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首页> 外文期刊>ACS applied materials & interfaces >In Situ Observation of Carbon Dioxide Capture on Pseudo-Liquid Eutectic Mixture-Promoted Magnesium Oxide
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In Situ Observation of Carbon Dioxide Capture on Pseudo-Liquid Eutectic Mixture-Promoted Magnesium Oxide

机译:原位观察伪液共晶混合物促进氧化镁的二氧化碳捕获

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摘要

Eutectic mixtures of alkali nitrates are known to increase the sorption capacity and kinetics of MgO-based sorbents. Underlying principles and mechanisms for CO2 capture on such sorbents have already been established; however, real-time observation of the system was not yet accomplished. In this work, we present the direct-observation of the CO2 capture phenomenon on a KNO3-LiNO3 eutectic mixture (EM)-promoted MgO sample, denoted as KLM, via in situ transmission electron microscopy (in situ TEM). Results revealed that the pseudoliquid EM undergoes structural rearrangement as MgCO3 evolves from the surface of MgO, resulting in surface roughening and evolution of cloudy structures that stay finely distributed after regeneration. From this, we propose a nucleation and structural rearrangement scheme for MgCO3 and EM, which involves the rearrangement of bulk EM to evenly distributed EM clusters due to MgCO3 saturation as adsorption proceeds. We also conducted studies on the interface between EM over solid MgO and MgCO3 formed during sorption, which further clarifies the interaction between MgO and EM. This study provides better insight into the sorption and regeneration mechanism, as well as the structural rearrangements involved in EM -promoted sorbents by basing, not only on intrinsic evolutions but also on real-time observation of the system as a whole.
机译:已知碱硝酸盐的共晶混合物增加了MgO的吸附剂的吸附能力和动力学。已经建立了这种吸附剂上二氧化碳捕获的基本原则和机制;但是,尚未实现对系统的实时观察。在这项工作中,我们介绍了在KNO3-LINO3共晶混合物(EM)的CO 2捕获现象的直接观察,所述MGO样品,通过原位透射电子显微镜(原位TEM)表示为KLM。结果显示,当MgCO 3从MgO的表面演变时,伪醇EM经历了结构重排,导致表面粗糙化和浑浊结构的演变,其在再生后保持细腻分布。由此,我们提出了用于MgCO3和EM的成核和结构重排方案,其涉及由于MgCO3饱和度而作为吸附所需的MgCO3饱和来重新排列均匀分布的EM簇。我们还对Solid MgO和吸附过程中形成的MgCO 3进行了研究,进一步阐明了MgO和EM之间的相互作用。本研究提供了更好地了解吸附和再生机制,以及通过基于内在的进化而且还对整个系统的实时观察而涉及EM-ProMoted吸附剂的结构重排。

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