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Evaluation of Photocatalytic Active Coatings on Sintered Glass Tubes by Methylene Blue

机译:亚甲基蓝评估烧结玻璃管上的光催化活性涂层

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A comparative study between ten different photocatalytic active coatings was done. The effectiveness and photocatalytic activity of the coatings were studied by degradation experiments of methylene blue (MB) dye under UV light illumination. The reactor design consisting of sintered glass packed in a borosilicate tube placed between two planar dielectric barrier discharge lamps (Osram Planon) is reported for the first time. The coatings consisted of either titania, silica, or zinc on sintered borosilicate glass. The advantage of sol-gel in catalyst preparation was exploited to combine catalyst to act as cocatalyst. TiO2-P25 widely applied in suspension systems was effectively immobilized on sintered glass support with the aid of tetraethylorthosilicate (TEOS) solution which acted as support material. Results indicated that TiO2-P25+SiO2, TiO2-P25+SiO2+Pt, and TiOSO4_30,6wt% films showed highest degradation rates close to 100% after 90 min illumination with degradation rates exceeding 50% after 30 minutes. TTIP+Pt showed lowest degradation rate.
机译:对十种不同的光催化活性涂料进行了比较研究。通过亚甲基蓝(MB)染料在紫外光下的降解实验研究了涂层的有效性和光催化活性。首次报道了反应堆设计,该反应堆设计由装在两个平面介质阻挡放电灯(Osram Planon)之间的硼硅酸盐管中的烧结玻璃组成。涂层由烧结的硼硅酸盐玻璃上的二氧化钛,二氧化硅或锌组成。溶胶-凝胶在催化剂制备中的优势被利用来结合催化剂作为助催化剂。借助于用作支撑材料的原硅酸四乙酯(TEOS)溶液,将广泛应用于悬浮系统的TiO2-P25有效地固定在烧结玻璃支撑上。结果表明,TiO2-P25 + SiO2,TiO2-P25 + SiO2 + Pt和TiOSO4_30,6wt%薄膜在90min照射后表现出最高的降解率接近100%,在30min后降解率超过50%。 TTIP + Pt降解率最低。

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