石油炼制与化工 ›› 2026, Vol. 57 ›› Issue (9): 76-86.

• 催化剂 • 上一篇    下一篇

掺氮碳材料/γ-Al2O3复合载体对NiW催化剂加氢脱硫性能的影响

毛远洪1,2,赵雍3,李磊2,3,王慧2,3   

  1. 1. 中国石化茂名分公司

    2. 广东省先进绿色润滑材料企业重点实验室

    3. 广东石油化工学院
  • 收稿日期:2026-01-27 修回日期:2026-04-03 出版日期:2026-09-12 发布日期:2026-08-21
  • 通讯作者: 李磊 E-mail:15801318925@163.com
  • 基金资助:
    国家自然科学基金;茂名市科技计划项目

EFFECT OF NITROGEN-DOPED CARBON MATERIAL/γ-Al2O3 COMPOSITE SUPPORT ON THE HYDRODESULFURIZATION PERFORMANCE OF NiW CATALYSTS

  • Received:2026-01-27 Revised:2026-04-03 Online:2026-09-12 Published:2026-08-21

摘要: 采用一步法制备掺氮碳材料/γ-Al2O3复合材料并以其为载体制备NiW@NCAL加氢脱硫催化剂,以NiW@AL(载体为γ-Al2O3)及NiW@CAL(载体为碳材料/γ-Al2O3复合材料)为参比催化剂,借助元素分析、X射线衍射、N2吸附-脱附、氨程序升温脱附、氢气程序升温还原、紫外-可见漫反射光谱、X射线光电子能谱、透射电子显微镜和吡啶吸附红外光谱等手段对催化剂结构进行详细表征,以二苯并噻吩(DBT)为模型化合物评价催化剂加氢脱硫活性并探究其构效关系。结果表明:碳材料及掺氮碳材料在γ-Al2O3表面的引入可有效削弱活性相金属与γ-Al2O3间的强相互作用,降低了NiW催化剂中镍铝尖晶石及钨酸铝的含量,提升了催化剂硫化度,增加了高活性NiWS活性相占比,从而提升催化剂的活性;NiW@NCAL催化DBT反应速率常数可高达3.53×10-7 mol/(g.s),提高了直接脱硫反应路径选择性,在有效降低加氢脱硫反应氢耗的同时副产高附加值芳烃类化合物。

关键词: 掺氮碳材料, γ-Al2O3, NiW催化剂, 加氢脱硫, NiWS活性相

Abstract: A one-step method was employed to prepare nitrogen-doped carbon material/γ-Al2O3 composite materials, which was subsequently used as supports to fabricate NiW@NCAL hydrodesulfurization catalysts. All the catalysts were thoroughly characterized by using elemental analysis, XRD, N2 adsorption-desorption, NH3 - TPD, H2 - TPR, UV-Vis DRS, XPS, TEM, and pyridine infrared spectroscopy. Compared with NiW@AL and NiW@CAL, the hydrodesulfurization activity of NiW@NCAL was evaluated, and their structure-activity relationship was investigated using dibenzothiophene as a model compound. The results indicate that the incorporation of carbon materials and nitrogen-doped carbon materials on the surface of γ-Al2O3 effectively weakens the strong interaction between the active metal phase and γ-Al2O3, thereby reducing the content of nickel-aluminum spinel and aluminotungstate. The catalytic activity is enhanced with the proportion of the highly active NiWS active phase, which is due to the higher sulfidation degree resulting from the surface incorporation.This not only effectively reduces the hydrogen consumption in hydrodesulfurization reactions but also produces high-value aromatic compounds as by-products.

Key words: nitrogen-doped carbon materials, γ-Al2O3, NiW catalyst, hydrodesulfurization, NiWS active phase