在竹子/岩棉上添加 CuO-Ag0 的纳米纤维复合材料,用于预防可传播的传染病

Abdul Wahab Jatoi , Faisal Ahmed Memon , Muhammad Ishaque Abro
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引用次数: 0

摘要

可传播的传染病、有害的环境污染物和有害的紫外线辐射始终威胁着人类文明。一方面是感冒、肺炎、结核菌、风疹病毒、RSV 和 COVID19,另一方面是城市和工业排放物、火山爆发、花粉、气溶胶,还有皮肤癌、晒伤、过早衰老和皮肤晒黑,这些都是严重危害健康、安全和福祉的例子。据世界卫生组织报告,全世界有 700 多万人死于有害空气污染物。利用纳米纤维结构的巨大特点以及 Ag0 和 CuO 纳米粒子的优异微生物杀灭特性,开发出了一种可持续且稳定的基于纳米纤维的 Bmb-nanoNP 复合材料。利用生物相容、可生物降解、无毒和环保的聚合物,该复合材料可作为防护服的可持续来源。在吸气和不吸气的情况下,Bmb-nanoNP 的微粒过滤率分别为 99.13% 和 96%。对大肠杆菌和金黄色葡萄球菌的杀菌效果非常好(细胞存活率分别为 5.9 % 和 8.86 %)。同样,Bmb-nanoNP 计算得出的紫外线防护系数(UPF)为 7954(50 + 等级)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Nanofiberous composite with CuO-Ag0 supported on bamboo/lycra for protection against transmittable infectious diseases
The transmittable infectious diseases, detrimental environmental contaminants and harmful UV radiations remained constant threat to human civilization. Cold, pneumonia, tuberculosis bacteria, rubella virus, RSV and COVID19, then urban and industrial emissions, volcanic eruptions, pollen, aerosols on one hand and skin cancer, sunburn, premature ageing and skin tanning on the other hand are some of the examples of serious risks to health, safety and well-being. The WHO reported over 7million worldwide deaths due to hazardous air contaminants. Exploiting the tremendous features of nanofiberous structure and excellent microbiocidal properties of Ag0 and CuO nanoparticles, a sustainable and stable nanofiber based composite Bmb-nanoNP was developed. Utilization of biocompatible, biodegradable, nontoxic and environmental friendly polymers enabled the composite as sustainable source for protective clothing purposes. The microparticulate filtration of Bmb-nanoNP was 99.13 % and 96 % with and without air suction respectively. The microbiocidal affect against E. coli and S. aureus strains was excellent(5.9 % and 8.86 % cell viabilities respectively). Similarly, the Bmb-nanoNP showed calculated UV protection factor (UPF) of 7954 (50 + rating).These characteristics demonstrated potential candidacy of the Bmb-nanoNP composite for multi-functional safety clothing applications.
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