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首页> 外文期刊>Journal of porous materials >Characterization and temperature evolution of iron-containing species in HZSM-5 zeolite prepared from different iron sources
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Characterization and temperature evolution of iron-containing species in HZSM-5 zeolite prepared from different iron sources

机译:不同铁源制备的HZSM-5沸石中含铁物质的表征和温度演化

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Iron-containing HZSM-5 zeolites are materials with important industrial applications as catalysts. Their characterization is difficult due to the various possible Fe-containing species which can exist in the pores of HZSM-5 zeolites and their dependence on the preparation technique. Three Fe-HZSM-5 samples were prepared by ion-exchange technique using different iron precursors: containing only Fe2+ or Fe3+ ions, and containing equimolar mixture of Fe2+ and Fe3+ ions. The samples were characterized by various experimental techniques (XRD, FTIR, UV-Vis spectroscopy and XANES/EXAFS) in order to clarify the type of the Fe-containing species existing in the samples. Periodic density functional calculations were also performed to help in elucidation of the obtained structural information with the EXAFS data and in clarification of the relative stability of the various Fe-containing species in the pores of the HZSM-5 zeolites. In the samples prepared with only Fe2+ or Fe3+ ions dominate isolated iron species but binuclear FeOFe2+ species and small iron oxide clusters are also present. In the third sample, prepared from a precursor containing iron ions in both oxidation states, most of the iron is included in the iron oxide clusters or small nanoparticles. The time-resolved XAS for the sample containing equimolar Fe2+ and Fe3+ ions revealed existence of two types of dominant iron oxide species-small oligonuclear clusters in the temperature region 100-300 degrees C and larger more oxidized moieties (nanoparticles) after heating the sample up to 400 and 500 degrees C.
机译:含铁的HZSM-5沸石是具有重要工业应用作为催化剂的材料。由于可能存在于HZSM-5沸石孔中的各种可能的含铁物种及其对制备技术的依赖性,因此难以表征它们。使用不同的铁前体,通过离子交换技术制备了三个Fe-HZSM-5样品:仅包含Fe2 +或Fe3 +离子,并且包含Fe2 +和Fe3 +离子的等摩尔混合物。通过各种实验技术(XRD,FTIR,UV-Vis光谱和XANES / EXAFS)对样品进行表征,以阐明样品中存在的含铁物种的类型。还进行了周期性密度泛函计算,以借助EXAFS数据阐明获得的结构信息,并有助于阐明HZSM-5沸石孔中各种含铁物种的相对稳定性。在仅用Fe2 +或Fe3 +离子制备的样品中,分离出的铁物种占主导地位,但也存在双核FeOFe2 +物种和小的氧化铁簇。在由包含两种氧化态的铁离子的前体制备的第三个样品中,大部分铁包含在氧化铁簇或小的纳米颗粒中。含有等摩尔Fe2 +和Fe3 +离子的样品的时间分辨XAS分析表明,存在两种类型的主要氧化铁物种-在100-300摄氏度的温度范围内存在小的寡核簇,并且在加热样品后存在较大的氧化部分(纳米颗粒)到400和500摄氏度。

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