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Static and dynamic hydrogen adsorption on Pt/AC and MOF-5

机译:静态和动态氢在Pt / AC和MOF-5上的吸附

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Hydrogen adsorption has been studied by static and dynamic methods on activated carbon (AC), platinum/activated carbon (Pt/AC), metal organic frameworks (MOF-5), and Pt/AC_MOF-5.The static method showed that all of adsorbents used in this study exhibited a Langmuir (type I) adsorption isotherm at 77 K and a linear function of hydrogen partial pressure at 298 K. The dynamic method produced breakthrough curves, indicating (i) slow rate of hydrogen diffusion in the densely packed activated carbon and Pt/AC beds and (ii) high rate of hydrogen diffusion in the loosely packed bed with large MOF-5 crystallites. Temperature variable adsorption resulted in the higher hydrogen uptake on Pt/AC than other adsorbents. The results suggested that temperature variable adsorption enhanced the hydrogen storage process by (i) initiating hydrogen dissociation at high temperature and (ii) facilitating spillover at low temperature on Pt/AC.
机译:通过静态和动态方法研究了活性炭(AC),铂/活性炭(Pt / AC),金属有机骨架(MOF-5)和Pt / AC_MOF-5上的氢吸附。静态方法表明所有本研究中使用的吸附剂在77 K时表现出Langmuir(I型)吸附等温线,在298 K时表现出氢分压的线性函数。动力学方法产生了突破曲线,表明(i)在密集填充的活化剂中氢扩散速度缓慢碳和Pt / AC床,以及(ii)具有大量MOF-5晶体的松散填充床中的氢扩散速率高。温度可变吸附导致Pt / AC上的氢吸收量高于其他吸附剂。结果表明,温度可变吸附通过(i)在高温下引发氢解离和(ii)促进低温下在Pt / AC上的溢出而增强了氢的存储过程。

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