cite This Study

Xu et al. (2026) studied this question.

synapsesocial.com/papers/69af95a470916d39fea4d6fdhttps://doi.org/10.3390/coatings16030330
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