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Design of electret polypropylene melt blown air filtration material containing nucleating agent for effective PM2.5 capture

机译:有效捕获PM2.5的含成核剂的驻极体聚丙烯熔喷空气过滤材料的设计

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Particulate matter (PM) pollution has become a serious threat to public health, climate and ecosystems. Therefore, filtration materials with high filtration efficiency and low air resistance are in urgent need. Electret filters that can significantly improve filtration efficiency without increasing pressure drop are widely used for air filtration. However, long-term maintenance of the electrical charges on electret filters, particularly at high temperatures and in wet conditions, is still a challenge. Herein, we report the fabrication of a novel electret filter with a fluffy structure, high porosity and satisfactory filtration stability using polypropylene (PP) as the matrix polymer and magnesium stearate (MgSt) as the charge enhancer. Benefiting from the fluffy structure created by melt blown at a large die-to-collector distance (DCD), the pressure drop decreased from 67.0 Pa to 52.9 Pa at an air flow rate of 85 L?min ~(?1) . Furthermore, the introduction of MgSt changed the crystal structure of the melt blown nonwovens, thus improving the electret properties to achieve a high filtration efficiency of 99.22%, a low pressure drop of 92 Pa and a satisfactory QF of 0.054 Pa ~(?1) . In particular, the electret filtration materials exhibited excellent filtration stability and loading performance. Thus, this electret material may become a good candidate for personal protective filtration materials against PM2.5.
机译:颗粒物(PM)污染已成为对公共卫生,气候和生态系统的严重威胁。因此,迫切需要具有高过滤效率和低空气阻力的过滤材料。可以显着提高过滤效率而又不增加压降的驻极体过滤器广泛用于空气过滤。但是,尤其是在高温和潮湿条件下,长期保持驻极体滤波器上的电荷仍然是一个挑战。本文中,我们报道了使用聚丙烯(PP)作为基质聚合物和硬脂酸镁(MgSt)作为电荷增强剂的新型蓬松驻极体滤波器的制造,该滤波器具有蓬松的结构,高孔隙率和令人满意的过滤稳定性。得益于以较大的芯片到收集器的距离(DCD)吹塑熔体而产生的蓬松结构,在空气流量为85 L?min〜(?1)的情况下,压降从67.0 Pa降至52.9 Pa。此外,MgSt的引入改变了熔喷非织造布的晶体结构,从而改善了驻极体性能,从而实现了99.22%的高过滤效率,92 Pa的低压降和令人满意的QF 0.054 Pa〜(?1)。 。特别地,驻极体过滤材料表现出优异的过滤稳定性和负载性能。因此,该驻极体材料可能成为抵抗PM2.5的个人防护过滤材料的良好选择。

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