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原位拉曼技术研究Mo催化剂的还原和硫化
引用本文:魏昭彬,魏成栋,辛勤.原位拉曼技术研究Mo催化剂的还原和硫化[J].物理化学学报,1994,10(5):402-408.
作者姓名:魏昭彬  魏成栋  辛勤
作者单位:State Key Laboratory of Catalysis, Dalian Institute of Chemical Physics, Chinese Academy of Science, Dalian 116023
摘    要:运用原位激光拉曼技术研究了Mo/Al_2O_3和Mo/TiO_2-Al_2O_3催化剂的氢还原和硫化行为.结果清楚显示,两种载体上不同配位形态的Mo物种的氢还原能力有明显差异,其硫化性能也不相同.TiO_2对Al_2O_3表面的复盖可显著促进Mo物种的还原和硫化。

关 键 词:原位激光拉曼技术  还原  硫化  Mo/Al2O3  Mo/TiO2-Al2O3  
收稿时间:1992-11-02
修稿时间:1993-03-30

Study of the Reducing and Sulfiding Process of Mo-Supported Catalyst by in situ LRS
Wei Zhaobin, Wei Chengdong ,Xin Qin.Study of the Reducing and Sulfiding Process of Mo-Supported Catalyst by in situ LRS[J].Acta Physico-Chimica Sinica,1994,10(5):402-408.
Authors:Wei Zhaobin  Wei Chengdong  Xin Qin
Institution:State Key Laboratory of Catalysis, Dalian Institute of Chemical Physics, Chinese Academy of Science, Dalian 116023
Abstract:In this paper the changes of Mo species of Mo/Al_2O_3 and Mo/TiO_2-Al_2O_3 catalysts in reducing and sulfiding process have been studied by in situ LR spectroscopic technique. The results show: (1) The reducibility of various Mo species in Mo/Al_2O_3 is different.The bands of octahedral Mo species and their polymer at 215 and 971 cm~(-1) disappeared first at 100 ℃, and then crystalline MoO_3 at 820 cm~(-1) at below 300 ℃ in H_2. The bands of Al_2(MoO_4)_3 phase at 377 and 1003 cm~(-1) disappeared at 400 ℃. Polymer of octahedral Mo species at 961 cm~(-1) and crystalline MoO_3 at 289, 666, 816 and 994 cm~(-1) exist in Mo/TiO_2-Al_2O_3 catalysts. The former was reduced at lower temperatures than the latter. (2) When H_2S-H_2 flowed into sample cell at room temperature, the bands of oxidic Mo/Al_2O_3 disapeared, and simultaneously, the bands of MoS_2 at 377, 401 cm~(-1) and complicated molybdenum oxysulfide at 325, 348, 450, 540 cm~(-1) emerged. After sulfiding at 400 ℃, only MoS_2 phase exists. For Mo/TiO_2-Al_2O_3, the bands of Mo and TiO_2 disappeared upon sulfiding of a sample at room temperature, and the bands of MoS_2 at 375 and 398 cm~(-1) emerged. This reveals that modification of the Al_2O_3 surface by TiO_2 strongly enhances the sulfiding of Mo supported catalysts.
Keywords:In situ LRS  Reduction  Sulfidation  Mo/Al_2O_3  Mo/TiO_2-Al_2O_3
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