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首页> 外文期刊>Applied Catalysis, A. General: An International Journal Devoted to Catalytic Science and Its Applications >Alumina-supported cobalt-molybdenum sulfide modified by tin via surface organometallic chemistry:application to the simultaneous hydrodesulfurization of thiophenic compounds and the hydrogenation of olefins
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Alumina-supported cobalt-molybdenum sulfide modified by tin via surface organometallic chemistry:application to the simultaneous hydrodesulfurization of thiophenic compounds and the hydrogenation of olefins

机译:锡通过表面有机金属化学改性的氧化铝负载的钴钼硫化钼:在噻吩化合物同时加氢脱硫和烯烃氢化中的应用

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Surface organometallic chemistry has been used to deposit tin atoms on an alumina-supported cobalt-molybdenum sulfide.The EXAFS spectra at the Mo and Co K-edges were not changed significantly by tin doping,which means that the initial morphology of sulfide phases was preserved during the synthesis.~(119)Sn Mossbauer spectroscopy indicated that the main neighbors of the deposited tin atoms were sulfur and oxygen atoms with no significant formation of metallic tin particles.Tin seems thus to have been deposited either on the sulfide slabs through sulfur bridges or on the support via oxygen bonding.According to the infrared spectroscopy,tin doping led to the blocking of different surface sites with slight electronic structure modification.Those surface sites are sulfur vacancies on sulfide slabs,A1~(3+) or hydroxyl groups on the support,or "interfacial" sites:support hydroxyl groups H-bonded with sulfide phases.The impact of tin doping on the activity and selectivity of the sulfide phases was studied by catalytic tests carried out using a synthetic FCC gasoline feed.Three main reactions were found to be involved:hydrodesulfurization of sulfur-containing molecules,double-bond isomerization and hydrogenation of olefins.Olefin hydrogenation was preceded by double-bond isomerization reaction,which gave quickly thermodynamically equilibrated composition.No clear correlation could be made between tin doping and isomerization performance and catalyst support was proposed as the main actor for this reaction.Small amounts of tin had little effect on the hydrogenation activity,but higher loadings resulted in an important decrease in activity.Contrary to the case of olefin hydrogenation,thiophene hydrodesulfurization activity decreased drastically at a low tin loading,and continued to decrease but more slightly at higher loadings.By comparison of the activity variations and the characterization results,the sulfur vacancies were found to play a major role in the hydrodesulfurization process.Interfacial sites were assumed to be involved in one of the key steps in the olefin hydrogenation pathway.
机译:表面有机金属化学已被用于在氧化铝负载的钴-钼-钼硫化物上沉积锡原子。锡掺杂未显着改变Mo和Co K边缘的EXAFS光谱,这意味着保留了硫化物相的初始形态〜(119)Sn Mossbauer光谱表明沉积的锡原子的主要邻域是硫和氧原子,没有明显形成金属锡颗粒,因此锡似乎是通过硫桥沉积在硫化物平板上的。红外光谱分析表明,锡的掺杂导致不同表面位点的阻断,并进行了轻微的电子结构修饰。这些表面位点是硫化板上的硫空位,A1〜(3+)或羟基。支撑位或“界面”位:与硫化物相H键合的支撑羟基。锡掺杂对硫化物相的活性和选择性的影响通过使用合成FCC汽油进料进行的催化测试进行了研究,发现涉及三个主要反应:含硫分子的加氢脱硫,双键异构化和烯烃加氢。烯烃加氢之前先进行双键异构化反应,锡的掺杂和异构化性能之间没有明确的相关性,并且提出了催化剂载体作为该反应的主要参与者。少量的锡对氢化活性影响不大,但是较高的负载量导致了反应的进行。与烯烃加氢相反,噻吩加氢脱硫活性在低锡负载下急剧下降,并在高负载下继续下降,但略有下降。通过比较活性变化和表征结果,硫空位为发现在加氢脱硫中起主要作用界面部位被认为是烯烃加氢途径中的关键步骤之一。

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