dzȯ ȸ
14 4ȣ, December 2015
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ISSN : 2288-9167 (Print)
ISSN : 2288-923X (Online)
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Removal of gaseous formaldehyde by UV-TiO2 photocatalytic oxidation
adsorbent reactor in chamber
Jaemi Hendrix1ֱ2*
Abstracts
The potential use of UV-TiO2 photocatalytic oxidation absorbent reactor in the removal of gaseous formaldehyde
was studied. This study was conducted inside a bench-type circulation reactor chamber at ambient air conditions.
PCO (Photocatalytic Oxidaion) degradation test for formaldehyde was done repeatedly and the average was
reported. It was evident that photocatalytic oxidation was proven to be an effective method to control indoor air
pollutants, like formaldehyde in indoor air. However, by-products are produced in the case of formaldehyde
degradation also CO2, CO, H2O and formic acid are produced. These by-products can inhibit the active site of
the photocatalyst. Thus, addition of adsorbent succeeding the PCO-TiO2, acts as a secondary treatment wherein
produced by-products from the degradation and unreacted HCHO will adhere to the surface of the adsorbent. In
this study, synthetic zeolite and activated carbon pellets were used to control of by-products of formaldehyde. PCOTiO2
degradation alone achieves 86% for a period of 60 minutes. Addition of adsorbent improves the removal
efficiency achieving 90% and 96% using activated carbon pellet and zeolite, respectively.
Keywords : By-products, Degradation, Formaldehyde, Photocatalytic oxidation, UV-TiO2