4.5 Article

Oxidative desulfurization of dibenzothiophene via high-shear mixing with phosphotungstic acid: the influence of calcination temperature on kinetics and catalytic activity

期刊

CLEAN TECHNOLOGIES AND ENVIRONMENTAL POLICY
卷 21, 期 7, 页码 1459-1469

出版社

SPRINGER
DOI: 10.1007/s10098-019-01717-w

关键词

Calcination temperature; Dibenzothiophene; First-order kinetics; Mixing-assisted oxidative desulfurization; Phosphotungstic acid

资金

  1. Ministry of Science and Technology, Taiwan [NSC 104-2221-E-041-002]
  2. National Research Foundation (NRF) of Korea through Ministry of Education [2016R1A6A1A03012812]

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The mixing-assisted oxidative desulfurization (MAOD) of model fuel was performed where the effect of calcination temperature on the catalytic activity of phosphotungstic acid (HPW) was evaluated. The MAOD system utilized tetraoctylammonium bromide as phase transfer agent (PTA) and HPW as catalyst. Calcined HPW was characterized by Fourier transform infrared spectroscopy, X-ray diffraction and scanning electron microscopy. The influence of operating conditions such as calcination temperature, reaction time and PTA:HPW molar ratio on the catalytic activity of HPW was investigated. HPW calcined at 400 degrees C attained the highest sulfur removal of 100.0% and rate constant of 0.1485min(-1), which is followed by HPW calcined at 300 degrees C (0.1328min(-1)) and 200 degrees C (0.1192min(-1)). Under all calcination temperature range studied, high coefficient of determination values (R-2 >= 0.95), low values of root-mean-square error (RMSE <= 8.5157) and average relative error (ARE <= 6.9361) indicate that the pseudo-first-order equation correlated well with the experimental data. The oxidation rate of dibenzothiophene in a MAOD system can be arranged in the order: HPW calcined at 400 degrees C>300 degrees C>200 degrees C. [GRAPHICS] .

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