...
首页> 外文期刊>Chemosphere >Understanding the fragmentation of microplastics into nano-plastics and removal of nano/microplastics from wastewater using membrane, air flotation and nano-ferrofluid processes
【24h】

Understanding the fragmentation of microplastics into nano-plastics and removal of nano/microplastics from wastewater using membrane, air flotation and nano-ferrofluid processes

机译:了解微薄成纳米塑料的碎片,并使用膜,空气浮选和纳米铁杂散方法从废水中除去纳米/微塑料

获取原文
获取原文并翻译 | 示例
           

摘要

Nano/microplastics (NPs/MPs), a tiny particle of plastic pollution, are known as one of the most important environmental threats to marine ecosystems. Wastewater treatment plants can act as entrance routes for NPs/ MPs to the aquatic environment as they breakdown of larger fragments of the plastic component during the treatment process; therefore, it is necessary to remove NPs/MPs during the wastewater treatment process. In this study, understanding the effect of water shear force on the fragmentation of larger size MPs into smaller MPs and NPs and their removal by air flotation and nano-ferrofluid (i.e., magnetite and cobalt ferrite particle as a coagulant) and membrane processes were investigated as a proof-of-concept study. It is found that a two-blade mechanical impeller could fragment MPs from 75, 150 and 300 mu m into mean size NPs/MPs of 0.74, 1.14 and 1.88 mu m, respectively. Results showed that the maximum removal efficiency of polyethylene, polyvinyl chloride and polyester was 85, 82 and 69%, respectively, in the air flotation process. Increasing the dose of behentrimonium chloride surfactant from 2 to 10 mg/L improved the efficiency of the air flotation process for NPs/MPs removal. It is also found that the removal efficiency of NPs/MPs by the air flotation system depends on solution pH, size, and types of NPs/MPs. This study also found a less significant removal efficiency of NPs/MPs by both types of ferrofluid used in this study with an average removal of 43% for magnetite and 55% for cobalt ferrite. All three plastics tested had similar removal efficiency by the nano-ferrofluid particles, meaning that this removal technique does not rely on the plastic component type. Among all the process tested, both ultrafiltration and microfiltration membrane processes were highly effective, removing more than 90% of NPs/MPs fragment particles. Overall, this study has confirmed the effectiveness of using air flotation and the membrane process to remove NPs/MPs from wastewater.
机译:纳米/微塑料(NPS / MPS)是一种微小的塑料污染粒子,被称为海洋生态系统最重要的环境威胁之一。废水处理厂可以充当NPS / MPS的入口路线,因为它们在治疗过程中将塑料部件的较大碎片分解为水生环境;因此,在废水处理过程中有必要去除NPS / MPS。在本研究中,了解水剪切力对较大尺寸MPS成较小的MPS和NPS的效果,并研究了空气浮选和纳米铁物质流体(即,磁铁矿和钴铁氧体颗粒作为凝结剂的磁石)和膜过程的去除作为概念验证研究。发现双叶片机械叶轮可以分别从75,150和300μmm的片段Mps成平均nps / mps,分别为0.74,1.14和1.88 mu m。结果表明,在空气浮选过程中,聚乙烯,聚氯乙烯和聚酯的最大去除效率分别为85,82和69%。增加代表氯化物表面活性剂的剂量从2〜10 mg / L提高了用于NPS / MPS的空气浮选过程的效率。还发现,空气浮选系统的NPS / MP的去除效率取决于溶液pH,尺寸和NPS / MP的类型。本研究还发现本研究中使用的两种使用的铁磁流体的NPS / MPS不太显着的去除效率,并且平均除去磁铁矿的43%和55%的钴铁氧体。所有三种测试的塑料通过纳米铁磁流体颗粒具有相似的去除效率,这意味着这种去除技术不依赖于塑料部件类型。在测试的所有方法中,超滤和微滤膜方法都非常有效,除去超过90%的NPS / MPS片段颗粒。总体而言,该研究证实了使用空气浮选和膜过程的有效性去除废水中的NPS / MP。

著录项

相似文献

  • 外文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号