穿戴个人防护装备的卫生保健工作者个人热湿管理先进材料

IF 31.6 1区 材料科学 Q1 MATERIALS SCIENCE, MULTIDISCIPLINARY
Lun Lou, Kaikai Chen, Jintu Fan
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引用次数: 28

摘要

近年来,卫生保健工作者个人防护装备(PPE)的开发引起了广泛关注,特别是在2019冠状病毒病大流行期间。半透性防护服和长时间的工作,使热舒适成为医护人员的关键问题。尽管市面上有许多用于个人防护装备系统的个人冷却产品,但它们要么重量很重,要么耐用性有限。此外,现有的解决方案大多不能有效地缓解防晒服内的排汗。为了避免热应变,并确保长期的热舒适,新的战略,提供有效的个人热和湿度管理,而不损害健康保护是必需的。本文综述了防护服层的新兴材料和个人防护系统热湿管理的先进技术。对这些材料和策略进行了详细的研究,包括它们的基本工作原理、热学和机械性能、制造方法以及它们在未来应用中的优势和局限性,旨在激发创造性思维和多学科合作,以提高ppe的热舒适性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Advanced materials for personal thermal and moisture management of health care workers wearing PPE

In recent years, the development of personal protective equipment (PPE) for health care workers (HCWs) attracted enormous attention, especially during the pandemic of COVID-19. The semi-permeable protective clothing and the prolonged working hours make the thermal comfort a critical issue for HCWs. Although there are many commercially available personal cooling products for PPE systems, they are either heavy in weight or have limited durability. Besides, most of the existing solutions cannot relieve the perspiration efficiently within the insolation gowns. To avoid heat strain and ensure a longtime thermal comfort, new strategies that provide efficient personal thermal and moisture management without compromising health protection are required. This paper reviews the emerging materials for protective gown layers and advanced technologies for personal thermal and moisture management of PPE systems. These materials and strategies are examined in detail with respect to their fundamental working principles, thermal and mechanical properties, fabrication methods as well as advantages and limitations in their prospective applications, aiming at stimulating creative thinking and multidisciplinary collaboration to improve the thermal comfort of PPEs.

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来源期刊
Materials Science and Engineering: R: Reports
Materials Science and Engineering: R: Reports 工程技术-材料科学:综合
CiteScore
60.50
自引率
0.30%
发文量
19
审稿时长
34 days
期刊介绍: Materials Science & Engineering R: Reports is a journal that covers a wide range of topics in the field of materials science and engineering. It publishes both experimental and theoretical research papers, providing background information and critical assessments on various topics. The journal aims to publish high-quality and novel research papers and reviews. The subject areas covered by the journal include Materials Science (General), Electronic Materials, Optical Materials, and Magnetic Materials. In addition to regular issues, the journal also publishes special issues on key themes in the field of materials science, including Energy Materials, Materials for Health, Materials Discovery, Innovation for High Value Manufacturing, and Sustainable Materials development.
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