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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Density Functional Theory Study on the Adsorption of H2S and Other Claus Process Tail Gas Components on Copper- and Silver-Exchanged Y Zeolites
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Density Functional Theory Study on the Adsorption of H2S and Other Claus Process Tail Gas Components on Copper- and Silver-Exchanged Y Zeolites

机译:铜和银交换Y沸石吸附H2S和其他克劳斯工艺尾气组分的密度泛函理论研究

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The potential use of Cu- and Ag-exchanged Y zeolites as selective adsorbents for hydrogen sulfide (H2S) from Claus process tail gas was investigated with density fimclional theory (DFT). The adsorption energies of H2S and other Claus tail gas components (CO, H2O, N2, and CO2) were computed for these zeolites as well as for Li-Y, Na-Y, and K-Y on a cluster model. Comparison of adsorption energies for H2S versus the other components indicated that Ag-Y has potential for selective adsorption of H2S, whereas Cu-Y is subject to strong adsorption of CO, and alkali metal-exchanged Y zeolites are subject to H2O adsorption. Comparison with alkali metal-exchanged Y zeolites was performed to clarify the role of d electrons, while the influence of the zeolite framework wasassessed by comparing adsorption energies on the cluster model with those on bare cations. Absolutely localized molecular orbital energy decomposition analysis (ALMO EDA) revealed that for Cu- and Ag-containing systems, transfer of electrons between the cation and the adsorbate, i.e., the donation of d electrons and the acceptance of electrons in the unoccupied orbitals of the cation, plays an important role in determining the adsorption energy. On the other hand, for alkali metals-containing systems, charge transfer is negligible and adsorption energies are dominated by interactions due to electrostatics, polarization, and structural distortions.
机译:利用密度泛函理论(DFT)研究了铜和银交换的Y沸石作为克劳斯工艺尾气中硫化氢(H2S)的选择性吸附剂的潜在用途。在簇模型中,针对这些沸石以及Li-Y,Na-Y和K-Y,计算了H2S和其他克劳斯尾气组分(CO,H2O,N2和CO2)的吸附能。比较H2S和其他组分的吸附能表明,Ag-Y具有选择性吸附H2S的潜力,而Cu-Y具有较强的CO吸附能力,而碱金属交换的Y沸石也具有H2O吸附能力。进行了与碱金属交换Y沸石的比较,以阐明d电子的作用,同时通过比较簇模型与裸阳离子上的吸附能来评估沸石骨架的影响。绝对局部分子轨道能量分解分析(ALMO EDA)显示,对于含Cu和Ag的系统,阳离子和被吸附物之间的电子转移,即d电子的提供和电子在未占据轨道中的接受。阳离子在确定吸附能方面起着重要作用。另一方面,对于含碱金属的系统,电荷转移可忽略不计,并且吸附能主要由静电,极化和结构变形引起的相互作用所主导。

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