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首页> 外文期刊>Journal of Cleaner Production >Investigating the 'circular propensity' of road bio-binders: Effectiveness in hot recycling of reclaimed asphalt and recyclability potential
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Investigating the 'circular propensity' of road bio-binders: Effectiveness in hot recycling of reclaimed asphalt and recyclability potential

机译:调查道路生物粘合剂的“循环倾向”:再生沥青和可回收性潜力热回收的有效性

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In pavement engineering, the use of bio-binders and reclaimed asphalt (RA) promotes the principles of sustainability and circular economy, without penalizing or even improving the performance. In this regard, this study focuses on the "circular propensity" of bio-binders obtained by partially replacing a conventional bitumen with a bio-oil generated as a residue by the wood and paper industries. Specifically, the objectives are: 1) to assess the effectiveness of bio-binders in the hot recycling of traditional RA and 2) to evaluate, in a long-term perspective, their recyclability potential. For this purpose, two severely aged binders (one "RAP" binder recovered from reclaimed asphalt and one laboratory-produced "BioRAP" binder) and two fresh binders (one bio-binder and one bitumen) are blended to reproduce four hot recycled binders. The mechanical behaviour and the aging susceptibility of these blends are compared to those of a control virgin bitumen. The experimental investigation includes conventional tests, rheological testing and modelling (modified CAM model) as well as chemical analysis (Fourier transform infrared spectroscopy). The main results indicate that the hot recycling of reclaimed bio-asphalt (bio-RA) may lead to mixtures less susceptible to cracking as compared to the recycling of conventional RA, as well as the use of bio-binders in the hot recycling of conventional RA may be beneficial in terms of cracking. Even though the blends with the bio-binder are characterized by a lower aging rate, the permanent deformation behaviour of all the recycled blends studied is comparable in unaged and short-term aged conditions, i.e. the circumstances under which rutting is usually a concern. Finally, the recycled blends show significantly lower aging susceptibility than the control bitumen. Overall, these results suggest that the bio-binders studied are effective in the hot recycling of RA and 100% recyclable, and their use in asphalt pavements can lead to significant technical and environmental benefits. (C) 2020 Elsevier Ltd. All rights reserved.
机译:在路面工程中,生物粘合剂和再生沥青(RA)的使用促进了可持续性和循环经济的原则,而不会惩罚甚至提高性能。在这方面,该研究侧重于通过将常规沥青部分替换为由木材和造纸工业作为残留物产生的生物油的常规沥青而获得的生物粘合剂的“圆形倾态”。具体而言,目的是:1)评估生物粘合剂在传统RA和2的热回收中的有效性,以长期的视角,其可回收性潜力。为此目的,两种严重的老化粘合剂(从回收沥青中回收的一个“RAP”粘合剂,并将一个实验室产生的“生物”粘合剂(一个生物粘合剂)和两个新鲜的粘合剂(一个生物粘合剂和一个沥青)中复制,以再现四种热再循环的粘合剂。将这些混合物的机械行为和老化敏感与对照原维沥青的力量进行比较。实验研究包括常规测试,流变学测试和建模(改进的CAM模型)以及化学分析(傅里叶变换红外光谱)。主要结果表明,与常规RA的再循环相比,再生生物 - 沥青(Bio-Ra)的热再循环可能导致混合物易受裂化的混合物,以及在常规的热再循环中使用生物粘合剂RA可能在开裂方面有益。即使具有生物粘合剂的混合物的特征在于较低的老化率,所研究的所有再循环混合物的永久变形行为也是相当的,但在一般和短期老化条件下是可比的,即垃圾通常是一个问题的情况。最后,再循环混合物显示出比对照沥青的显着降低的老化敏感性。总体而言,这些结果表明所研究的生物粘合剂在Ra和100%可回收的热回收中有效,它们在沥青路面的使用可能导致显着的技术和环境效益。 (c)2020 elestvier有限公司保留所有权利。

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