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Recycling of polyethylene terephthalate (PET) plasticudbottle wastes in bituminous asphaltic concrete

机译:回收聚对苯二甲酸乙二醇酯(PET)塑料 ud沥青沥青混凝土中的瓶装废物

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摘要

This research sheds light on the concept of eco-friendly road construction which comprises eco-design, eco-extraction, eco-manufacturing, eco-construction,udeco-rehabilitation, eco-maintenance, eco-demolition, and socioeconomic empowerment. It also revealed the challenges being faced in its adoption and the benefits derivable from its application. Furthermore, the effects of recycling PET plastic bottle wastes produced in North Central Nigeria in bituminous asphaltic concrete (BAC) used in flexible pavement construction were also evaluated. The mix design consists of 60/70 penetration-grade asphaltic concrete (5%), 68% coarse aggregate, 6% fine aggregate, and 21% filler using the dry process at 170°C. The optimum bitumenudcontent (OBC) for conventional BAC was obtained as 4% by weight of total aggregates and filler. Polymer-coated aggregate (PCA)-modified BAC seems preferable because it has the potential to utilize more plastic wastes with a higher optimum plastic content (OPC) of 16.7% by weight of total aggregates and filler compared to that of 9% by weight of OBC achieved by PMB-BAC. For both PMB- and PCA-modified BAC, an increase in air void, void in mineral aggregate, and Marshall stability were observed. Eco-friendly road construction which recycles PET wastes should be encouraged by government considering its potential environmental and economicudbenefits.
机译:这项研究阐明了生态道路建设的概念,其中包括生态设计,生态提取,生态制造,生态建设,生态修复,生态维护,生态拆除和赋予社会经济权力。它还揭示了采用它所面临的挑战以及其应用所带来的好处。此外,还评估了在尼日利亚中北部生产的,用于柔性路面施工的沥青沥青混凝土(BAC)中回收的PET塑料瓶废物的回收利用效果。混合料设计由60/70渗透等级的沥青混凝土(5%),68%的粗骨料,6%的细骨料和21%的填料在170°C的干燥工艺组成。以总骨料和填料的4%(重量)获得常规BAC的最佳沥青含量(OBC)。聚合物包覆的骨料(PCA)改性的BAC似乎是可取的,因为它有可能利用更多的塑料废料,其最佳塑料含量(OPC)为总骨料和填料的16.7%(重量),而最佳的塑料含量为9%(重量)。 PBC-BAC实现的OBC。对于PMB和PCA改性的BAC,观察到空气空隙,矿物骨料空隙和马歇尔稳定性增加。考虑到潜在的环境和经济效益,政府应鼓励回收PET废料的环保道路建设。

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