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具有可调聚集诱导增强磁性的 pH 响应型磁性人工黑色素用于快速修复塑料碎片。

pH-responsive magnetic artificial melanin with tunable aggregation-induced stronger magnetism for rapid remediation of plastic fragments.

机构信息

Chinese Academy of Fishery Sciences, Beijing 100141, China; East China Sea Fisheries Research Institute, Chinese Academy of Fishery Sciences, Shanghai 200090, China.

Chinese Academy of Fishery Sciences, Beijing 100141, China.

出版信息

J Hazard Mater. 2022 Aug 5;435:128962. doi: 10.1016/j.jhazmat.2022.128962. Epub 2022 Apr 20.

Abstract

The global occurrence of plastic fragment pollutants in water resources has raised concerns about food safety, drinking water security, and long-term ecological impacts worldwide. The different chemical nature, the persistence, and the smaller size make micro-plastics accumulators for toxins that pose a potential threat to human health. Generally, the smaller the size of the plastic fragments is, the more difficult it is to remove them from the aquatic environment. Methods to remove plastics from water or other media are highly needed. Here, we develop core-shell superparamagnetic melanin nanoparticles, which can put magnetism on nano-/micro-plastics within 30 s and then rapidly remove them from water by applying an external magnetic field. The shell material (artificial nano-melanin) provides simultaneously attractive electrostatic, hydrophobic interaction, and van der Waals' forces to attract nano-/micro-plastics, which plays a key role in the rapid remediation of the plastic fragments. With this principle applied to a simple method, the average removal efficiency achieves 89.3%. We show a method for high-throughput remediation of various micro-plastics with simple materials and processes, which have the potential for rapid, green, and large-scale remediation in the future.

摘要

全球水资源中塑料碎片污染物的出现引起了人们对食品安全、饮用水安全和长期生态影响的关注。微塑料具有不同的化学性质、持久性和较小的尺寸,会积累毒素,对人类健康构成潜在威胁。一般来说,塑料碎片的尺寸越小,就越难从水生态环境中去除。因此,人们非常需要从水中或其他介质中去除塑料的方法。在这里,我们开发了核壳型超顺磁性黑色素纳米粒子,它可以在 30 秒内将纳米/微米塑料带上磁性,然后通过施加外部磁场从水中快速去除。壳材料(人工纳米黑色素)同时提供有吸引力的静电、疏水相互作用和范德华力,以吸引纳米/微米塑料,这在快速修复塑料碎片方面起着关键作用。应用这一原理的简单方法,平均去除效率达到 89.3%。我们展示了一种使用简单材料和工艺对各种微塑料进行高通量修复的方法,该方法具有在未来实现快速、绿色和大规模修复的潜力。

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