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Secondary microplastics generation in the sea swash zone with coarse bottom sediments: laboratory experiments

机译:底部沉积物较厚的海潮带中的次生塑料生成:实验室实验

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Marine beaches worldwide are nowadays exposed to significant contamination by plastics. On the Baltic beaches, polyethylene, polypropylene, and polystyrene are most abundant. We investigate the generation of microplastics particles (MPs, characteristic size from 0.5 to 5 mm) from larger plastic items in the sea swash zone using a laboratory rotating mixer filled with water and natural coarse beach sediment (marine pebbles). Inclination of the axis of rotation and the volume of the material were adjusted in such a way that mixing resembled a breaking wave in the swash zone. Plastic samples used were of the types most commonly found on the sea beaches. Experimental 2cm×2cm-large plastic items made of low-density polyethylene (LDPE) were manufactured from common new garbage bags (thickness 5 μm); those made of polypropylene (PP) and polystyrene (PS) were produced from single-use tableware; samples of foamed plastics were presented by cubes (with 2-cm sides) cut out of standard building insulator sheets (foamed PS). Four sets of 24-h-long experiments were conducted (for each type of plastic separately), with step-wise (every 3 hours) examination of the generated MPs mass, number of particles and their qualitative characteristics such as shape, quality of the surface, general behaviour while mixing, etc. Statistically significant dependencies are obtained for the increase in mass and in number of MPs with time for all four used kinds of plastics. Brittle solid PS is shown to be the most productive in terms of both mass and number of MPs generated. Anisotropic springing PP is the most resistant. Tensile tearing of LDPE and fragmentation of foamed PS to compounding bubbles/spherules show the variety of mechanisms involved in fragmentation of plastics in the swash zone. Increase in MPs mass and the number of MPs particles with time, as well the link between them, are important for field monitoring and numerical modelling. Potentially shape-selective operation of sieves during sampling and sorting of MPs particles of various shapes is discussed.
机译:如今,全世界的海洋海滩都受到塑料的严重污染。在波罗的海的海滩上,聚乙烯,聚丙烯和聚苯乙烯含量最高。我们使用装满水和天然粗糙海滩沉积物(海洋卵石)的实验室旋转混合器,研究在海流带中较大的塑料物品中产生的微塑料颗粒(MP,特征尺寸为0.5至5 mm)。旋转轴的倾斜度和物料的体积应进行调整,以使混合过程类似于斜盘区域中的破碎波。使用的塑料样品是在海滩上最常见的类型。用普通的新型垃圾袋(厚度为5μm)制造了由低密度聚乙烯(LDPE)制成的实验性2cm×2cm大塑料物品。聚丙烯(PP)和聚苯乙烯(PS)制成的那些是由一次性餐具生产的;泡沫塑料样品由从标准建筑绝缘板(泡沫PS)上切下的立方体(边长2厘米)提供。进行了四组24小时的实验(分别针对每种塑料),逐步(每3小时)检查生成的MP的质量,颗粒数量及其定性特征(例如形状,质量)。对于所有四种使用过的塑料,MP的质量和数量随时间的增加都获得了统计学上显着的依存关系。从产生的MP数量和数量来看,脆性固体PS表现出最高的生产率。各向异性回弹PP的抵抗力最大。 LDPE的拉伸撕裂和发泡PS破碎成复合气泡/小球显示出在斜盘区塑料破碎所涉及的各种机制。 MP的质量和MP粒子数量随时间的增加以及它们之间的联系对于现场监控和数值建模很重要。讨论了在对各种形状的MPs颗粒进行采样和分选过程中筛子的潜在形状选择操作。

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