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Thermodynamics and kinetics of CO2 adsorption on dehydrated palladium/cobalt-based cyanogels: A highly selective, fully reversible system for CO2 storage

机译:脱水钯/钴基氰基凝胶上二氧化碳吸附的热力学和动力学:一种高度选择性,完全可逆的二氧化碳储存系统

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摘要

Carbon dioxide is selectively adsorbed on cyanide-bridged palladium/cobalt gels, synthesized from aqueous solutions of Na2PdCl4 and K-3[Co(CN)(6)]. The cyanide bridges, connecting the palladium and cobalt metal centers, are characteristic of these gels; hence, these gels are termed cyanogels. The thermodynamics and kinetics of the CO2 adsorption and desorption processes on aerogels and xerogels formed from Pd/Co cyanogels are analyzed here. Aerogel versus xerogel structures have a profound effect on the thermodynamics and kinetics of CO2 adsorption. The CO2 adsorption process is fully reversible on both types of gels discussed. The gas adsorption capacity of the aerogel exceeds that of the xerogel by a factor of slightly over two. From the ease and reproducibility of the CO2 desorption and the associated enthalpy values, it is concluded that CO2 is physisorbed on these gels. The kinetics of adsorption and desorption are analyzed: both processes are first-order in the gels. [References: 15]
机译:二氧化碳选择性地吸附在由Na2PdCl4和K-3 [Co(CN)(6)]水溶液合成的氰化物桥接的钯/钴凝胶上。这些凝胶的特征是连接钯和钴金属中心的氰化物桥。因此,这些凝胶被称为氰基凝胶。本文分析了由Pd / Co氰基凝胶形成的气凝胶和干凝胶上的CO2吸附和解吸过程的热力学和动力学。气凝胶与干凝胶的结构对CO2吸附的热力学和动力学具有深远的影响。在讨论的两种类型的凝胶上,CO2吸附过程是完全可逆的。气凝胶的气体吸附能力比干凝胶的气体吸附能力高两倍。从CO 2解吸的容易性和可再现性以及相关的焓值可以得出结论,CO 2被物理吸附在这些凝胶上。分析了吸附和解吸的动力学:这两个过程都是凝胶中的一级反应。 [参考:15]

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