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对抗冠状病毒爆发的完全生物基口罩的需求:一个视角。

The need for fully bio-based facemasks to counter coronavirus outbreaks: A perspective.

机构信息

Material Science Division, Department of Engineering Sciences and Mathematics, Luleå University of Technology, Luleå 97187, Sweden; School of Mechanical Engineering, Nanjing University of Science and Technology, 210094 Nanjing, China.

Department of Materials and Polymer Engineering, Faculty of Engineering, Hakim Sabzevari University, Sabzevar 9617976487, Iran.

出版信息

Sci Total Environ. 2020 Sep 20;736:139611. doi: 10.1016/j.scitotenv.2020.139611. Epub 2020 May 22.

Abstract

The onset of coronavirus pandemic has sparked a shortage of facemasks in almost all nations. Without this personal protective equipment, healthcare providers, essential workers, and the general public are exposed to the risk of infection. In light of the aforementioned, it is critical to balance the supply and demand for masks. COVID-19 will also ensure that masks are always considered as an essential commodity in future pandemic preparedness. Moreover, billions of facemasks are produced from petrochemicals derived raw materials, which are non-degradable upon disposal after their single use, thus causing environmental pollution and damage. The sustainable way forward is to utilise raw materials that are side-stream products of local industries to develop facemasks having equal or better efficiency than the conventional ones. In this regard, wheat gluten biopolymer, which is a by-product or co-product of cereal industries, can be electrospun into nanofibre membranes and subsequently carbonised at over 700 °C to form a network structure, which can simultaneously act as the filter media and reinforcement for gluten-based masks. In parallel, the same gluten material can be processed into cohesive thin films using plasticiser and hot press. Additionally, lanosol, a naturally-occurring substance, imparts fire (V-0 rating in vertical burn test), and microbe resistance in gluten plastics. Thus, thin films of flexible gluten with very low amounts of lanosol (<10 wt%) can be bonded together with the carbonised mat and shaped by thermoforming to create the facemasks. The carbon mat acting as the filter can be attached to the masks through adapters that can also be made from injection moulded gluten. The creation of these masks could simultaneously be effective in reducing the transmittance of infectious diseases and pave the way for environmentally benign sustainable products.

摘要

冠状病毒大流行的爆发几乎导致所有国家都出现了口罩短缺。如果没有这种个人防护设备,医护人员、基本工作人员和公众就会面临感染的风险。鉴于上述情况,平衡口罩的供需关系至关重要。COVID-19 还将确保口罩在未来的大流行准备中始终被视为必需品。此外,数十亿个口罩是由石化原料制成的,这些原料在一次性使用后无法降解,因此会造成环境污染和破坏。可持续的前进方向是利用本地产业的副产物或联产原料来开发具有与传统口罩相当或更好效率的口罩。在这方面,小麦面筋生物聚合物是谷物产业的副产物或联产产品,可以被电纺成纳米纤维膜,然后在 700°C 以上碳化形成网络结构,同时充当基于面筋的口罩的过滤介质和增强材料。同时,同样的面筋材料可以使用增塑剂和热压加工成粘性薄膜。此外,lanosol 是一种天然存在的物质,可赋予面筋塑料防火(垂直燃烧测试中的 V-0 等级)和抗微生物性能。因此,含有极低量 lanosol(<10wt%)的柔性面筋薄膜可以与碳化垫粘合在一起,并通过热成型制成口罩。作为过滤器的碳垫可以通过同样可以由注塑面筋制成的适配器连接到口罩上。这些口罩的制作不仅可以有效地减少传染病的传播,还为环保的可持续产品铺平了道路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4516/7243761/de647ef6fe8b/ga1_lrg.jpg

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