Volume 45 Issue 12
Dec.  2017
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FAN Yue-chao, ZHEN Xin-ping, NIU Chun-ge, SONG Li-juan. Study on thiol and thioether removal with modified Y zeolite[J]. Journal of Fuel Chemistry and Technology, 2017, 45(12): 1467-1472.
Citation: FAN Yue-chao, ZHEN Xin-ping, NIU Chun-ge, SONG Li-juan. Study on thiol and thioether removal with modified Y zeolite[J]. Journal of Fuel Chemistry and Technology, 2017, 45(12): 1467-1472.

Study on thiol and thioether removal with modified Y zeolite

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  • Corresponding author: FAN Yue-chao, E-mail:5398815@163.com
  • Received Date: 2017-07-19
  • Rev Recd Date: 2017-10-30
  • Available Online: 2021-01-23
  • Publish Date: 2017-12-10
  • Samples of Cu (Ⅰ) Y, NiY and CeY were prepared by modifying a NaY type zeolite with a liquid ion-exchange method and characterized by means of XRD, ICP-MS, pyridine Py-FTIR, NH3-TPD and low temperature N2 adsorption-desorption.Use of micro coulombmeter WK-2D, sulfide luminescence detecting chromatography GC-SCD and fixed bed technology to evaluate the desulfurization performance of the samples for a 300 μg/g sulfur content model oil (dipropyl sulfide, cyclohexanol mercaptan and 1-heptyl mercaptan are prepared with nonane, etc.) and a hydrodesulfurization (HDS) gasoline. Results show that Cu (Ⅰ) Y has good adsorption desulfurization performance on those different oils. In the liquid ion-exchange process, the modified Y zeolite's surface acidity has greatly changed. The strong surface Bronsted (B) acidity of modified Y zeolite has negative effects on adsorption desulfurization through catalyzing mercaptan and thioether to form bigger molecules, which cover the surface of Y zeolite and block the adsorption activity sites, resulting in lower sulfur adsorption capacity of the catalyst. The weak surface Lewis (L) acidity has positive effects on adsorption desulfurization.
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