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CO2 selective NaMg-CTS-1 and its structural formation from the titanium silicate based molecule sieve NaMg-ETS-4

机译:基于硅酸钛基分子筛NaMg-ETS-4的CO2选择性NaMg-CTS-1及其结构形成

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A range of titanium silicates (ETS-4 and CTS-1) with interesting gas separation properties were studied as CO2 adsorbents. Some of these adsorbents, in particular NaMg-CTS-1, showed the ability to selectively adsorb CO2-over-N-2. Partially exchanged NaM-ETS-4 (M = Mg, Ca, Sr and Ba) were synthesised in the Na+ form and ion exchanged with group 2 cations. All but NaBa-ETS-4 transformed into their CTS-1 counterparts, when these partially exchanged Na-ETS-4 were dehydrated. The transformation from ETS-4 to CTS-1 was monitored and studied extensively using diffraction and spectroscopic techniques. Powder X-ray diffraction allowed us to follow the changes of the unit cell parameters occurred at different temperatures. We combined high energy X-ray total scattering (analysed by pair distribution functions - PDF analysis), electron diffraction, infrared, Raman and Nuclear Magnetic Resonance (NMR) spectroscopy to study the transformation of ETS-4 to CTS-1. We understood that under dehydration steps, there was significant disruption to the Ti-O-Ti chain along the b-axis, which occurred concurrently with the distortion of the double 3-rings alongside of these chains. These changes were partly responsible for the contraction of the ETS-4 framework (and successive transformation to CTS-1). The new information allowed us to understand the interesting structures and sorption properties of these adsorbents. (C) 2014 Elsevier Inc. All rights reserved,
机译:研究了一系列具有有趣的气体分离性能的硅酸钛(ETS-4和CTS-1)作为CO2吸附剂。这些吸附剂中的一些,特别是NaMg-CTS-1,具有选择性吸附N2-上的CO2-的能力。以Na +形式合成了部分交换的NaM-ETS-4(M = Mg,Ca,Sr和Ba),并与第2组阳离子交换了离子。当这些部分交换的Na-ETS-4脱水后,除NaBa-ETS-4以外的所有转化为它们的CTS-1对应物。使用衍射和光谱技术对从ETS-4到CTS-1的转化进行了监测和广泛研究。粉末X射线衍射使我们能够追踪在不同温度下发生的晶胞参数的变化。我们结合了高能X射线总散射(通过成对分布函数分析-PDF分析),电子衍射,红外,拉曼光谱和核磁共振(NMR)光谱研究了ETS-4向CTS-1的转化。我们了解到,在脱水步骤下,Ti-O-Ti链沿b轴发生了显着破坏,这与这些链旁边的双3环的扭曲同时发生。这些更改部分负责了ETS-4框架的收缩(以及向CTS-1的后续转换)。新信息使我们能够了解这些吸附剂的有趣结构和吸附特性。 (C)2014 Elsevier Inc.保留所有权利,

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