本研究係以UV LED、UV CCFL燈管搭配一新式樣的光觸媒材料,設計的空氣清淨裝置。在此研究中透過UV LED量測因為溫度大於100℃,改採用CCFL燈管。二氧化鈦光觸媒材料鍍在素玻璃上量測約83%,達到適合應用在新型光觸媒載體上的穿透率,搭配一台適當的風機,使用3D工業繪圖軟體設計出清淨裝置之主體,結合3D列印的技術,製作出空氣清淨裝置。接續透過一系列消除率實驗包含:光觸媒玻璃珠直徑大小、UV CCFL燈管間距調整配至、燈管之數量與搭配常見濾材…等,實驗結果發現,甲醛(HCHO)、總體揮發性有機化合物(TVOC)、PM2.5(細懸浮微粒)的量測發現最好的消除率為HCHO:98%,TVOC: 98%,PM2.5:92%。
This paper mainly talks about a new type photocatalyst material of the air clean device with UV LED and UV CCFL lamp. Through the measurement of UV LED, the temperature is greater than 100℃, so chose the V CCFL lamp instead of the UV Led, reaching about 83%, in the titanium dioxide photocatalyst material experiment is suitable in a new photocatalyst carriers. To match a suitable fan, with 3D industrial graphics software design the main body of the clean device, combined with 3D printing technology to complete the air cleaner. The follow-up through a series of elimination rate experiments include: The diameter size of Photocatalyst glass beads, UV CCFL tube spacing adjustment, the number of lamps, with a common filter and so on. The results showed that the best elimination rate of formaldehyde, total volatile organic compounds and fine suspension particles was HCHO: 98%, TVOC: 98%, PM2.5: 92%.