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Recycling of Post-Consumer PET Plastic Waste Bottles in Non-Cement Composites for Construction Applications

机译:在施工应用中的非水泥复合材料中的消费者宠物塑料废瓶回收

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This study focused on developing and evaluating non-cement composites for construction applications using post-consumer polyethylene terephthalate (PET) plastic bottles. A total of two types of non-cement composites, namely, pervious PET composite (PPC) and PET soil composite (PSC), were developed. In addition, nine PPC mixes and five PSC mixes were designed using different PET and soil contents. Using the mix designs, cylindrical samples of PPC and PSC were produced in mold by compacting a mixture containing molten PET and heated soil or aggregates or both in accordance with proportions determined from mix design. Dry cylindrical samples of PPC were tested for indirect tensile strength and permeability in a unique manner. On the other hand, dry PSC samples were tested for compressive strength and moisture susceptibility tests. A PET content of 7.5 % PET was found to provide maximum tensile strength values among all PPC samples tested in this study. It was also found that using PET alone in PPC mix is not strong enough in binding aggregates and, therefore, 10 %soil was found to provide maximum strength. Permeability values of PPC mix decreased with an increase in both PET and soil content. The developed PSC mixes produced higher compressive strength values as compared to control samples containing up to 10 % cement; 25 % PET content provided strength of approximately 4,690 psi. Increase in PET content made PSC samples more ductile and moisture resistant. Overall, findings from this study indicate that PPC and PSC could potentially be used for construction applications and offer an effective technique for diverting a large amount of PET plastic from landfills and incinerators.
机译:本研究专注于使用消费后聚对苯二甲酸酯(PET)塑料瓶来开发和评估非水泥复合材料进行施工应用。开发了总共两种类型的非水泥复合材料,即可透过的PET复合材料(PPC)和PET土壤复合物(PSC)。此外,使用不同的PET和土壤含量设计九种PPC混合物和五种PSC混合物。使用混合设计,通过将含有熔融PET和加热的土壤或聚集体的混合物压实含有熔融PET和加热的土壤或聚集体的混合物,或者按照从混合设计确定的比例的比例来制备PPC和PSC的圆柱形样品。测试PPC的干式圆柱样品以以独特的方式进行间接拉伸强度和渗透性。另一方面,测试干燥的PSC样品用于抗压强度和湿度敏感性测试。发现7.5%PET的PET含量在本研究中测试的所有PPC样品中提供最大的拉伸强度值。还发现,单独使用PET在PPC混合物中的结合聚集体不足,因此,发现10%的土壤以提供最大强度。 PPC混合物的渗透率随着PET和土壤含量的增加而降低。与含有高达10%水泥的对照样品相比,开发的PSC混合产生更高的抗压强度值; 25%PET含量提供约4,690 psi的强度。增加PET含量使PSC样品更具延展性和耐湿性。总的来说,来自该研究的结果表明,PPC和PSC可能用于施工应用,并提供一种从垃圾填埋场和焚烧炉转移大量PET塑料的有效技术。

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