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Chemically recycled polyvinyl chloride as a bitumen modifier: synthesis, characterisation and performance evaluation

机译:化学再循环聚氯乙烯作为沥青改性剂:合成,表征和性能评估

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摘要

Polyvinyl chloride (PVC) is one of the most widely produced thermoplastic polymer, used in the manufacture of a variety of valuable short and long life products. Nevertheless, the increasing demand for PVC and current ineffective disposal methods have made it a potentially severe environmental hazard. The chemical recycling of PVC through hydrolytic or aminolytic routes has shown significant promise, however, their end applications have been limited as of now. This study is concerned with the chemical modification of PVC by amines into additives, and its ensuing use as a performance enhancing modifier for bitumen. In view of this, additives were firstly synthesised by the amination of PVC with two kinds of polyamines; triethylenetetramine (TETA) and ethylene diamine (ED) respectively. These were then chemically characterised by solid state Nuclear Magnetic resonance (NMR) and elemental analysis. Subsequently, the aminated PVC additives were blended with virgin asphalt binder and its effectiveness was evaluated in terms of moisture susceptibility and rheological properties. The results of the preliminary laboratory studies indicated that the binders modified with the additives showed significantly improved anti-stripping properties and overall rheological performance as compared to conventional binder. Overall, the usage of such waste PVC based additives as modifier for bituminous mixtures represents an innovative approach to deal with a relevant recycling problem while simultaneously recovering a value-added material.
机译:聚氯乙烯(PVC)是最广泛生产的热塑性聚合物之一,用于制造各种有价值的短和长寿产品。然而,对PVC的不断增加和目前的无效处理方法使其成为可能性严重的环境危害。 PVC通过水解或氨基溶液途径的化学回收显示了显着的希望,然而,它们的最终应用已受到限制。本研究涉及通过胺对添加剂的PVC的化学改性,其随后用作沥青的性能增强改性剂。鉴于此,首先通过两种多胺的PVC胺化合成添加剂;三亚乙二胺(TETA)和乙二胺(ED)。然后通过固态核磁共振(NMR)和元素分析化学表征。随后,将胺化PVC添加剂与维托沥青粘合剂混合,并在水分敏感性和流变性能方面评价其有效性。初步实验室研究结果表明,与常规粘合剂相比,用添加剂改性的粘合剂显示出显着提高的抗剥离性能和整体流变性能。总的来说,这种废物PVC基于沥青混合物的改性剂的用途代表了一种创新方法,以处理相关的回收问题,同时回收增值材料。

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