Department of Materials Science and Engineering, National University of Singapore, 9 Engineering Drive 1, Singapore, 117575, Singapore.
Key Laboratory of Textile Science & Technology, Ministry of Education, College of Textiles, Donghua University, Shanghai, 201620, China.
Small. 2022 Apr;18(14):e2107636. doi: 10.1002/smll.202107636. Epub 2022 Feb 20.
Donning of personal protective equipment (PPE) in the healthcare sector has been intensified by the on-going COVID-19 pandemic around the globe. While extensive PPE provides protection, it typically limits moisture permeability and severely hinders the sweat evaporation process, resulting in greater heat stress on the personnel. Herein, a zinc-poly(vinyl alcohol) (Zn-PVA) composite film is fabricated by embedding a super-hygroscopic zinc-ethanolamine complex (Zn-complex) in the PVA matrix. By attaching the Zn-PVA composite film, the relative humidity (RH) inside the protective suit decreases from 91.0% to 48.2%. The reduced RH level, in turn, enhances evaporative cooling, hence bringing down the heat index from 64.6 to 40.0 °C at an air temperature of 35 °C, remarkably lowering the likelihood of heat stroke. The American Society for Testing and Materials tests conducted on a sweating manikin have also proven that the Zn-PVA composite films can significantly reduce the evaporative resistance of the protective suit by 90%. The low material cost, facile fabrication process, and reusability allow the Zn-PVA composition films to be readily available for healthcare workers worldwide. This application can be further extended to other occupations that are facing severe thermal discomfort and heat stress.
在全球范围内持续爆发的 COVID-19 大流行期间,医疗行业加强了个人防护设备(PPE)的使用。虽然广泛使用 PPE 可以提供保护,但它通常会限制水分渗透性,并严重阻碍汗水蒸发过程,从而使人员承受更大的热应激。在此,通过将超吸湿锌-乙醇胺配合物(Zn-complex)嵌入 PVA 基质中,制备了锌-聚乙烯醇(Zn-PVA)复合膜。通过附着 Zn-PVA 复合膜,防护服内的相对湿度(RH)从 91.0%降低到 48.2%。降低的 RH 水平反过来增强了蒸发冷却,从而将空气温度为 35°C 时的热指数从 64.6°C 降低到 40.0°C,显著降低了中暑的可能性。美国材料与试验协会(ASTM)对出汗模拟人进行的测试也证明,Zn-PVA 复合膜可使防护服的蒸发阻力降低 90%。低廉的材料成本、简单的制造工艺和可重复使用性使得 Zn-PVA 复合膜能够在全球范围内为医护人员提供便利。这种应用可以进一步扩展到其他面临严重热不适和热应激的职业。