Pulikkalparambil Harikrishnan, Nandi Debabrata, Rangappa Sanjay Mavinkere, Prasanth Sreelakshmi, Siengchin Suchart
Natural Composites Research Group Lab, Department of Materials and Production Engineering, The Sirindhorn International Thai-German Graduate School of Engineering (TGGS) King Mongkut's University of Technology North Bangkok (KMUTNB) Bangkok Thailand.
Department of Ophthalmology Sree Gokulam Medical College and Research Foundation Venjarammoodu Kerala India.
Polym Compos. 2022 Jun;43(6):3944-3950. doi: 10.1002/pc.26668. Epub 2022 Apr 22.
The crucial role of face masks is highlighted in our day-to-day life during the COVID-19 pandemic. Polypropylene (PP)-based disposable face masks are widely used to hold back viral transmission. The discarded masks can create a huge burden of contamination on the environment. The purpose of this work is to recycle and reuse discarded masks to reduce environmental pollution. A simple and innovative technique to recycle surgical masks into composites of higher mechanical strength and antimicrobial properties is explored to reuse in packaging materials and cutleries. The surgical masks composed of PP fibers are recycled to use as a matrix material to reinforce with sisal and hemp fibers. The hot compression molding technique is used to sandwich the PP masks with natural fibers. The tensile strength of the composites is remarkably increased by 197% and 305% for sisal fiber composites and hemp fiber composites, respectively. The tensile elongation also increased to 574% for sisal fiber composites. The resulting composites exhibit notable antimicrobial properties against , a pathogen responsible for common staphylococcal food poisoning. The composites are found to be suitable to use as food contact cutleries and packaging materials.
在新冠疫情期间,口罩在我们的日常生活中发挥着至关重要的作用。基于聚丙烯(PP)的一次性口罩被广泛用于阻止病毒传播。废弃口罩会给环境造成巨大的污染负担。这项工作的目的是回收和再利用废弃口罩,以减少环境污染。探索了一种简单而创新的技术,将医用口罩回收制成具有更高机械强度和抗菌性能的复合材料,用于包装材料和餐具。由PP纤维组成的医用口罩被回收用作基体材料,用剑麻和大麻纤维进行增强。采用热压成型技术将PP口罩与天然纤维夹在一起。剑麻纤维复合材料和大麻纤维复合材料的拉伸强度分别显著提高了197%和305%。剑麻纤维复合材料的拉伸伸长率也提高到了574%。所得复合材料对一种导致常见葡萄球菌食物中毒的病原体具有显著的抗菌性能。这些复合材料被发现适合用作食品接触餐具和包装材料。