Chen Chen , Wenping Li , Shijun Xing , Junjie Yu , Qingxue Li , Ruizhen Hu , Lihong Liu , Jiazhi Yang , Qiaofeng Han
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引用次数: 0
摘要
空气污染已对全球构成了迫在眉睫的威胁。具有高过滤效率、低压降、防潮、抗菌和可再生性的多功能过滤器亟待开发。本研究结合宏观结构设计和微观银纳米粒子(Ag NPs)的原位合成,创新性地设计了具有挡板结构的多功能木质过滤器。该过滤器具有出色的颗粒物去除效率(PM0.3,98.5%)、卓越的挥发性有机化合物(VOCs)吸附效率(甲醛为 98.4%,二甲苯为 91.7%)、高杀菌效率(99.99%)和出色的再生能力(性能恢复到初始的 98%)。此外,用制备的过滤器组装个人防护口罩,其更换元件的过程就像更换电蚊香片一样简单。这种创新型过滤器有望应用于日常防护、突发事故和呼吸道传染病的预防和控制等领域。我们设想,功能改性的 Ag NPs 木质多层结构过滤器将为污染环境中更有效的空气净化提供全面的解决方案。
3D hydrophobic wood membrane with micro-nano baffle structure for multifunctional air purification filters: “Kill three eagles with one arrow”
Air pollution has presented an imminent threat to the world. Multifunctional filters with high filtration efficiency, low pressure drop, moisture resistance, antibacterial properties, and renewability are urgently needed to be developed. In this study, multifunctional wood filters are innovatively designed with a baffle structure combining macroscopic structural design and microscopic in-situ synthesis of silver nanoparticles (Ag NPs). The filter has excellent particle removal efficiency (PM0.3, 98.5 %), exceptional volatile organic compounds (VOCs) adsorption efficiency (98.4 % for formaldehyde and 91.7 % for xylene), high sterilization efficiency (99.99 %) and excellent regeneration ability (performance recovery to 98 % of the initial). Furthermore, personal protective masks were assembled by the prepared filters, whose process of replacing element is as simple as replacement of electric mosquito incense tablets. This innovative filter holds promise for applications such as daily protection, sudden accidents and prevention and control of respiratory infectious diseases. We envision that the functionally modified Ag NPs wood filters with a multilayer structure offer a comprehensive solution for more effective air purification in polluted environment.
期刊介绍:
Materials Today Physics is a multi-disciplinary journal focused on the physics of materials, encompassing both the physical properties and materials synthesis. Operating at the interface of physics and materials science, this journal covers one of the largest and most dynamic fields within physical science. The forefront research in materials physics is driving advancements in new materials, uncovering new physics, and fostering novel applications at an unprecedented pace.