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Rheological evaluation of bitumen modified using antistripping additives synthesised from waste polyethylene terephthalate (PET)

机译:利用废聚乙烯对苯二甲酸乙二醇酯(PET)合成的防逆转录添加剂改性沥青的流变评价

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摘要

The use of amine-based additives is common practice to improve the stripping resistance and performance properties of bituminous mixtures. This study is concerned with the synthesis of additives derived from waste Polyethylene Terephthalate (PET), and investigation of its effect as an effective modifier for bitumen. Firstly, two amine functionalised additives namely bis(2-hydroxyethyl) terephthalamide (BHETA) and bis(2-aminoethyl) terephthalamide (BAET) were chemically synthesised using an aminolysis process from waste PET. The effects of BAET and BHETA on bitumen and bituminous mixture performance were then identified through conventional binder, Marshall Stability, Hot water stripping, Superpave performance, and Hamburg Wheel Tracking tests. The results indicated that BAET modified bitumen showed a significant improvement in moisture resistance as well as other properties such as enhanced Marshall stability, low and high temperature performance. On the other hand, BHETA modified bitumen did not show similar characteristics and exhibited only a marginal performance improvement as compared to the virgin bitumen. It was inferred from the proposed interaction mechanism that the terminal functional group of the additives has a substantial effect in determining the performance properties of such modified binders. Overall, this study has confirmed the possibility of using waste PET materials as an environmentally friendly modifier for bituminous mixtures.
机译:胺类添加剂的使用是常见的做法,以改善沥青混合物的剥离性和性能性能。本研究涉及合成来自废聚对苯二甲酸乙二醇酯(PET)的添加剂,以及对其作为沥青的有效改性剂的效果进行调查。首先,两种胺官能化添加剂即双(2-羟乙基)对苯二酰胺(BHETA)和双(2-氨基乙基)对苯胺(BAET)的使用来自废PET的氨基溶解方法化学合成。然后通过常规粘合剂,马歇尔稳定性,热水剥离,超级粘接性能和汉堡轮跟踪试验鉴定BAET和BHETA对沥青和沥青混合物性能的影响。结果表明,保鲜素改性沥青显示出耐湿性和其他性能的显着改善,如提高的马歇尔稳定性,低温和高温性能。另一方面,与维珍沥青相比,BHETA改性沥青没有显示出类似的特征,并且只表现出边际性能改善。从所提出的相互作用机理推断,添加剂的末端官能团在确定这种改性粘合剂的性能性质方面具有显着效果。总体而言,本研究证实了使用废物PET材料作为用于沥青混合物的环保改性剂的可能性。

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