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首页> 外文期刊>Journal of Materials Chemistry: An Interdisciplinary Journal dealing with Synthesis, Structures, Properties and Applications of Materials, Particulary Those Associated with Advanced Technology >X-Ray absorption and photoelectron spectroscopic investigation of vanadium interaction with NH~(4+)-and Eu~(3+)-exchanged zeolite-Y following calcination and steam treatment
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X-Ray absorption and photoelectron spectroscopic investigation of vanadium interaction with NH~(4+)-and Eu~(3+)-exchanged zeolite-Y following calcination and steam treatment

机译:煅烧和水蒸气处理后钒与NH〜(4 +)-和Eu〜(3+)交换沸石-Y相互作用的X射线吸收和光电子光谱研究

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摘要

X-Ray absorption near-edge structure, extended X-ray absorption fine structure and X-ray photoelectron spectroscopy have been used to investigate the interaction of vanadium with both NH~(4+)-and Eu~(3+)-exchanged, dealumianted zeolite-Y. In both cases, samples were subjected to either calcination or steam treatment at temperatures in the range 100 to 800 deg C. Following deposition of vanadium, in the form of vanadyl (IV) acetylacetonate, there is evidence of a weak interaction between vanadium and the zeolite-Y framework. Under the conditions used in the work, treatment at increasing temperature, either in air or steam, results in the complete oxidation of V(IV) to V(v) at temperatures in the range 300 to 500 deg C. At temperatures exceeding 500 deg C, V(v) is present in tetrahedrally-distorted vanadium oxide species containing terminal V=O bonds, which are highly dispersed but bonded to the zeolite framework. These results show that the migration of vanadium into the zeolite-Y framework is not dependent on the presence of steam, nor is there any detectable influence of the exchange Eu~(3+) cations.
机译:X射线吸收近边缘结构,扩展X射线吸收精细结构和X射线光电子能谱已用于研究钒与NH〜(4 +)-和Eu〜(3+)交换的相互作用,脱铝沸石-Y。在这两种情况下,样品都在100至800℃的温度范围内进行煅烧或蒸汽处理。沉积钒后,乙酰丙酮钒(IV)以钒的形式存在,这表明钒与钒之间的相互作用较弱。沸石-Y框架。在工作中使用的条件下,在升高的温度下(在空气或蒸汽中)进行处理,会在300至500摄氏度的温度下将V(IV)完全氧化为V(v)。在超过500摄氏度的温度下C,V(v)存在于四面扭曲的钒氧化物中,后者的末端具有V = O键,该键高度分散但与沸石骨架键合。这些结果表明,钒向沸石-Y骨架的迁移不依赖于蒸汽的存在,交换Eu〜(3+)阳离子也没有任何可检测的影响。

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