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Effect of Co-Production of Renewable Biomaterials on the Performance of Asphalt Binder in Macro and Micro Perspectives

机译:宏观和微观视角下共同生产可再生生物材料对沥青结合料性能的影响

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摘要

Conventional asphalt binder derived from the petroleum refining process is widely used in pavement engineering. However, asphalt binder is a non-renewable material. Therefore, the use of a co-production of renewable bio-oil as a modifier for petroleum asphalt has recently been getting more attention in the pavement field due to its renewability and its optimization for conventional petroleum-based asphalt binder. Significant research efforts have been done that mainly focus on the mechanical properties of bio-asphalt binder. However, there is still a lack of studies describing the effects of the co-production on performance of asphalt binders from a micro-scale perspective to better understand the fundamental modification mechanism. In this study, a reasonable molecular structure for the co-production of renewable bio-oils is created based on previous research findings and the observed functional groups from Fourier-transform infrared spectroscopy tests, which are fundamental and critical for establishing the molecular model of bio-asphalt binder with various biomaterials contents. Molecular simulation shows that the increase of biomaterial content causes the decrease of cohesion energy density, which can be related to the observed decrease of dynamic modulus. Additionally, a parameter of Flexibility Index is employed to characterize the ability of asphalt binder to resist deformation under oscillatory loading accurately.
机译:源自石油精制工艺的常规沥青粘合剂广泛用于路面工程。但是,沥青粘合剂是不可再生的材料。因此,由于其可再生性和对常规石油基沥青粘合剂的优化,近来使用可联产的可再生生物油作为石油沥青的改性剂在路面领域受到越来越多的关注。已经进行了重要的研究工作,主要集中在生物沥青粘合剂的机械性能上。然而,仍然缺乏从微观角度描述联产对沥青粘合剂性能的影响的研究,以更好地理解基本的改性机理。在这项研究中,根据先前的研究结果和傅立叶变换红外光谱测试中观察到的官能团,为联产可再生生物油建立了合理的分子结构,这对于建立生物分子模型至关重要。 -具有各种生物材料含量的沥青粘合剂。分子模拟表明,生物材料含量的增加导致内聚能密度的降低,这可能与观察到的动态模量的降低有关。另外,使用挠性指数的参数来准确表征沥青粘合剂在振荡载荷下抵抗变形的能力。

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