Tao Shanlong, Zhu Yong, Chen Mingxia, Shangguan Wenfeng
Research Center for Combustion and Environmental Technology, School of Mechanical Engineering, Shanghai Jiao Tong University, Shanghai 200240, PR China.
School of Mechanical and Power Engineering, East China University of Science and Technology, Shanghai 200237, PR China.
Environ Health (Wash). 2024 Aug 13;2(9):596-617. doi: 10.1021/envhealth.4c00100. eCollection 2024 Sep 20.
The transmission of pathogenic airborne microorganisms significantly impacts public health and societal functioning. Ensuring healthy indoor air quality in public spaces is critical. Among various air purification technologies, electrostatic precipitation and atmospheric pressure nonthermal plasma are notable for their broad-spectrum effectiveness, high efficiency, cost-effectiveness, and safety. This review investigates the primary mechanisms by which these electrostatic methods collect and disinfect pathogenic aerosols. It also delves into recent advancements in enhancing their physical and chemical mechanisms for improve efficiency. Simultaneously, a thorough summary of mathematical models related to the migration and deactivation of pathogenic aerosols in electrostatic purifiers is provided. It will help us to understand the behavior of aerosols in purification systems. Additionally, the review discusses the current research on creating a comprehensive health protection system and addresses the challenges of balancing byproduct control with efficiency. The aim is to establish a foundation for future research and development in electrostatic aerosol purification and develop integrated air purification technologies that are both efficient and safe.
致病性空气传播微生物的传播对公众健康和社会功能有重大影响。确保公共场所健康的室内空气质量至关重要。在各种空气净化技术中,静电沉淀和大气压非热等离子体因其广谱有效性、高效率、成本效益和安全性而备受关注。本综述研究了这些静电方法收集和消毒致病性气溶胶的主要机制。它还深入探讨了增强其物理和化学机制以提高效率的最新进展。同时,提供了与静电净化器中致病性气溶胶的迁移和失活相关的数学模型的全面总结。这将有助于我们了解气溶胶在净化系统中的行为。此外,该综述讨论了当前关于创建全面健康保护系统的研究,并解决了在副产物控制与效率之间取得平衡的挑战。目的是为静电气溶胶净化的未来研发奠定基础,并开发高效且安全的综合空气净化技术。