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微/纳米机器人是消除水/污水处理厂中微/纳米塑料的有效解决方案吗?

Are micro/nanorobots an effective solution to eliminate micro/nanoplastics in water/wastewater treatment plants?

作者信息

Shen Maocai, Li Haokai, Hu Tong, Wang Wenjun, Zheng Kaixuan, Zhang Huijuan

机构信息

School of Energy and Environment, Anhui University of Technology, Maanshan, Anhui 243002, PR China.

School of Energy and Environment, Anhui University of Technology, Maanshan, Anhui 243002, PR China.

出版信息

Sci Total Environ. 2024 Nov 1;949:175153. doi: 10.1016/j.scitotenv.2024.175153. Epub 2024 Jul 31.

Abstract

The extensive production and widespread use of plastic products have resulted in the gradual escalation of plastic pollution. Micro/nano/plastic pollution has become a global issue, and addressing how to "green" remove them is a crucial topic that needs to be tackled at this stage. Recently, micro/nanorobots have offered a promising solution for improving water monitoring and remediation as an environmentally friendly remediation strategy. Micro/nanorobots have been proven to efficiently remove micro/nanoplastics from water bodies. Micro/nanoplastics are captured by micro/nanorobots in water through electrostatic adsorption and electrophoretic interactions, and separation is achieved under the action of an external transverse rotating magnetic field. Their small size enables them to navigate easily in complex environments, while magnetic and optical drives help them move along established routes and reach different areas. With the assistance of these innovative robots, diffusion-limited reactions can be overcome, allowing for active contact with target pollutants. However, research on the removal of micro/nanoplastics by micro/nanorobots is still in its early stages. The dependence on chemical fuels and high costs severely limit the development and application of micro/nanorobots. Micro/nanoplastics are frequently captured by micro/nanorobots, but the degradation efficiency of micro/nanoplastics remains very low. Additionally, the secondary pollution caused by micro/nanorobots is also a key factor limiting their implementation. Although micro/nanorobots are a very promising technology for removing micro/nanoplastics, they still need to be explored in their applications. This paper discusses the opportunities and challenges faced by micro/nanorobots in removing micro/nanoplastics. Development and application of self-driven intelligent micro/nanorobots will help expedite the eco-friendly removal of micro/nanoplastics and other emerging pollutants.

摘要

塑料制品的大量生产和广泛使用导致了塑料污染的逐渐升级。微/纳塑料污染已成为一个全球性问题,解决如何“绿色”去除它们是现阶段需要解决的关键课题。最近,微/纳米机器人作为一种环境友好型修复策略,为改善水质监测和修复提供了一个有前景的解决方案。已证明微/纳米机器人能有效地从水体中去除微/纳米塑料。微/纳米机器人在水中通过静电吸附和电泳相互作用捕获微/纳米塑料,并在外部横向旋转磁场的作用下实现分离。它们的小尺寸使它们能够在复杂环境中轻松导航,而磁力和光驱动则帮助它们沿着既定路线移动并到达不同区域。在这些创新机器人的协助下,可以克服扩散限制反应,从而实现与目标污染物的主动接触。然而,关于微/纳米机器人去除微/纳米塑料的研究仍处于早期阶段。对化学燃料的依赖和高成本严重限制了微/纳米机器人的开发和应用。微/纳米机器人经常捕获微/纳米塑料,但微/纳米塑料的降解效率仍然很低。此外,微/纳米机器人造成的二次污染也是限制其应用的关键因素。尽管微/纳米机器人是去除微/纳米塑料的一项非常有前景的技术,但它们在应用方面仍需探索。本文讨论了微/纳米机器人在去除微/纳米塑料方面面临的机遇和挑战。自驱动智能微/纳米机器人的开发和应用将有助于加快微/纳米塑料和其他新兴污染物的环保去除。

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