School of Infrastructure Engineering, Dalian University of Technology, Dalian, 116024, China.
School of Bioengineering, Dalian University of Technology, Dalian, 116024, China.
Environ Sci Process Impacts. 2024 Oct 16;26(10):1836-1846. doi: 10.1039/d4em00158c.
In light of growing concerns about indoor air quality and the transmission of pathogens, this study aims to evaluate the effectiveness of low temperature plasma (LTP) devices in inactivating bacterial aerosols in the air duct of HVAC systems, exploring methods to enhance air purification efficiency. This research employed experimental methods to explore the deactivation effects of LTP on common bacteria such as and , focusing on the role of air parameters such as the airflow rate, relative humidity, and temperature in influencing the device's performance. Notably, the study determined that an operational voltage of 3000 V for the LTP device, combined with conditions of low airflow, low humidity, and high temperature, significantly enhances the inactivation of bacterial aerosols, achieving an 82% inactivation rate at a negative ion concentration of 2.4 × 10 ions per m and a wind speed of 3 m s. Despite the generation of ozone and ultraviolet light as by-products, their concentrations were found to be within safe limits for human exposure. In addition, this study identified an effective inactivation range, alongside an optimal arrangement for the airflow direction within ducts, to maximize the sterilization efficiency of the LTP device. Given these promising results, the study advocates for the integration of LTP technology into the air duct of HVAC systems of public buildings to improve air quality and reduce the risk of airborne disease transmission.
鉴于人们对室内空气质量和病原体传播的日益关注,本研究旨在评估低温等离子体(LTP)设备在灭活 HVAC 系统风管中空气传播细菌方面的有效性,探索提高空气净化效率的方法。本研究采用实验方法,研究了 LTP 对常见细菌(如 和 )的灭活效果,重点关注气流速率、相对湿度和温度等空气参数在影响设备性能方面的作用。值得注意的是,研究结果表明,LTP 设备的工作电压为 3000 V,结合低气流、低湿度和高温条件,可以显著提高细菌气溶胶的灭活效率,在负离子浓度为 2.4×10 离子/m³和风速为 3 m/s 时,灭活效率达到 82%。尽管会产生臭氧和紫外线等副产物,但它们的浓度被发现仍在人体接触的安全范围内。此外,本研究还确定了有效的灭活范围以及风管内最佳的气流方向布置,以最大程度地提高 LTP 设备的杀菌效率。鉴于这些有前景的结果,本研究提倡将 LTP 技术集成到公共建筑的 HVAC 系统风管中,以提高空气质量并降低空气传播疾病的传播风险。