大型植物缓冲带对塑料微粒的保留机制

V. Kazmiruk
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引用次数: 0

摘要

合成高分子材料的难降解微粒(微塑料)污染环境是当今日益突出的全球性问题之一。同时,塑料微粒在环境中的行为研究还处于初级阶段,防止和调节微塑料污染水体的方法也处于初级阶段。在世界科学实践中,作者首次提出利用大型植物的屏障作用来实现这些目的。А通过对不同聚合物基质(聚乙烯、聚苯乙烯、聚对苯二甲酸乙二醇酯、聚酯)的塑料微粒、空气-水和浸没植被以及叶子漂浮在水面上的植物进行现场和实验室实验,确定了许多直接和间接导致大型植物微塑料滞留的机制。根据某一特定物理过程的优势,这些机制可分为四组:(1)对水和气团运动的额外阻力的出现。水和空气流动的运动结构的变化促进了微粒运动的减缓,它们被植物沉积和保留;(2)大型植物丛降低了风浪和雨滴的动能,阻止了已经被捕获的微粒的重复运动;(3)塑料微粒的机械滞留是由于植物结构的不规则性、茎叶交织形成的筛状结构、植物凋落物的体积、植物表面与微粒的粘附性(被周生体表面的粘性增强了这种粘附性)造成的;(4)塑料微粒对植物和彼此之间的吸引和粘附是电场相互作用的结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Mechanisms of plastic microparticles retention by buffer zones with macrophytes
Environmental pollution by resistant to degradation microparticles of synthetic polymer materials (microplastics) is one of the growing global problems nowadays. At the same time, research on the behavior of plastic microparticles in the environment is only at an early stage, as well as the development of methods for preventing and regulating microplastic contamination of water bodies. For the first time in world scientific practice, the author proposed to use the barrier role of macrophytes for these purposes. А number of mechanisms directly and indirectly leading to the microplastic retention by macrophytes have been identified based on field and laboratory experiments with plastic microparticles with different polymer matrix (polyethylene, polystyrene, polyethylene terephthalate, polyester) and air-water and immersed vegetation, as well as plants with leaves floating on the water surface. According to the predominance of a particular physical process, these mechanisms can be combined into four groups: (1) The appearance of additional resistance to the movement of water and air masses. Change in the kinematic structure of water and air flows promotes slowing down the movement of microparticles, their sedimentation and retention by plants; (2) Decreasing the kinetic energy of wind waves and raindrops by thickets of macrophytes prevents repeated movement of already trapped microparticles; (3) Mechanical retention of plastic microparticles occurs as a result of the existence of irregularities in the structure of plants, sieve-like structures made of interweaving of stems and leaves, the bulk of plant litter, adhesion of plant surfaces and microparticles, which is enhanced by the sticky surfaces of the periphyton; (4) The attraction and adhesion of plastic microparticles to plants and to each other occurs as a result of the interaction of electric fields.
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