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Investigation Of Ethene Adsorption On Hmordenite And Modified Hmordenite By Frequency Response Method

机译:频率响应法研究乙烯在改性丝光沸石和改性丝光沸石上的吸附

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The frequency response (FR) technique has been applied to study adsorption mechanism of ethene in parent Hmordenite (HMor) and the HMor (CuO/HMor, Cs~+/HMor) which were modified by CuO and Cs~+. The FR spectra of ethene in HMor, CuO/HMor and Cs~+/HMor were recorded at temperatures between 252 and 273 K under the pressure of 0.2-30.0 Torr, and then those FR spectra were investigated. The results showed that two parallel adsorption processes exist in ethene/HMor system. Those two processes were attributed to adsorption process of ethene on proton acid sites (low frequency adsorption) and on hydrogen cation sites (high frequency adsorption); meanwhile the number of sites available for adsorption of : ethene is 0.692 and 0.828 mmol g~(-1), respectively. The number of adsorption sites in low frequency is increased by the introduction of CuO which is located among the proton acid sites but covered the hydrogen ion sites in high frequency. Chemical adsorption of ethene is the main sorption process in CuO/HMor. The number of adsorption sites in low frequency is decreased by the introduction of Cs~+ which counteracted proton acid sites in low frequency. Physical adsorption is the main sorption process in Cs~+/HMor channels. The optimum content of CuO for modification is 5% (weight/weight). Combining the FR spectra and other methods such as isotherms and Langmuir model, a thorough understanding of the ethene adsorption processes on zeolites can be achieved.
机译:频率响应(FR)技术已被用于研究乙烯在CuO和Cs〜+改性的母体丝光沸石(HMor)和HMor(CuO / HMor,Cs〜+ / HMor)中的吸附机理。记录了乙烯在HMor,CuO / HMor和Cs〜+ / HMor中的FR光谱,温度在252和273 K之间,压力为0.2-30.0 Torr,然后研究了这些FR光谱。结果表明,乙烯/ HMor体系存在两个平行的吸附过程。这两个过程归因于乙烯在质子酸部位(低频吸附)和氢阳离子部位(高频吸附)的吸附过程。同时,乙烯的可吸附位点分别为0.692和0.828 mmol g〜(-1)。通过引入CuO可以增加低频吸附位的数量,该CuO位于质子酸位点之间,但覆盖了高频的氢离子位点。乙烯的化学吸附是CuO / HMor中的主要吸附过程。通过引入抵消低频质子酸位点的Cs〜+,减少了低频处的吸附位点数量。物理吸附是Cs〜+ / HMor通道的主要吸附过程。用于改性的CuO的最佳含量为5%(重量/重量)。结合FR光谱和其他方法(如等温线和Langmuir模型),可以全面了解乙烯在沸石上的吸附过程。

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