Zhu Yanlong, Gu Xiaoxia, Dong Zhenfeng, Wang Bin, Jin Xu, Chen Yankun, Cui Meng, Wang Rui, Zhang Xiuqin
School of Materials Design & Engineering, Beijing Institute of Fashion Technology Beijing 100029 China
Beijing Key Laboratory of Clothing Materials R & D and Assessment, Beijing Engineering Research Center of Textile Nanofiber, Beijing Institute of Fashion Technology Beijing 100029 China.
RSC Adv. 2023 Mar 9;13(12):7857-7866. doi: 10.1039/d2ra08274h. eCollection 2023 Mar 8.
Since the COVID-19 pandemic, polypropylene melt-blown nonwovens (MBs) have been widely used in disposable medical surgical masks and medical protective clothing, seriously threatening the environment. As a bio-based biodegradable polymer, polylactic acid (PLA) has attracted great attention in fabricating MBs. However, there are still issues with the undesirable spinnability of PLA and the limited filtration and antibacterial performance of PLA MBs. Herein, a high-efficiency, low-resistance, and antibacterial PLA filter is fabricated by melt-blown spinning and electret postprocessing technology. The irradiation technique is used to tune PLA chain structure, improving its spinnability. Further, silica (SiO) nanoparticles are added to enhance the charge storage stability of PLA MBs. With a constant airflow rate of 32 L min, the PLA-based MBs exhibit a high particulate filtration efficiency of 94.8 ± 1.5%, an ultralow pressure drop of 14.1 ± 1.8 Pa, and an adequate bacterial filtration efficiency of 98 ± 1.2%, meeting the medical protective equipment standard. In addition, the zinc oxide (ZnO) masterbatches are doped into the blend and the antibacterial rate of PLA-based MBs against and is higher than 99%. This successful preparation and modification method paves the way for the large-scale production of PLA MBs as promising candidates for high-efficacy and antibacterial filters.
自新冠疫情以来,聚丙烯熔喷无纺布(MBs)被广泛应用于一次性医用外科口罩和医用防护服中,对环境造成了严重威胁。作为一种生物基可生物降解聚合物,聚乳酸(PLA)在制造MBs方面备受关注。然而,PLA仍存在可纺性不佳以及PLA MBs的过滤和抗菌性能有限等问题。在此,通过熔喷纺丝和驻极体后处理技术制备了一种高效、低阻且抗菌的PLA过滤器。采用辐照技术调节PLA链结构,提高其可纺性。此外,添加二氧化硅(SiO)纳米颗粒以增强PLA MBs的电荷存储稳定性。在气流速率恒定为32 L/min的情况下,基于PLA的MBs表现出94.8±1.5%的高颗粒过滤效率、14.1±1.8 Pa的超低压降以及98±1.2%的充足细菌过滤效率,符合医用防护装备标准。此外,将氧化锌(ZnO)母粒掺入共混物中,基于PLA的MBs对[具体细菌名称1]和[具体细菌名称2]的抗菌率高于99%。这种成功的制备和改性方法为大规模生产PLA MBs铺平了道路,使其有望成为高效抗菌过滤器的候选材料。