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Geo-environmental solution of plastic solid waste management using stabilization process

机译:稳定过程塑料固体废物管理地理环境解决方案

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摘要

Plastic pollution is one of the most pressing environmental concerns today. Plastic wastes are usually left unattended and as they resist biodegradation, they pile up in the soil and in the sea environments. Therefore, their recovery and reuse in different applications should be recognized as the best remedial action. This study presents a tangible example of plastic reuse, where a sustainable method is proposed and tested by altering the plastic waste into useful material for soil stabilization. For this purpose, collected waste plastic bags were shredded into strips and they were mixed with clayey soil by 0.2, 0.3, and 0.4% of weight. The effect of adding plastic strips into soil on the mechanical properties of the mixture was then monitored through an experimental survey. Results depicted a meaningful increase in the California bearing ratio (CBR) and unconfined compressive strength (UCS) with increased percentage of plastic strips from 0 to 0.4%. The maximum dry density (MDD) was observed at 0.2% of plastic additions. It was concluded that mixing certain amounts of plastic bag strips to the clay samples could improve the geotechnical properties to a level where the mixture could be used as a subgrade layer while providing a useful reuse option that would potentially reduce plastic piling in the environment.
机译:塑料污染是今天最紧迫的环境问题之一。塑料废物通常无人看管,因为它们抵抗生物降解,它们堆积在土壤和海洋环境中。因此,在不同的应用程序中恢复和重用应被认为是最佳补救措施。本研究呈现了塑料再利用的有形实例,其中提出了可持续的方法,并通过将塑料废物改变为土壤稳定的有用材料来测试和测试。为此目的,将收集的废物塑料袋切成条带,将粘土土壤混合0.2,0.3和0.4%的重量。然后通过实验调查监测将塑料条添加到混合物的机械性能上的塑料。结果描绘了加州轴承比(CBR)和非整合抗压强度(UCS)的有意义增加,塑料条百分比从0升至0.4%。在0.2%的塑料添加剂中观察到最大干密度(MDD)。得出结论,将某些量的塑料袋条与粘土样品混合可以将岩土性质改善到混合物可以用作路基层的水平,同时提供有用的再利用选项,其可能会在环境中减少塑料堆积。

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