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Time-Dependent Antimicrobial Activity of Filtering Nonwovens with Gemini Surfactant-Based Biocides

机译:双子表面活性剂基杀微生物剂过滤非织造布的时间依赖性抗菌活性

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摘要

Previous studies on nonwovens used for respiratory protective devices (RPDs) were related to equipment intended for short-term use. There is only limited research on the development of biocidal nonwoven fabrics for reusable RPDs that could be used safely in an industrial work environment where there is a risk of microbial growth. Moreover, a new group of biocides with high antimicrobial activity—gemini surfactants, has never been explored for textile’s application in previous studies. The aim of this study was to develop high-efficiency melt-blown nonwovens containing gemini surfactants with time-dependent biocidal activity, and to validate their antimicrobial properties under conditions simulating their use at a plant biomass-processing unit. A set of porous biocidal structures (SPBS) was prepared and applied to the melt-blown polypropylene (PP) nonwovens. The biocidal properties of the structures were triggered by humidity and had different activation rates. Scanning electron microscopy was used to undertake structural studies of the modified PP/SPBS nonwovens. In addition, simulation of plant biomass dust deposition on the nonwovens was performed. The biocidal activity of PP/SPBS nonwovens was evaluated following incubation with Escherichia coli and Aspergillus niger from the American Type Culture Collection, and with Pseudomonas fluorescens and Penicillium chrysogenum isolated from the biomass. PP/SPBS nonwovens exhibited antimicrobial activity to varying levels. Higher antimicrobial activity was noted for bacteria (R = 87.85–97.46%) and lower for moulds (R = 80.11–94.53%).
机译:先前对用于呼吸保护装置(RPD)的非织造布的研究与旨在短期使用的设备有关。对于可重复使用的RPD的杀菌无纺布的开发研究很少,这些无纺布可以在存在微生物生长风险的工业工作环境中安全使用。此外,在以前的研究中,从未将新的具有高抗菌活性的杀菌剂-双子叶表面活性剂用于纺织品的应用。这项研究的目的是开发高效的熔喷非织造布,其中包含具有时间依赖性杀菌活性的双子表面活性剂,并在模拟其在植物生物质处理装置中使用的条件下验证其抗菌性能。制备了一组多孔的杀生物结构(SPBS),并将其应用于熔喷聚丙烯(PP)非织造布。结构的杀生物特性是由湿度触发的,并具有不同的活化率。扫描电子显微镜用于进行改性PP / SPBS无纺布的结构研究。另外,进行了植物生物质粉尘在无纺布上沉积的模拟。与美国典型培养物保藏中心的大肠杆菌和黑曲霉,以及从生物质中分离的荧光假单胞菌和产黄青霉一起孵育后,评估了PP / SPBS非织造布的杀生物活性。 PP / SPBS非织造布表现出不同水平的抗菌活性。注意到对细菌具有较高的抗菌活性(R = 87.85-97.46%),对于霉菌则具有较低的抗菌活性(R = 80.11-94.53%)。

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