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基于光催化和超声波雾化效应的空气消杀监测装置

Air Kill Monitoring Device Based on Photocatalysis and Ultrasonic Atomization Effect
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摘要 后疫情时代,公共卫生健康问题依旧是推进健康中国建设的重大问题。通过研究对空气消杀监测装置的设计,确定正确技术设计路线,进一步保障公共卫生健康。基于光催化技术和超声波雾化效应,结合组合式滤网,可完成对空气中颗粒物的附着并杀毒灭菌。通过七合一空气质量传感器和监测云平台,及时对空气质量相关数据进行采集、监测、处理,实现在公共场所对空气质量的高效净化。 In the post-epidemic era,public health is still a major issue in promoting the building of a healthy China.By studying the design of air killing monitoring device,the correct technical design route is determined to further protect public health.Based on the photocatalytic technology and ultrasonic atomization effect,combined with the combined filter screen,it can complete the adhesion and sterilization of particles in the air.Through the 7-in-1 air quality sensor and monitoring cloud platform,the air quality related data are collected,monitored and processed in a timely manner to achieve efficient air quality purification in public places.
作者 张卓钰 卜琳彬 卜秋祥 姜彤 侯天宁 丁尉宸 邵帅 英玥岩 Zhang Zhuoyu;Bu Linbin;Bu Qiuxiang;Jiang Tong;Hou Tianning;Ding Weichen;Shao Shuai;Ying Yueyan(China-German Institute of Science and Technology,Qingdao University of Science and Technology,Qingdao 266000,China;College of Art,Qingdao University of Science and Technology,Qingdao 266000,China;College of Mechanical and ElectricalEngineering,Qingdao University of Science and Technology,Qingdao 266000,China;College of Automation,Qingdao University of Science and Technology,Qingdao 266000,China;College of Data Science,Qingdao University of Science and Technology,Qingdao 266000,China)
出处 《山东化工》 CAS 2024年第16期240-242,共3页 Shandong Chemical Industry
基金 青岛科技大学2023年国家级大学生创新训练计划项目(202310426225)。
关键词 空气消杀 光催化技术 超声波雾化效应 数据监测 air kill photocatalytic technology ultrasonic atomization effect data monitoring
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