首页> 外文期刊>International journal of applied mechanics >Removal Effectiveness of Nanoplastics (< 400 nm) with Separation Processes Used for Water and Wastewater Treatment
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Removal Effectiveness of Nanoplastics (< 400 nm) with Separation Processes Used for Water and Wastewater Treatment

机译:去除纳米塑料(<400nm)的效果(<400nm),用于水和废水处理的分离过程

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Microplastics and nanoplastics are abundant in the environment, and the fate and impact of nanoplastics are of particular interest because of their small size. Wastewater treatment plants are a sink for nanoplastics, and large quantities of nanoplastics are discharged into surface waters through wastewater as well as stormwater effluents. There is a need to understand the fate and removal of nanoplastics during water, wastewater, and stormwater treatment, and this study investigated their removal on a bench-scale using synthesized nanoplastics (<400 nm) to allow controlled experiments. Plastic particles were created in the lab to control their size, and bench-scale dewatering devices were tested for their ability to remove these particles. Filtration with a 0.22 m filter removed 92 +/- 3% of the particles, centrifugation at 10,000 rpm (670,800 g) for 10 min removed 99 +/- 1% of the particles, and ballasted flocculation removed 88 +/- 3%. These results provide a general idea of the magnitude of the removal of nanoplastics with separation processes, and more work is recommended to determine the degree of removal with full-scale unit processes. Even though the removal was good using all three treatments, smaller particles escaping treatment may increase the nanoplastics concentration of receiving water bodies and impact aquatic ecosystems.
机译:微塑料和纳米型塑料在环境中丰富,并且由于它们的体积小,纳米塑料的命运和撞击特别感兴趣。废水处理厂是纳米塑料的水槽,并且大量的纳米纳薄剂通过废水以及雨水流出物排放到表面水中。需要了解水,废水和雨水处理期间的命运和去除纳米塑料,并且本研究研究了使用合成的纳米玻璃塑料(<400nm)的长凳上的去除以允许受控实验。在实验室中产生塑料颗粒以控制其尺寸,并测试台级脱水器件的脱水装置,以便它们去除这些颗粒的能力。用0.22毫升的过滤除去92 +/- 3%的颗粒,以10,000rpm(670,800g)离心10分钟,除去99 +/- 1%的颗粒,并凸出的絮凝除去88 +/- 3%。这些结果提供了通过分离过程除去纳米塑料的大小的一般思想,建议使用更多的工作来确定用满量程单元过程的去除程度。尽管使用所有三种处理良好的去除良好,但脱离治疗的较小颗粒也可能增加接受水体和冲击水生生态系统的纳米型素浓度。

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