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Photocatalytic Oxidation Desulfurization of Diesel Oil Using Ti-containing Zeolite

机译:含钛沸石对柴油的光催化氧化脱硫

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Photocatalytic oxidation of dibenzothiophene with hydrogen peroxide using Ti-containing zeolite (TS-1) as photocatalyst at ultraviolet lamp irradiation has been studied. The effect of the amount of photocatalyst and hydrogen peroxide concentration were investigated in detail. Optimal photocatalyst amount and hydrogen peroxide concentration were obtained at amounts of near 0.1 g/10 mL and 3 mL/10 mL, respectively. The oxidation proceeds in the oil phase and most of the oxidation products transfer to water phase, resulting in the successive removal of the dibenzothiophene from the n -octane phase without additional extraction by solvent. Kinetics parameters of the photocatalytic oxidation of DBT were measured and calculated. The result shows the kinetics of photocatalytic oxidation of DBT is first-order. The activity of photocatalyst was not obviously decreased after reuse x5. Using this photocatalytic oxidation system can effectively reduce the sulfur content in diesel oil. The resulting oil contained less than 100 mu g/g sulfur, and this corresponds to 90 percent removal.
机译:研究了含钛沸石(TS-1)作为光催化剂在紫外灯下用过氧化氢光催化氧化二苯并噻吩。详细研究了光催化剂的量和过氧化氢浓度的影响。获得的最佳光催化剂量和过氧化氢浓度分别接近0.1 g / 10 mL和3 mL / 10 mL。氧化在油相中进行,并且大多数氧化产物转移至水相,导致从正辛烷相中连续除去二苯并噻吩,而无需通过溶剂进行额外萃取。测量并计算了DBT的光催化氧化动力学参数。结果表明,DBT的光催化氧化动力学是一级的。重复使用5次后,光催化剂的活性没有明显下降。使用该光催化氧化系统可以有效降低柴油中的硫含量。所得油中的硫含量低于100μg / g,这相当于去除了90%。

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