Pandit Pintu, Maity Subhankar, Singha Kunal, Uzun Muhammet, Shekh Mehdihasan, Ahmed Shakeel
National Institute of Fashion Technology, Department of Textile Design, Mithapur Farms, Patna, 800001, India.
Department of Textile Technology, Uttar Pradesh Textile Technology Institute, Kanpur, 208001, India.
Clean Eng Technol. 2021 Oct;4:100218. doi: 10.1016/j.clet.2021.100218. Epub 2021 Jul 22.
On the eve of the outbreak of the COVID-19 pandemic, there is a tremendous increase in the production of facemasks across the world. The primary raw materials for the manufacturing of the facemasks are non-biodegradable synthetic polymers derived from petrochemicals. Disposal of these synthetic facemasks increases waste-load in the environment causing severe ecological issues for flora and fauna. The synthesis processes of the polymers from the petrochemical by-products were also not eco-friendly, which releases huge greenhouse and harmful gases. Therefore, many research organizations and entrepreneurs realize the need for biodegradable facemasks to render similar performance as the existing non-biodegradable masks. The conventional textile fabrics made of natural fibers like cotton, flax, hemp, etc., can also be used to prepare facemasks with multiple layers in use for general protection. Such natural textile masks can be made anti-microbial by applying various herbal anti-microbial extracts like turmeric, neem, basil, aloe vera, etc. As porosity is the exclusive feature of the masks for arresting tiny viruses, the filter of the masks should have a pore size in the nanometre scale, and that can be achieved in nanomembrane manufactured by electrospinning technology. This article reviews the various scopes of electrospinning technology for the preparation of nanomembrane biomasks. Besides protecting us from the virus, the biomasks can be useful for skin healing, skincare, auto-fragrance, and organized cooling which are also discussed in this review article.
在新冠疫情爆发前夕,全球口罩产量大幅增加。制造口罩的主要原材料是源自石化产品的不可生物降解合成聚合物。这些合成口罩的处理增加了环境中的废物负担,给动植物带来了严重的生态问题。从石化副产品合成聚合物的过程也不环保,会释放大量温室气体和有害气体。因此,许多研究机构和企业家意识到需要可生物降解的口罩,以提供与现有的不可生物降解口罩相似的性能。由棉、亚麻、大麻等天然纤维制成的传统纺织面料,也可用于制备多层口罩以提供一般防护。通过应用姜黄、印楝、罗勒、芦荟等各种草本抗菌提取物,这种天然纺织口罩可以制成抗菌的。由于孔隙率是口罩拦截微小病毒的唯一特性,口罩的过滤器应具有纳米级的孔径,这可以通过静电纺丝技术制造的纳米膜来实现。本文综述了静电纺丝技术在制备纳米膜生物口罩方面的各种应用范围。除了保护我们免受病毒侵害外,生物口罩在皮肤愈合、皮肤护理、自动增香和有序冷却方面也可能有用,本文也将对此进行讨论。