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Modified manganase oxide octahedral molecular sieves for oxidation and consecutive oxidation - acid reactions

机译:用于氧化和连续氧化-酸反应的改性氧化锰八面体分子筛。

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摘要

The research was focused on improvement of the catalytic activity of octahedral manganese oxide molecular sieve (OMS-2) in oxidation and consecutive oxidation-acid reactions. For oxidation reaction, OMS-2 was modified through incorporation of metals and ion-exchange. Sulphation was applied in order to create the acid sites on Ti-OMS-2 sample which was proven to have the highest oxidative properties and tested for consecutive oxidation-acidic reaction. Ti, Fe, Co and Cu were incorporated into the OMS-2 framework by isomorphous substitution to form Ti-OMS-2, Fe-OMS-2, Co-OMS-2 and Cu-OMS-2, respectively. A new method to synthesize Ti-OMS-2 with high Ti/Mn ratio was applied. Titanium incorporated OMS-2 was successfully synthesized without addition of manganese (II) solution which was normally necessary to synthesize metal substituted OMS-2. Ion-exchange was carried out in order to replace K+ ion in the tunnel structure of OMS-2 framework by H+ ions using concentrated HNO3. Sulphation was done by impregnation of certain amount of H2SO4 in different solvent. The characterization results show that Ti-OMS-2 exhibited a significantly higher Lewis acidity compared to the un-incorporated one. The physicochemical properties-catalytic activity of the modified OMS-2 catalyst was studied in the oxidation of cyclohexane, cylohexene and styrene, and also in consecutive transformation of 1-octene to 1,2-octanediol. Oxidation of cyclohexane with TBHP as oxidant on transition metal substituted OMS-2 showed that Ti-OMS-2 with high titanium content gave the highest conversion, which may be due to the presence Ti sites in the framework and nonframework. For metal incorporated in the framework, there is a correlation of ionic radii of metal substituted with conversion of cyclohexane. An increase in ionic radii of metal substituted OMS-2 increased the conversion of cyclohexane. This correlation may be due to the increase in the Lewis acidity in the metal incorporated OMS-2. The study on the catalytic activity of H-exchanged catalysts in oxidation of cyclohexane showed an increase in conversion of cyclohexane after ion-exchange. For further investigation, Ti-OMS-2 with high Ti/Mn ratio was used in oxidation of cyclohexene and styrene using TBHP as oxidant. The results showed that both titanium sites in framework and non-framework increased the activity of OMS-2 in the oxidation of cyclohexene. However, it was observed that only non-framework titanium species induced a synergetic effect that enhanced the oxidation of styrene. There is a correlation between Ti site location in Ti-OMS-2 catalyst with activation of C-H and C=C bonds. Ti sites in the framework only played role in C-H bond activation whereas Ti site non-framework enhanced the catalytic activity for both types of bond activation. SO4 ²¯/Ti-OMS-2 was proven to be active for consecutive transformation of 1-octene to 1,2-octanediol. However, it was confirmed that Brönsted acid sites did not exist in the sample. The success of the consecutive reactions may be due to the generation of Brönsted acid from hydrolysis of water on the Lewis acid sites of SO4 2-/Ti-OMS-2 sample.
机译:该研究的重点是提高八面体氧化锰分子筛(OMS-2)在氧化和连续氧化-酸反应中的催化活性。对于氧化反应,通过结合金属和离子交换对OMS-2进行了改性。进行硫酸化处理以在Ti-OMS-2样品上产生酸性位点,事实证明该酸性位点具有最高的氧化性能,并经过连续氧化-酸性反应测试。通过同构取代将Ti,Fe,Co和Cu掺入OMS-2骨架中,分别形成Ti-OMS-2,Fe-OMS-2,Co-OMS-2和Cu-OMS-2。应用了一种新的合成高Ti / Mn比的Ti-OMS-2的方法。无需添加通常是合成金属取代的OMS-2所必需的锰(II)溶液,就可以成功合成掺钛的OMS-2。进行离子交换是为了使用浓缩的HNO3用H +离子代替OMS-2骨架隧道结构中的K +离子。通过在不同溶剂中浸渍一定量的H2SO4进行硫化。表征结果表明,Ti-OMS-2的路易斯酸度明显高于未掺入的路易斯酸度。研究了改性OMS-2催化剂在环己烷,环己烯和苯乙烯的氧化反应中以及在1-辛烯连续转化为1,2-辛二醇中的物理化学性质-催化活性。在过渡金属取代的OMS-2上用TBHP作为氧化剂环己烷的氧化表明,高钛含量的Ti-OMS-2的转化率最高,这可能是由于骨架中和非骨架中存在Ti位。对于并入框架中的金属,被取代的金属的离子半径与环己烷的转化率相关。金属取代的OMS-2的离子半径增加可提高环己烷的转化率。这种相关性可能是由于掺入金属的OMS-2中的路易斯酸度增加所致。氢交换催化剂在环己烷氧化反应中的催化活性研究表明,离子交换后环己烷的转化率增加。为了进一步研究,将高Ti / Mn比的Ti-OMS-2以TBHP为氧化剂用于环己烯和苯乙烯的氧化。结果表明,骨架和非骨架中的钛位均增加了OMS-2在环己烯氧化中的活性。然而,观察到只有非骨架的钛物质诱导协同作用,增强了苯乙烯的氧化。 Ti-OMS-2催化剂中的Ti位点位置与C-H和C = C键的活化之间存在相关性。骨架中的Ti位仅在C-H键激活中起作用,而非骨架的Ti位则增强了两种键激活的催化活性。事实证明,SO4 2 / Ti-OMS-2具有将1-辛烯连续转化为1,2-辛二醇的活性。但是,已确认样品中不存在布朗斯台德酸位。连续反应的成功可能归因于水在SO4 2- / Ti-OMS-2样品的路易斯酸位点上水解产生的布朗斯台德酸。

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    Darmalis Fitri Hayati;

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  • 年度 2009
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  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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