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首页> 外文期刊>ACS applied materials & interfaces >Encapsulation of Phase-Changing Eutectic Salts in Magnesium Oxide Fibers for High-Temperature Carbon Dioxide Capture: Beyond the Capacity-Stability Tradeoff
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Encapsulation of Phase-Changing Eutectic Salts in Magnesium Oxide Fibers for High-Temperature Carbon Dioxide Capture: Beyond the Capacity-Stability Tradeoff

机译:用于高温二氧化碳纤维氧化镁纤维中相变共晶盐的封装:超出容量稳定性折衷

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摘要

Eutectic mixture (EM)-promoted MgO sorbents exhibit high CO2 sorption capacities but experience a significant decrease in uptake after multiple sorption-regeneration cycles due to EM movement and redistribution at high temperatures. Encapsulation of a pseudoliquid, phase-changing EM promoter with MgO may thus prevent the loss of active interface by confining the EM within a fixed area inside a MgO shell. In this work, we successfully embedded an EM composed of KNO3 and LiNO3 in a MgO fiber matrix via core-shell electrospinning. The synthesized sorbent achieved relatively high and steady sorption capacities, maintaining a stable uptake of similar to 20 wt % after 25 sorption-regeneration cycles. The sorbent was also characterized using various techniques including in situ transmission electron microscopy (TEM) to describe its morphology, from which it was confirmed that the eutectic salt existed in distributed hollow pockets within the MgO fiber matrix and stayed confined within these fixed areas, favorably limiting its movement and redistribution when exposed to high temperatures where it exists in the liquid form. The EM may also be described as a glue that holds the fiber together, while MgO acts as a protective shell that prevents structural changes and rearrangement caused by EM movement, allowing the sorbent to retain its cyclic stability after multiple cycles and demonstrating its potential for industrial use after further improvement. Thus, the microencapsulation of a phase-changing EM material with pure MgO metal oxide was successfully achieved and might be explored for various material applications.
机译:共晶混合物(EM) - 抱怨的MgO吸附剂表现出高CO 2吸附能力,但由于EM运动和高温再分布,多次吸附再生循环后摄取的摄影显着降低。伪溶解的封装,具有MgO的相变EM启动子因此可以通过将EM限制在MgO壳内的固定区域内来防止活性界面的损失。在这项工作中,我们通过芯壳静电纺丝成功地嵌入了由MgO纤维基质中的KNO3和LINO3组成的EM。合成的吸附剂达到了相对高且稳定的吸附能力,保持了25个吸附再生循环后20wt%的稳定摄取。吸附剂的特征还用各种技术,包括原位透射电子显微镜(TEM)来描述其形态学,从中证实,在MgO纤维基质内的分布式中空袋中存在共晶盐,并且在这些固定区域内被限制在这些固定区域内,有利地限制其在暴露于液体形式中的高温时的运动和再分配。也可以将EM描述为将纤维保持在一起的胶水,而MgO则用作防止由EM运动引起的结构变化和重排的保护壳,使吸附剂能够在多个周期后保持其循环稳定性并证明其工业潜力。进一步改善后使用。因此,成功地实现了具有纯MgO金属氧化物的相变EM材料的微胶囊,可以探索各种材料应用。

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