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The Role of Additives in Warm Mix Asphalt Technology: An Insight into Their Mechanisms of Improving an Emerging Technology

机译:添加剂在热拌沥青技术中的作用:对改善新兴技术机理的见解

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摘要

The asphalt industry’s incentive to reduce greenhouse gas emissions has increased since the 1990s due to growing concerns on environmental issues such as global warming and carbon footprint. This has stimulated the introduction of Warm Mix Asphalt (WMA) and its technologies which serve the purpose of reducing greenhouse gas emissions by reducing the mixing and compaction temperatures of asphalt mix. WMA gained popularity due to the environmental benefit it offers without compromising the properties, performance and quality of the asphalt mix. WMA is produced at significantly lower temperatures (slightly above 100 °C) and thus results in less energy consumption, fewer emissions, reduced ageing, lower mixing and compaction temperatures, cool weather paving and better workability of the mix. The latter of these benefits is attributed to the incorporation of additives into WMA. These additives can also confer even better performance of WMA in comparison to conventional Hot Mix Asphalt (HMA) methods. Even though there are recommended dosages of several WMA additives, there is no general standardized mixture design procedure and this makes it challenging to characterize the mechanism(s) of action of these additives in the warm mix. The effects of the addition of additives into WMA are known to a reasonable extent but not so much is known about the underlying interactions and phenomena which bring about the mechanism(s) by which these additives confer beneficial features into the warm mix. Additives in a certain way are being used to bridge the gap and minimize or even nullify the effect of the mixing temperature deficit involved in WMA processes while improving the general properties of the mix. This review presents WMA technologies such as wax, chemical additives and foaming processes and the mechanisms by which they function to confer desired characteristics and improve the durability of the mix. Hybrid techniques are also briefly mentioned in this paper in addition to a detailed description of the specific modes of action of popular WMA technologies such as Sasobit, Evotherm and Advera. This paper highlights the environmental and technical advantages of WMA over the conventional HMA methods and also comprehensively analyzes the mechanism(s) of action of additives in conferring desirable characteristics on WMA, which ultimately improves its durability.
机译:自1990年代以来,由于对诸如全球变暖和碳足迹之类的环境问题的关注日益增加,沥青行业减少温室气体排放的动机有所增加。这刺激了热混合沥青(WMA)及其技术的引入,该技术通过降低沥青混合料的混合和压实温度来减少温室气体排放。 WMA因其在不损害沥青混合料的性能,性能和质量的前提下所带来的环境效益而广受欢迎。 WMA的生产温度要低得多(略高于100°C),因此能减少能耗,排放,减少老化,降低混合和压实温度,凉爽的天气并提高混合料的可加工性。这些好处的后者归因于在WMA中加入了添加剂。与传统的热混合沥青(HMA)方法相比,这些添加剂还可以赋予WMA更好的性能。即使建议使用几种WMA添加剂的剂量,也没有通用的标准化混合物设计程序,这使得表征这些添加剂在温热混合物中的作用机理具有挑战性。在WMA中添加添加剂的效果在一定程度上是已知的,但对于潜在的相互作用和现象知之甚少,这些相互作用和现象会导致这些添加剂将有益特征赋予温暖混合物的机理。添加剂以某种方式被用来弥合间隙,并最小化甚至消除WMA过程中涉及的混合温度不足的影响,同时改善混合物的一般性能。这篇综述介绍了WMA技术,例如蜡,化学添加剂和发泡工艺,以及它们发挥作用以赋予所需特性并改善混合物耐久性的机理。除了对流行的WMA技术(如Sasobit,Evotherm和Advera)的特定操作模式进行详细说明之外,本文还简要提及了混合技术。本文重点介绍了WMA与常规HMA方法相比在环境和技术上的优势,并全面分析了添加剂在WMA中赋予所需特性的作用机理,从而最终提高了WMA的耐用性。

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