再生沥青路面沥青骨料分离技术研究进展

Decheng Feng , Jiwei Cao , Libo Gao , Junyan Yi
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引用次数: 6

摘要

再生沥青路面含有沥青、骨料等不可再生资源,具有重要的回收利用价值。然而,到目前为止,只有一小部分RAP材料可以用于再生沥青路面的建设,并且在下层的使用被认为是低价值的利用。造成这种缺点的最重要的原因之一是RAP材料的假粒度和伪级配问题。因此,确定合适的沥青骨料分离技术,对于提高RAP材料在再生沥青混合料中的利用率,提高再生沥青路面的施工质量至关重要。为了解决这一问题,本文对RAP材料的沥青-骨料分离技术及其前景进行了系统的综述。首先,根据沥青混合料的组成和RAP材料老化后的特性,提出RAP分离的关键技术;然后,对RAP材料的物理、化学、生物分离方法的概念、原理及实现方法进行了综合分析。并通过与石化工业中相关分离技术的比较,讨论了各种分离技术的优缺点。RAP材料各种沥青骨料分离方法的应用前景可为沥青路面固废回收技术的升级和拓展提供参考。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Recent developments in asphalt-aggregate separation technology for reclaimed asphalt pavement

Reclaimed asphalt pavement (RAP) has significant recycling value because it contains nonrenewable resources including asphalt and aggregate. However, thus far, only a small part of RAP materials can be used in the construction of recycled asphalt pavement, and the usage is regarded as a low-value utilization in the underlying layers. One of the most important reasons for this shortcoming is the problem of false particle size and pseudo gradation of RAP materials. Therefore, identifying suitable asphalt-aggregate separation technology is essential for improving the utilization of RAP materials in recycled asphalt mixture and enhancing the construction quality of recycled asphalt pavement. To address this, the paper performed a systematic review of asphalt-aggregate separation technologies for processing RAP materials and their prospects. Firstly, based on the composition of the asphalt mixture and the characteristics of RAP materials after aging, the key RAP separation technologies were proposed. Then, the concept, principle, and implementation methods of physical, chemical, and biological separation methods of RAP materials were comprehensively analyzed. Moreover, the advantages and disadvantages of various separation technologies were discussed by comparing them with the related technologies in the petrochemical industry. The application prospects of various asphalt-aggregate separation methods for RAP materials can provide a reference for upgrading and expanding solid waste recycling technology for asphalt pavement.

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