空气净化技术研究(2):电动空气净化设备
Research on air purification technology (2): Electric air purification equipment
摘要:
电动空气净化设备,包括静电除尘、负离子、低温等离子体、紫外线辐射等设备,是目前通用的一类空气净化设备。本文分析了这些电动空气净化设备的历史、工作原理、功能、应用场合和不足。指出静电除尘设备只是一种中效空气过滤器,适合于工业应用;负离子虽然有益于人体健康,但是人工生成的负离子却可能损害人体健康,且作用距离有限,“黑墙现象”等会影响负离子净化器的使用;低温等离子体空气净化器虽然是国内外公认的对颗粒物,尤其是对VOC和细菌均有效的净化设备,但是高浓度臭氧形成的二次污染阻碍了其推广;紫外线辐射是一种传统的消毒技术,只有正确的选型、合理的应用才能真正发挥其功能。现行的电动空气净化技术各有所长,优点突出,缺点明显,只有扬长避短,不同技术加以组合,方能真正实现高效率净化空气的目的。
Abstract:
Electric air purification equipment, including electrostatic precipitator (ESP), negative ion, low-temperature plasma, ultraviolet irradiation, etc., is a commonly used class of air purification equipment. This paper analyses the history, working principle, function, application scenarios, and disadvantages of these electric air purification equipment. It is pointed out that the ESP is only a medium-efficiency air filter and is suitable for industrial applications. Negative ions are beneficial to human health, but artificially generated negative ions may harm human health, and the limited effect range and the “black wall phenomenon” will affect the use of negative ion purifiers. Low-temperature plasma air purifiers are recognized both domestically and internationally as being effective in purifying particulate matter, especially for VOC and bacteria, but the formation of high concentration of ozone as a secondary pollution hinders their promotion. Ultraviolet irradiation is a traditional disinfection technology. Only by selecting the correct type and using it properly can its function truly be realized. The current electric air purification technologies have their own strengths and weaknesses, with their advantages being prominent and their disadvantages obvious. Only by highlighting their strengths and minimizing their weaknesses can different technologies be combined to truly achieve the goal of high-efficiency air purification.
Keywords:electric air purification equipment; electrostatic precipitator; negative ion; low-temperature plasma; ultraviolet irradiation; working principle; application scenario


