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可生物降解、高效且透气的多用途口罩滤芯

Biodegradable, Efficient, and Breathable Multi-Use Face Mask Filter.

作者信息

Choi Sejin, Jeon Hyeonyeol, Jang Min, Kim Hyeri, Shin Giyoung, Koo Jun Mo, Lee Minkyung, Sung Hye Kyeong, Eom Youngho, Yang Ho-Sung, Jegal Jonggeon, Park Jeyoung, Oh Dongyeop X, Hwang Sung Yeon

机构信息

Research Center for Bio-Based Chemistry Korea Research Institute of Chemical Technology (KRICT) Ulsan 44429 Republic of Korea.

Department of Polymer Engineering Pukyong National University Busan 48513 Republic of Korea.

出版信息

Adv Sci (Weinh). 2021 Jan 29;8(6):2003155. doi: 10.1002/advs.202003155. eCollection 2021 Mar.

Abstract

The demand for face masks is increasing exponentially due to the coronavirus pandemic and issues associated with airborne particulate matter (PM). However, both conventional electrostatic- and nanosieve-based mask filters are single-use and are not degradable or recyclable, which creates serious waste problems. In addition, the former loses function under humid conditions, while the latter operates with a significant air-pressure drop and suffers from relatively fast pore blockage. Herein, a biodegradable, moisture-resistant, highly breathable, and high-performance fibrous mask filter is developed. Briefly, two biodegradable microfiber and nanofiber mats are integrated into a Janus membrane filter and then coated by cationically charged chitosan nanowhiskers. This filter is as efficient as the commercial N95 filter and removes 98.3% of 2.5 µm PM. The nanofiber physically sieves fine PM and the microfiber provides a low pressure differential of 59 Pa, which is comfortable for human breathing. In contrast to the dramatic performance decline of the commercial N95 filter when exposed to moisture, this filter exhibits negligible performance loss and is therefore multi-usable because the permanent dipoles of the chitosan adsorb ultrafine PM (e.g., nitrogen and sulfur oxides). Importantly, this filter completely decomposes within 4 weeks in composting soil.

摘要

由于新冠疫情以及与空气中颗粒物(PM)相关的问题,对口罩的需求呈指数级增长。然而,传统的基于静电和纳米筛的口罩过滤器都是一次性的,不可降解或回收利用,这就产生了严重的废物问题。此外,前者在潮湿条件下会失去功能,而后者在运行时会有显著的气压降,并且孔隙堵塞相对较快。在此,开发了一种可生物降解、防潮、高透气性和高性能的纤维口罩过滤器。简而言之,将两种可生物降解的微纤维和纳米纤维垫集成到一个双面膜过滤器中,然后用带阳离子电荷的壳聚糖纳米晶须进行涂层。这种过滤器与商用N95过滤器一样高效,能去除98.3%的2.5微米颗粒物。纳米纤维通过物理筛分作用过滤细颗粒物,微纤维提供59帕的低压差,这对人体呼吸来说很舒适。与商用N95过滤器在接触水分时性能急剧下降形成对比的是,这种过滤器的性能损失可忽略不计,因此可以多次使用,因为壳聚糖的永久偶极会吸附超细颗粒物(如氮氧化物和硫氧化物)。重要的是,这种过滤器在堆肥土壤中4周内会完全分解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/eb92/7967051/044d821e8b38/ADVS-8-2003155-g004.jpg

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