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Recycling and Recovery of PE-PP-PET-based Fiber Polymeric Wastes as Aggregate Replacement in Lightweight Mortar: Evaluation of Environmental Friendly Application

机译:回收和恢复PE-PP-PET-based纤维高分子废弃物总替换轻质砂浆:评估环境友好的应用程序

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摘要

Waste polymeric material, classified as secondary raw material, mainly consisting of selected polyolefins, PE and PP, and PET has brought great pressure on the environment, due to the large quantities produced by the urban lifestyles and economic activity. This research evaluated the possibility to reuse the plastic waste as aggregates in hydraulic lime based composite mortars. The composite mortars were prepared by replacing the conventional aggregate, silica sand, with 10, 15, and 20 % of fiber polymeric waste in a mixture of lime and water. The chemico-physical interaction between the recycled plastic aggregates and the lime matrix was examined through FUR, X-Ray diffraction and morphological analyses. The effect of fiber polymeric waste on the degree of hydration and mechanical performances of the produced composites was also evaluated. Experimental results show that the good chemical interaction between the fiber plastic aggregates and -the mortar induced an improvement of ductility of mortar composites. However, the plastic waste limited the degree of hydration of the hydraulic lime, due to the organic charac-terof the plastic as opposed to the inorganic character of lime.
机译:聚合物材料浪费,属于次要的原材料,主要是选择组成的聚烯烃、PE和PP和PET带来了很好对环境的压力,由于大城市生活方式和产生的数量经济活动。重用塑料垃圾的可能性基于聚合物在水硬石灰复合迫击炮。取代传统的聚合,二氧化硅沙子、10、15日和20%的纤维聚合物浪费在石灰和水的混合物。chemico-physical循环之间的相互作用塑料总量和石灰矩阵检查通过皮毛、x射线衍射和形态分析。聚合物的水化程度和浪费生产的机械性能复合材料也被评估。结果表明,良好的化学相互作用纤维塑料总量和——之间的关系砂浆诱导延性的改善砂浆复合材料。液压的水化程度有限石灰,由于有机charac-terof塑料与无机的石灰。

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