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Study of Dibenzothiophene Adsorption Over Carbon Nanotube Supported CoMo HDS Catalysts 被引量:1
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作者 HaiyangChen XichenZhou +3 位作者 HongyanShang ChenguangLiu JieshanQiu FeiWei 《Journal of Natural Gas Chemistry》 CAS CSCD 2004年第4期209-217,共9页
Adsorption properties of dibenzothiophene (DBT) on a CNT (carbon nanotube) support as well as on CoMoS/CNT and CoMoO/CNT catalysts have been studied. Consecutive desorption of adsorbates was measured by TGA. The commo... Adsorption properties of dibenzothiophene (DBT) on a CNT (carbon nanotube) support as well as on CoMoS/CNT and CoMoO/CNT catalysts have been studied. Consecutive desorption of adsorbates was measured by TGA. The commonly used carriers AC (activated carbon), γ-Al_2O_3, and their supported catalysts (CoMoO/AC, CoMoS/AC, CoMoO/γ-Al_2O_3, CoMoS/γ-Al_2O_3)were also subjected to analysis for comparison. The acidic properties of the samples were characterized using the NH_3-TPD technique. Correlation between the adsorption of DBT and the acidic properties of the catalysts has been established. It was found that the Co-Mo catalysts in the sulfide state adsorbed much more DBT molecules than the corresponding Co-Mo catalysts in the oxide state. The CoMoS/CNT catalyst exhibited very high HDS activity and selectivity, as compared with the CoMoS/γ-Al)_2O_3 catalysts. Based on the BET data and the high hydrogenolysis/hydrogenation selectivity of the CoMoS/CNT, it was deduced that more than 90% of the DBT molecules adsorbed on the CoMoS/CNT with an end-on mode, and the surface of the CoMoS/CNT catalyst was almost fully covered with DBT molecules. Although the AC support had very high surface area and high loading ability, the AC supported CoMoS catalyst showed lower HDS activity, as compared with the CoMoS/γ-Al_2O_3 catalyst. 展开更多
关键词 carbon nanotubes adsorption properties dibenzothiophene hydrodesufurtzation network
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FT-IR Study of Carbon Nanotube Supported Co-Mo Catalysts 被引量:1
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作者 HongyanShang ChenguangLiu FeiWei 《Journal of Natural Gas Chemistry》 CAS CSCD 2004年第2期95-100,共6页
In this paper, adsorption properties of dibenzothiophene (DBT) on carbon nanotube, carbon nanotube supported oxide state and sulfide state CoMo catalysts are studied by using thermal gravimetric analysis (TGA) techniq... In this paper, adsorption properties of dibenzothiophene (DBT) on carbon nanotube, carbon nanotube supported oxide state and sulfide state CoMo catalysts are studied by using thermal gravimetric analysis (TGA) technique and FT-IR spectroscopy. Activated carbon support, γ-AlgO3 support and supported CoMo catalysts are also subjected to studies for comparison. It was found that sulfide state CoMoS/MWCNT, CoMoS/AC and CoMoS/γ-Al2O3 catalysts adsorbed much more DBT molecules than their corresponding oxide state catalysts, as well as their corresponding supports. The chemically adsorbed DBT aromatic molecules did not undergo decomposition on the surface of supports, supported oxide state CoMo catalysts and sulfide state CoMo catalysts when out-gassing at 373 K. FT-IR results indicated that DBT molecules mainly stand upright on the active sites (acid sites and/or transition active phases) of CoMoS/MWCNT catalyst. However, DBT aromatic molecules mainly lie flat on MWCNT and CoMoO/MWCNT. 展开更多
关键词 ft-ir dibenzothiophene carbon nanotube adsorption
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二苯并噻吩在CoMo/CNT催化剂表面上的吸附行为研究 被引量:11
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作者 商红岩 刘晨光 +1 位作者 柴永明 邢金仙 《化学学报》 SCIE CAS CSCD 北大核心 2004年第9期888-894,M004,共8页
用等体积浸渍法分别制备了碳纳米管 (CNT)、活性炭 (AC)、γ Al2 O3 负载的CoMo加氢脱硫催化剂 .用器外预硫化的方法制备了相应的硫化态的CoMo催化剂 .采用程序升温脱附 (TPD)技术表征了载体、负载的氧化态CoMo催化剂和硫化态CoMo催化... 用等体积浸渍法分别制备了碳纳米管 (CNT)、活性炭 (AC)、γ Al2 O3 负载的CoMo加氢脱硫催化剂 .用器外预硫化的方法制备了相应的硫化态的CoMo催化剂 .采用程序升温脱附 (TPD)技术表征了载体、负载的氧化态CoMo催化剂和硫化态CoMo催化剂的表面酸性 .采用热重 (TG)和XRD等分析手段研究了二苯并噻吩 (DBT)在碳纳米管载体、碳纳米管负载的氧化态CoMo催化剂以及硫化态CoMo催化剂上的吸附行为 .对DBT在样品表面的吸附行为与表面酸性进行了关联 .研究发现 :DBT分子在载体、负载的催化剂表面的吸附行为遵循如下的规律 :硫化态CoMo催化剂对DBT的吸附能力 >相应氧化态CoMo催化剂对DBT的吸附能力≥相应载体对DBT分子的吸附能力 .研究表明 :载体的比表面积的大小不是决定DBT吸附量的主要因素 .DBT分子的吸附量与载体或催化剂的表面酸性以及其他表面性质有一定的内在联系 ,随着表面酸性的增强 ,吸附量也相应增大 .加氢脱硫产物分布结果表明 ,DBT分子在硫化态CoMo/CNT催化剂的表面可能以端点吸附为主 ;而在硫化态CoMo/AC和CoMo/γ Al2 O3 催化剂上存在两种竞争的吸附态 ,部分DBT分子端点吸附 。 展开更多
关键词 等体积浸渍法 碳纳米管负载钴钼催化剂 器外预硫化 程序升温脱附 吸附 加氢脱硫 碳纳米管 热重分析 二苯并噻吩 柴油
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