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Bio-based palm oil as an additive for asphalt binder: Chemical characterization and Theological properties

机译:基于生物的棕榈油作为沥青粘合剂添加剂:化学表征和神学性质

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The asphalt industry has been increasingly concerned with solutions to develop new binder materials from sustainable resources that meet environmental and technical criteria. In this context, binder flow modifiers emerged as an alternative to reduce mixing and compaction temperatures, influencing binder performance. This study evaluated the effect of hydrogenated palm oil fat (HPF) and hydrogenated palm fat amide (FAA) - synthesized from palm oil - on the empirical, chemical, and rheological properties of asphalt binder (AB). The HPF and FAA were characterized by Fourier Transform Infrared Spectroscopy (FTIR), 1H and 13C Nuclear Magnetic Resonance NMR, Thermogravimetric Analysis (TGA and DSC). The additives presented good thermal resistance for paving applications and behave as low-viscosity modifiers, improving the workability of the asphalt binders reducing mixing and compaction temperatures. The additives have little effect on the rutting resistance at higher temperatures; however, HPF promoted greater resistance at lower temperatures. After short-term aging it was observed that both HPF and FAA present a rejuvenating effect. The peculiarities of crystalline phases of HPF and FAA, which results in different melting temperatures, was recognized to be responsible for the rheological effects linked with viscoelasticity. The results highlight the potential of using derivatives of palm oil as a binder flow modifier, with technical, economic, and environmental benefits.(c) 2021 Elsevier Ltd. All rights reserved.
机译:沥青行业越来越关注从符合环境和技术标准的可持续资源开发新的粘合剂材料的解决方案。在这种情况下,粘合剂流量改性剂作为减少混合和压实温度的替代方案,影响粘合剂性能。本研究评估了含氢棕榈油脂肪(HPF)和氢化棕榈脂酰胺(FAA)的作用 - 从棕榈油 - 对沥青粘合剂(AB)的实证,化学和流变性能。 HPF和FAA的特征在于傅里叶变换红外光谱(FTIR),1H和13C核磁共振NMR,热重分析(TGA和DSC)。添加剂呈现出良好的散热性,用于铺设应用,并表现为低粘度改性剂,提高了减少混合和压实温度的沥青粘合剂的可加工性。添加剂对较高温度的抵抗抗性几乎没有影响;然而,HPF在较低温度下促进了更大的抗性。短期老化后,观察到HPF和FAA既具有恢复活力的效果。结果在不同熔化温度下,HPF和FAA的结晶相的特性被认为是负责与粘弹性相关的流变效应。结果突出了使用棕榈油衍生物作为粘合剂流量改进剂的潜力,具有技术,经济和环境效益。(c)2021 Elsevier Ltd.保留所有权利。

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