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Effects of porous carbon additives on the CO2 absorption performance of lithium orthosilicate

机译:多孔碳添加剂对原硅酸锂吸收CO2性能的影响

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Lithium orthosilicate (Li4SiO4) is an attractive high-temperature CO2 sorbent (>650 degrees C) because of its large theoretical absorption capacity of up to 36.7 wt%. However, slow kinetics and partial reactions with CO2 hinder its proper operation as a sorbent under practical conditions. To allow the use of this sorbent at lower operation temperatures, the present studies explored the way to improve the CO2 absorption kinetic and increase the degree of reaction of Li4SiO4. Porous carbon materials such as CMK-3 were introduced into the sorbent to provide an internal gas pathway. Upon calcination conditions, the carbon amount was controlled in the composites (Li4SiO4@CMK-X%, where X represents the amounts of CMK-3). In Li4SiO4@CMK-1.8%, CMK-3 is distributed over the whole solid; in contrast, the additive in Li4SiO4@CMK-0.5% is mainly observed near the surface of the solid. CO2 gas sorption study of the composites showed that pores of CMK-3 in Li4SiO4 aid the diffusion of CO2. In addition, we found that the incorporation of porous carbon provides more active sites for interactions with CO2 through the formation of cavities between Li4SiO4 and CMK-3. Li4SiO4@CMK-1.8% had an increased CO2 absorption capacity (35.4 wt%) and rate (15.2 wt% for the first 5 min) at 600 degrees C, compared to the CO2 absorption capacity (16.3 wt%) and rate (5.1 wt% for the first 5 min) of pristine Li4SiO4 (p-Li4SiO4). To confirm the influence of porous carbon on the CO2 absorption properties, multi-walled carbon nanotube (MWCNT) was also examined as an additive instead of CMK-3. Li4SiO4@CNT showed similar trends with Li4SiO4@CMK sorbents. (C) 2016 Elsevier B.V. All rights reserved.
机译:原硅酸锂(Li4SiO4)是一种有吸引力的高温CO2吸附剂(> 650摄氏度),因为它的理论吸收容量高达36.7 wt%。但是,缓慢的动力学和与CO2的部分反应阻碍了它在实际条件下作为吸附剂的正常运行。为了允许在较低的操作温度下使用该吸附剂,本研究探索了改善CO2吸收动力学并提高Li4SiO4反应程度的方法。将多孔碳材料(例如CMK-3)引入吸附剂中,以提供内部气体通道。在煅烧条件下,控制复合材料中的碳量(Li4SiO4 @ CMK-X%,其中X代表CMK-3的量)。在Li4SiO4@CMK-1.8%中,CMK-3分布在整个固体中。相反,主要在固体表面附近观察到Li4SiO4@CMK-0.5%的添加剂。复合材料的CO2气体吸附研究表明,Li4SiO4中的CMK-3孔有助于CO2的扩散。此外,我们发现,通过在Li4SiO4和CMK-3之间形成空腔,多孔碳的结合为与CO2的相互作用提供了更多的活性位点。 Li4SiO4@CMK-1.8%在600摄氏度下具有更高的CO2吸收容量(35.4 wt%)和比率(前5分钟为15.2 wt%),而CO2吸收容量(16.3 wt%)和比率(5.1 wt%)原始Li4SiO4(p-Li4SiO4)的前5分钟为%)。为了确认多孔碳对CO2吸收性能的影响,还研究了多壁碳纳米管(MWCNT)作为添加剂而不是CMK-3。 Li4SiO4 @ CNT与Li4SiO4 @ CMK吸附剂显示出相似的趋势。 (C)2016 Elsevier B.V.保留所有权利。

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