{"title":"通过水界面过滤和吸收实现连续空气净化","authors":"Yunmao Zhang, Yuhang Han, Xiaoliang Ji, Duyang Zang, Long Qiao, Zhizhi Sheng, Chunyan Wang, Shuli Wang, Miao Wang, Yaqi Hou, Xinyu Chen, Xu Hou","doi":"10.1038/s41586-022-05124-y","DOIUrl":null,"url":null,"abstract":"The adverse impact of particulate air pollution on human health1,2 has prompted the development of purification systems that filter particulates out of air3–5. To maintain performance, the filter units must inevitably be replaced at some point, which requires maintenance, involves costs and generates solid waste6,7. Here we show that an ion-doped conjugated polymer-coated matrix infiltrated with a selected functional liquid enables efficient, continuous and maintenance-free air purification. As the air to be purified moves through the system in the form of bubbles, the functional fluid provides interfaces for filtration and for removal of particulate matter and pollutant molecules from air. Theoretical modelling and experimental results demonstrate that the system exhibits high efficiency and robustness: its one-time air purification efficiency can reach 99.6%, and its dust-holding capacity can reach 950 g m−2. The system is durable and resistant to fouling and corrosion, and the liquid acting as filter can be reused and adjusted to also enable removal of bacteria or odours. We anticipate that our purification approach will be useful for the development of specialist air purifiers that might prove useful in a settings such as hospitals, factories and mines. 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引用次数: 20
摘要
微粒空气污染对人类健康的不利影响1,2 促使人们开发了过滤空气中微粒的净化系统3-5。为了保持性能,过滤装置不可避免地需要更换,这就需要维护,涉及成本并产生固体废物6,7。在这里,我们展示了一种离子掺杂共轭聚合物涂层基质,基质中渗入了精选的功能液体,可实现高效、连续和免维护的空气净化。待净化的空气以气泡的形式通过该系统时,功能液体提供了过滤和去除空气中颗粒物质和污染物分子的界面。理论建模和实验结果表明,该系统具有高效和坚固的特点:其一次性空气净化效率可达 99.6%,容尘量可达 950 g m-2。该系统经久耐用,抗污垢和腐蚀,作为过滤器的液体可重复使用,并可进行调整以去除细菌或气味。我们预计,我们的净化方法将有助于开发在医院、工厂和矿井等环境中可能有用的专业空气净化器。本文介绍了一种空气净化策略,该策略以气泡的形式移动空气,通过离子掺杂共轭聚合物涂层基质,该基质可捕获较大的颗粒物质,并渗入选定的功能液体,从而捕获较小的颗粒物质。
Continuous air purification by aqueous interface filtration and absorption
The adverse impact of particulate air pollution on human health1,2 has prompted the development of purification systems that filter particulates out of air3–5. To maintain performance, the filter units must inevitably be replaced at some point, which requires maintenance, involves costs and generates solid waste6,7. Here we show that an ion-doped conjugated polymer-coated matrix infiltrated with a selected functional liquid enables efficient, continuous and maintenance-free air purification. As the air to be purified moves through the system in the form of bubbles, the functional fluid provides interfaces for filtration and for removal of particulate matter and pollutant molecules from air. Theoretical modelling and experimental results demonstrate that the system exhibits high efficiency and robustness: its one-time air purification efficiency can reach 99.6%, and its dust-holding capacity can reach 950 g m−2. The system is durable and resistant to fouling and corrosion, and the liquid acting as filter can be reused and adjusted to also enable removal of bacteria or odours. We anticipate that our purification approach will be useful for the development of specialist air purifiers that might prove useful in a settings such as hospitals, factories and mines. An air purification strategy is presented that moves air in the form of bubbles through an ion-doped conjugated polymer-coated matrix, which captures larger particulate matter, infiltrated with a selected functional liquid, which captures smaller particulate matter.
期刊介绍:
Nature is a prestigious international journal that publishes peer-reviewed research in various scientific and technological fields. The selection of articles is based on criteria such as originality, importance, interdisciplinary relevance, timeliness, accessibility, elegance, and surprising conclusions. In addition to showcasing significant scientific advances, Nature delivers rapid, authoritative, insightful news, and interpretation of current and upcoming trends impacting science, scientists, and the broader public. The journal serves a dual purpose: firstly, to promptly share noteworthy scientific advances and foster discussions among scientists, and secondly, to ensure the swift dissemination of scientific results globally, emphasizing their significance for knowledge, culture, and daily life.