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광촉매 산화 반응을 이용한 클로로페놀 분해에 관한 연구
A Study on the Removal of Chloro Phenols by Photocatalytic Oxidation
이상협(Sang Hyup Lee),박주석(Ju Seok Park),박중현(Chung Hyun Park)
UCI I410-ECN-0102-2009-530-005903496
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The Electron/Hole Pair is generated when the activation energy produced by ultraviolet ray illuminates to the semiconductor and OH-ion produced by water photo-cleavage reacts with positive Hole. As a results, OH radical acting as strong oxidant is generated and then Photocatalytic oxidation reaction occurs. The photocatalytic oxidation can oxidate the non-degradable and hazardous organic substances such as pesticides and aromatic materials easier, safer and shorter than conventional water treatment process. So in this study, many factors influencing the oxidation of chlorophenols, such as inorganic electrolytes addition, change of oxygen and nitrogen atmosphere, temperature, pH, oxygen concentration, chlorophenol concentration, were throughly examined. According to the experiments observations, it is founded that the rate of chlorophenol oxidation follows a first-order reaction and the modified Langmuir-Hinshelwood relationship. And the photocatalytic oxidation occurs only when activation energy acting as Electron/Hole generation, oxygen acting as electron acceptor to prevent Electron/Hole recombination. TiO_2 powder acting as photocatalyst are present. The effects of variation of dissolved oxygen concentration, temperature and inorganic electrolytes concentration on 2-chlorophenol oxidation are negligible. And the lower the organic concentration, the higher the oxidation efficiency becomes. Therefore, the photocatalytic oxidation is much effective to oxidation of hazardous substances at very low concentration. The oxidation is effective in the range of 0.1g/L-10g/L of TiO_2. Finally when the ultra-violet ray is illuminated to TiO_2, the surface characteristics of TiO_2 change and Adsorption/Desorption reaction on TiO_2 surface occurs

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