Experimental Study on the Use of Selected Rejuvenators, Crumb Rubber and Plastic Waste for Asphalt Mixture Containing 50% Reclaimed Asphalt

IF 1 Q3 ENGINEERING, MULTIDISCIPLINARY Advances in Science and Technology-Research Journal Pub Date : 2023-10-19 DOI:10.4028/p-rnxt7f
Majda Belhaj, Pavla Vackova, Jan Valentin
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Abstract

Nowadays’ sustainability-driven systems require a product to be environmentally beneficial as well as cost-effective whilst maintaining its great performance. In these circumstances, the pavement industry has emphasized its concern over waste production, reduced materials costs and conserving resources. Henhce, the seeking for new engineering solutions to move toward more sustainable, eco-friendly, and economically beneficial management. In this context, the use of RA (Reclaimed Asphalt) in the new asphalt mixtures has generated well-defined environmental benefits especially in terms of the reduction in raw-material consumption and possibility to upcycle the waste derived from existing old pavements. This study aims to evaluate the efficiency of the addition of selected rejuvenators which help to restore some of the properties of aged bituminous binder in RA, crumb rubber and plastic (LDPE) waste on the performance of asphalt mixture designed with elevated RA content (50 %). Mechanical performance was evaluated by means of laboratory investigations for typical characteristics dedicated to durability, stiffness and cracking potential. The results showed that a proper dosage of a suitable type of rejuvenation agent as well as the crumb rubber and plastic waste can enhance the overall durability of the elevated RA content asphalt mixtures.
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再生剂和废橡胶、废塑料在含50%再生沥青沥青混合料中的应用试验研究
如今,可持续发展驱动的系统要求产品既环保又具有成本效益,同时保持其优异的性能。在这种情况下,路面行业强调其对废物产生,降低材料成本和节约资源的关注。因此,寻求新的工程解决方案,朝着更可持续、更环保、更经济的管理方向发展。在这种情况下,在新沥青混合物中使用再生沥青产生了明确的环境效益,特别是在减少原材料消耗和可能升级回收现有旧路面产生的废物方面。本研究旨在评估在RA、橡胶和塑料(LDPE)废料中添加特定的再生剂对提高RA含量(50%)设计的沥青混合料性能的效率,这些再生剂有助于恢复老化沥青粘结剂的一些性能。机械性能是通过实验室调查来评估的典型特征,致力于耐久性,刚度和开裂潜力。结果表明,适当掺量的合适类型的回春剂和橡胶、塑料废弃物的掺量可以提高RA含量高的沥青混合料的整体耐久性。
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来源期刊
Advances in Science and Technology-Research Journal
Advances in Science and Technology-Research Journal ENGINEERING, MULTIDISCIPLINARY-
CiteScore
1.60
自引率
27.30%
发文量
152
审稿时长
8 weeks
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