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Multifunctional Polymer Composites Produced by Melt-Blown Technique to Use in Filtering Respiratory Protective Devices

机译:通过熔喷技术生产的多功能聚合物复合材料用于过滤呼吸防护装置

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摘要

In this work, a multifunctional polymer composite is made using melt-blowing technology from polypropylene (88 wt.%) and poly (ethylene terephthalate) (12 wt.%) with the addition of functional modifiers, that is, 3 g of a superabsorbent polymer and 5 g of a biocidal agent (Biohaloysite). The use of modifiers is aimed at obtaining adequate comfort when using the target respiratory protection equipment (RPE) in terms of microclimate in the breathing zone and protection against harmful aerosols including bioaerosols. The developed production method is innovative in that the two powdered modifiers are simultaneously applied in the stream of elementary polymeric fibers by two independent injection systems. Aerosols of the modifiers are supplied via a specially designed channel in the central segment of the die assembly, reducing the amount of materials used in the production process and saving energy. The results show that the proposed method of incorporating additives into the fiber structure did not adversely affect the protective and functional properties of the resulting filtration nonwovens. The produced nonwoven composites are characterized by SEM, FTIR, and differential scanning calorimetry (DSC). Given their high filtration efficiency at 5%, satisfactory airflow resistance (~200 Pa), very good antimicrobial activity, and excellent water absorption capacity, the obtained multifunctional nonwoven composites may be successfully used in filtering respiratory protective devices.
机译:在这项工作中,使用熔喷技术由聚丙烯(88重量%)和聚对苯二甲酸乙二醇酯(12重量%)混合功能改性剂(即3克超吸收剂)制成多功能聚合物复合材料聚合物和5克的杀菌剂(Biohaloysite)。改性剂的使用旨在在呼吸区域的微气候方面使用目标呼吸防护设备(RPE)时获得足够的舒适感,并防止有害的气溶胶,包括生物气溶胶。所开发的生产方法具有创新性,因为两种粉末状改性剂通过两个独立的注射系统同时应用于基本聚合物纤维流中。改性剂的气溶胶通过模具组件中央部分的特殊设计通道提供,从而减少了生产过程中使用的材料量并节省了能源。结果表明,所提出的将添加剂掺入纤维结构的方法不会不利地影响所得过滤无纺布的保护和功能性能。通过SEM,FTIR和差示扫描量热法(DSC)表征所生产的非织造复合材料。鉴于其在5%时的高过滤效率,令人满意的抗气流性(〜200 Pa),非常好的抗菌活性和出色的吸水能力,所得多功能无纺布复合材料可成功用于过滤呼吸防护设备。

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