Cametti Georgia, Giordani Matteo
Institute of Geological Sciences, University of Bern, Baltzerstrasse 1+3, 3012, Bern, Switzerland.
Department of Pure and Applied Sciences, University of Urbino Carlo Bo, 61029, Urbino, Italy.
Sci Rep. 2024 Oct 10;14(1):23778. doi: 10.1038/s41598-024-74638-4.
The sorption properties of zeolites are controlled by several factors, i.e. Si/Al ratio of the aluminosilicate framework [AlSiO], the type and position of the extraframework (EF) cations, and the applied temperature. Here we investigate the flexibility of CHA framework as a function of EF cation-content and temperature (20-350 °C). Two CHA forms (Na- and Cu-CHA) with Si/Al = 2 were analysed. The main objectives were: (i) to shed light on the HT behaviour of Na-CHA, for which contrasting results exist in literature; (ii) define the role of temperature and EF cation-type in the response to the heating stimuli. We show that at 75 °C, Na-CHA undergoes a severe contraction of the unit-cell volume (-12%) accompanied by a symmetry lowering (R-3m to I2/m). The transformation is reversible, if the dehydrated Na-CHA is exposed to ambient conditions. In contrast, Cu-CHA experiences a significant different dehydration path, which involves minor changes of the CHA framework, and a net positive thermal-expansion after dehydration. The implications of the observed transformations for gas separation processes are finally discussed.
沸石的吸附特性受几个因素控制,即硅铝酸盐骨架[AlSiO]的硅铝比、骨架外(EF)阳离子的类型和位置以及所施加的温度。在此,我们研究CHA骨架的柔韧性随EF阳离子含量和温度(20 - 350°C)的变化情况。分析了两种硅铝比为2的CHA形式(Na-CHA和Cu-CHA)。主要目标是:(i)阐明Na-CHA的高温行为,文献中对此存在相互矛盾的结果;(ii)确定温度和EF阳离子类型在对加热刺激的响应中的作用。我们表明,在75°C时,Na-CHA的晶胞体积会严重收缩(-12%),同时对称性降低(从R-3m变为I2/m)。如果将脱水后的Na-CHA暴露在环境条件下,这种转变是可逆的。相比之下,Cu-CHA经历了显著不同的脱水路径,其中CHA骨架的变化较小,脱水后有净正热膨胀。最后讨论了所观察到的转变对气体分离过程的影响。