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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Thermodynamics and kinetics analyses of high CO2 absorption properties of Li3NaSiO4 under various CO2 partial pressures
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Thermodynamics and kinetics analyses of high CO2 absorption properties of Li3NaSiO4 under various CO2 partial pressures

机译:在各种二氧化碳部分压力下Li3nasio4的高CO2吸收性能的热力学和动力学分析

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The properties of Li3NaSiO4 as a CO2 absorbent were evaluated by thermogravimetry (TG) and X-ray diffraction, which revealed that the CO2 absorption and desorption reaction, Li3NaSiO4 + CO2 <-> LiNaCO3 + Li2SiO3, is reversible. In scanning-type TG under various CO2 partial pressures (P(CO2)), mass gain ascribed to CO2 absorption started from approximately 400 degrees C, irrespective of P(CO2). CO2 desorption was observed at a higher temperature, which was considered the approximate equilibrium temperature of the above-mentioned reaction. A pseudo-Ellingham diagram of the reaction between Li3NaSiO4 and CO2, constructed using the obtained approximate equilibrium temperature under each P(CO2), showed similar behavior to that between Li4SiO4 and CO2, especially between 10(-2) and 10(-1) bar of P(CO2). Kinetics analysis by isothermal TG using the Jander model revealed that the reaction rate of CO2 absorption of Li3NaSiO4 was higher than that of Li4SiO4. The rate-determining step of CO2 absorption by Li3NaSiO4 was the diffusion process at the examined temperatures and P(CO2), which was different from the rate-determining step of the reaction between Li4SiO4 and CO2 under low P(CO2).
机译:通过热重分析(TG)和X射线衍射对Li3NaSiO4作为CO2吸收剂的性能进行了评估,结果表明Li3NaSiO4+CO2<->LiNaCO3+Li2SiO3的CO2吸收和解吸反应是可逆的。在不同CO2分压(P(CO2))下的扫描型TG中,归因于CO2吸收的质量增益从约400℃开始,与P(CO2)无关。在较高温度下观察到CO2解吸,该温度被认为是上述反应的近似平衡温度。利用获得的各P(CO2)下的近似平衡温度绘制的Li3NaSiO4和CO2之间反应的伪Ellingham图显示出与Li4SiO4和CO2之间类似的行为,尤其是在10(-2)和10(-1)巴的P(CO2)之间。采用Jander模型的等温TG动力学分析表明,Li3NaSiO4的CO2吸收反应速率高于Li4SiO4。Li3NaSiO4吸收CO2的速率决定步骤是在检测温度和P(CO2)下的扩散过程,这不同于低P(CO2)下Li4SiO4和CO2之间反应的速率决定步骤。

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