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Feasibility Study on the Application of Fabricated Multipurpose Food Packaging Plastic (MFPP) Liner as Alternative Landfill Liner Material in Sustainable Landfill Infrastructure Model

机译:制造多功能食品包装塑料(MFPP)衬里在可持续垃圾填埋基础设施模型中替代垃圾填埋衬里材料的可行性研究

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Multipurpose Food Packaging Plastic (MFPP) is one of the largest residential and commercial solid waste all over the world. BWP is categorized under Non-Biodegradable Plastic Waste (N-BPW). Due to its inability to degrade, this abundance of N-BPW caused space decrement in landfill. Many methods have been proposed for recycling of N-BPW such as incorporating N-BPW into road construction and added material in concrete production. In the present study, the feasibility of using MFPP as landfill liner material is studied through a series of laboratory testing in terms of mechanical and chemical characteristics. The liner sample was prepared in terms of a fabricated layer (combination of 60 layers (Sample A) and 80 layers (Sample B) of a single plastic). The fabricated layers were prepared by applying hot-pressing technique to increase the strength of the surface attachment between each of the layers. The prepared fabricated MFPP liners were tested for Ultimate Tensile Strength Test (UTS), Scanning Electron Microscopy (SEM) and X-Ray Distraction (XRD). The tested samples were then compared with the Conventional Geomembranes (GMs). Obtained results indicated that proposed fabricated MFPP Liner had 70% similar characteristics to GMs. In addition, the fabricated MFPP Liners have an ability to sustain maximum loading higher than Conventional GMs. These desirable characteristics indicated that the fabricated MFPP Liners has potential to be used as landfill liner material.
机译:多用途食品包装塑料(MFPP)是世界各地最大的住宅和商业固体废物之一。 BWP在非可生物降解的塑料废物(N-BPW)下分类。由于其无法降解,这种N-BPW丰富导致垃圾填埋场的空间减少。已经提出了许多方法,用于再循环N-BPW,例如将N-BPW掺入道路施工并在混凝土生产中添加材料。在本研究中,通过在机械和化学特性方面,通过一系列实验室测试研究了使用MFPP作为垃圾填埋衬垫材料的可行性。根据制造的层(单层(样品A)和80层(样品B)的组合)制备衬垫样品。通过施加热压技术来制备制造的层以增加每个层之间的表面附着的强度。测试制备的制造的MFPP衬垫,用于最终拉伸强度试验(UTS),扫描电子显微镜(SEM)和X射线分散(XRD)。然后将测试的样品与常规的土工膜(GMS)进行比较。获得的结果表明,提出的制造的MFPP衬里对GMS具有70%的特性。此外,制造的MFPP衬垫具有高于常规GMS的最大负荷的能力。这些理想的特性表明,制造的MFPP衬垫具有用作垃圾填埋衬垫材料的电位。

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