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CO2 adsorption in nanosized RHO zeolites with different chemical compositions and crystallite sizes

机译:用不同化学组成和微晶尺寸的纳米rOO沸石中的CO 2吸附

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摘要

In this work, nanosized RHO zeolite samples with different Si/Al ratios were synthetized and tested for CO2 adsorption by combining in situ IR spectroscopy and in situ X-ray powder diffraction using synchrotron radiation. The structural changes of the RHO nanosized zeolites, subjected to high temperature treatment (350 degrees C) and CO2 adsorption (1 and 5 bar), studied by high-resolution X ray powder diffraction, indicated the presence of two phases with different cell parameters in both samples. The combination of the X-ray technique with IR allowed evaluation of the CO2 adsorption capacity of the samples and their adsorption dynamic. The results indicated that the CO2 adsorption capacity is mainly related to the sodium content in the nanosized RHO crystals. The performed adsorption experiments showed that 1 bar CO2 is sufficient to saturate the RHO samples at room temperature, and no change in the CO2 adsorption capacity at 5 bar was observed.
机译:在这项工作中,通过使用Synchrotron辐射的原位IR光谱和原位X射线粉末衍射合成并测试具有不同Si / Al比的纳米rOO沸石样品并测试CO 2吸附。 通过高分辨率X射线粉末衍射研究的高温处理(350℃)和CO 2吸附(1和5巴)进行高温处理(350℃)和CO 2吸附(1和5巴)的结构变化,表明存在两相具有不同细胞参数的阶段 两个样品。 X射线技术与IR允许评估样品的CO 2吸附容量及其吸附动力学的组合。 结果表明,二氧化碳吸附能力主要与纳米rhO晶体中的钠含量有关。 所进行的吸附实验表明,1巴CO 2足以使ROO样品在室温下饱和,并且观察到5巴的CO 2吸附能力没有变化。

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