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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Xenon Capture on Silver-Loaded Zeolites: Characterization of Very Strong Adsorption Sites
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Xenon Capture on Silver-Loaded Zeolites: Characterization of Very Strong Adsorption Sites

机译:载银沸石上的氙捕获:非常强的吸附位点的表征

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The number and strength of adsorption sites for Xe in silver-modified zeolites are estimated from isotherm measurements at various temperatures over a broad range of pressure (from 1 ppm to atmospheric pressure). Fully and partially exchanged silver zeolites were synthesized starting from Na-ZSM-5(25), Na-ZSM-5(40), Na-Beta, NaX, and NaY. We have discovered that silver-modified zeolites may present one or two distinct adsorption sites depending on the nature of the material and silver loadings. The strongest adsorption sites are characterized by isosteric heat of adsorption in the order of -40 to -50 kJ·mol~(-1). For Pentasil-type zeolites, we observe a linear 2:1 correlation between the total amount of silver and the number of strong sites. The highest concentration of strong sites is found for fully silver exchanged ZSM-5 (5.7 x 10~(-4) mol/g), which presents the largest silver content for Pentasil-type zeolite. The equilibrium constant of Ag-ZSM-5 at low pressure is about 50 times larger than that of AgX. Qualitative correlations were established between Xe adsorption isotherms and Xe NMR signals. We show that Xe NMR could be used as a quantitative method for the characterization of the strength and of the number of strong Xe adsorption sites on silver-exchanged zeolites. The numbers of strong adsorption sites responsible for the Xe adsorption at 10-1000 ppm can be determined by the length of the plateau observed at low Xe uptake. In practice, our findings give guidelines for the discovery and optimization of silver-loaded zeolites for the capture of Xe at ppm levels. It appears that the amount of silver is a key parameter. Silver-modified ZSM-5 shows adsorption capacities 2-3 orders of magnitude larger than currently applied adsorbents for atmospheric Xe capture.
机译:银改性沸石中Xe的吸附位点的数量和强度是通过在各种温度下(在1 ppm至大气压之间)的各种温度下的等温线测量得出的。从Na-ZSM-5(25),Na-ZSM-5(40),Na-Beta,NaX和NaY开始合成完全和部分交换的银沸石。我们已经发现,根据材料的性质和银的负载量,银改性的沸石可能会出现一个或两个不同的吸附位。最强的吸附位点的特征是吸附的等曲热约为-40至-50 kJ·mol〜(-1)。对于Pentasil型沸石,我们观察到银的总量与强位点数量之间呈线性2:1的相关性。完全银交换的ZSM-5的强位点浓度最高(5.7 x 10〜(-4)mol / g),这表示Pentasil型沸石的银含量最高。 Ag-ZSM-5在低压下的平衡常数约为AgX的50倍。 Xe吸附等温线与Xe NMR信号之间建立了定性相关性。我们表明,Xe NMR可用作定量表征银交换沸石上强度和强Xe吸附位点数量的方法。可以通过在低Xe吸收下观察到的平稳段的长度来确定在10-1000 ppm处负责Xe吸附的强吸附位点的数量。实际上,我们的发现为发现和优化载银沸石以捕获ppm级Xe提供了指导。看来银的量是关键参数。银改性的ZSM-5的吸附能力比目前用于大气Xe捕获的吸附剂大2-3个数量级。

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