首页> 外文期刊>Applied Catalysis, A. General: An International Journal Devoted to Catalytic Science and Its Applications >Titanium and cerium-containing mesoporous silicate materials as catalysts for oxidative cleavage of cyclohexene with H2O2:A comparative study of catalytic activity and stability
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Titanium and cerium-containing mesoporous silicate materials as catalysts for oxidative cleavage of cyclohexene with H2O2:A comparative study of catalytic activity and stability

机译:含钛和铈的介孔硅酸盐材料作为H 2 O 2氧化裂解环己烯的催化剂:催化活性和稳定性的比较研究

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摘要

Catalytic properties of transition-metal-containing silicate materials with hexagonally packed mesopore-channels,Ti-MMM-2 and Ce-SBA-15,have been studied in oxidative cleavage of cyclohexene(CyH)to adipic acid using aqueous H2O2 as oxidant.In a solvent-free system,the yield of adipic acid reached 10-15% at H2O2/CyH 3.6 mol mol~(-1)and 80°C after 72 h.The stepwise addition of the oxidant to the reaction mixture allowed increasing the yield of the target product up to 33 and 18% for Ti-MMM-2 and Ce-SBA-15,respectively.For both catalysts,the yield of adipic acid decreased significantly in the second run despite CyH conversion attained 100%.The catalyst stability and the reasons of the deactivation have been explored.For both catalytic materials,partial decrease of the mesopore surface area and mesopore volume was observed after the CyH oxidation run.DRS-UV-vis study revealed irreversible formation of oligomerized TiO2-like species on the Ti-MMM-2 surface due to interaction of Ti centres with the oxidant and the reaction products.The elemental analysis data showed that adipic acid causes leaching of titanium from Ti-MMM-2 into solution.Ce-SBA-15 was found to be more stable with respect to the active metal leaching but prone to deactivation due to agglomeration of cerium ions to form cerium oxide nanocrystallites;partial reduction of Ce(IV)to Ce(IIl)also occurred.
机译:已经研究了使用六方堆积的中孔通道Ti-MMM-2和Ce-SBA-15的含过渡金属的硅酸盐材料在以H2O2为氧化剂的环己烯(CyH)氧化裂解为己二酸中的催化性能。在无溶剂体系下,72小时后,在H2O2 / CyH 3.6 mol mol〜(-1)和80°C下,己二酸的收率达到10-15%。逐步向反应混合物中添加氧化剂Ti-MMM-2和Ce-SBA-15的目标产物分别达到33%和18%。对于两种催化剂,尽管CyH转化率达到100%,第二步的己二酸收率仍显着下降。对于这两种催化材料,在CyH氧化后均观察到中孔表面积和中孔体积的部分减少。DRS-UV-vis研究表明,低聚的TiO2类物质不可逆地形成。 Ti-MMM-2表面由于Ti中心相互作用元素分析数据表明,己二酸可导致钛从Ti-MMM-2浸出到溶液中。发现Ce-SBA-15相对于活性金属浸出更稳定,但易于析出。由于铈离子的团聚形成氧化铈纳米微晶而失活;也发生了Ce(IV)部分还原为Ce(IIl)。

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