首页> 外文期刊>Journal of Polymers and the Environment >Performance Assessment of a Composite Material Based on Kraft Paper and a Resin Formulated with Expanded Polystyrene Waste: A Case Study from Mexico
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Performance Assessment of a Composite Material Based on Kraft Paper and a Resin Formulated with Expanded Polystyrene Waste: A Case Study from Mexico

机译:基于牛皮纸和发泡聚苯乙烯废料配制的树脂的复合材料的性能评估:来自墨西哥的案例研究

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The present work proposes the recycling of expanded polystyrene (EPS) waste, in order to contribute to reduce the excessive accumulation of this material in sanitary landfills in Mexico. The recovery process of EPS is proposed using a biosolvent (Lemon limonene-LL) to prepare a polymeric solution (EPS-LL), and its subsequent evaluation as a coating on a lignocellulosic Kraft paper of 200 g/m(2) and a Gurley porosity of 15-30 seg/100 ml. The effect of different resin concentrations and resin coating layers on the compressive and tensile strength was tested, as well as the resistance of the treated paper to water absorption. Results indicated that the coating layers gradually increased the mechanical strength of the Kraft paper, both tensile and compressive, but only up to a certain grammage of resin applied. Regarding to water absorptiveness, the treated paper showed a significant reduction of water absorption, from 230 g/m(2) with one resin layer to 23 g/m(2) with three resin layers. The results demonstrate the potential of recycling EPS to obtain a composite material with good hydrophobic characteristics and mechanical strength. This study also intends to provide an added value of this recycled polymer, rather than continuing the current custom of discarding it in sanitary landfills.
机译:当前的工作提出了膨胀聚苯乙烯(EPS)废物的回收利用,以有助于减少这种材料在墨西哥卫生垃圾填埋场中的过度积累。提出了使用生物溶剂(柠檬柠檬烯-LL)制备聚合物溶液(EPS-LL)的EPS回收工艺,并随后对其在200 g / m(2)的木质纤维素牛皮纸和Gurley上的涂层进行评估孔隙率为15-30 seg / 100 ml。测试了不同树脂浓度和树脂涂层对压缩强度和拉伸强度的影响,以及处理后的纸张对吸水的抵抗力。结果表明,涂​​层逐渐增加了牛皮纸的机械强度,包括拉伸和压缩性能,但仅在施加一定克数的树脂的情况下有效。关于吸水性,处理后的纸张显示出显着的吸水率降低,从一个树脂层的230 g / m(2)到三个树脂层的23 g / m(2)。结果表明回收EPS的潜力,以获得具有良好疏水特性和机械强度的复合材料。这项研究还旨在提供这种回收聚合物的附加价值,而不是继续按照目前的习惯将其丢弃在卫生垃圾填埋场。

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