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Experimental Analysis on Effects of Cycling Operation of Methane Adsorption and Desorption on Monolithic Activated Carbon

机译:甲烷吸附和解吸对单片活性炭循环作用效果的实验分析

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Adsorbed natural gas (ANG) provides a method of storing gas as one of the important resources of energy on suitable adsorbents at moderate pressures and ambient temperature. In this research study, an ANG system as a potential alternative to compressed natural gas (CNG) has been applied to store methane as one of the important component of natural gas on monolithic activated carbon. The present experimental study provides an experimental investigation of adsorption and desorption cycles of natural gas in a prototype storage vessel filled with monolithic activated carbon and the effect of the gas cycling on the adsorption and desorption capacity has been discussed. Many studies are devoted to the characterization of suitable adsorbent materials to optimize the methane storage capacity. Nevertheless, in this study the deterioration of the storage performance is observed after successive operating cycles of the ANG system. In the present study, the changes of the methane capacity of a 10 cycling operations is experimentally measured.
机译:吸附的天然气(Ang)提供了一种将气体作为适当压力和环境温度的合适吸附剂上的能量的重要资源之一的方法。在该研究中,将Ang系统作为压缩天然气(CNG)的潜在替代物施加,以将甲烷作为单片活性炭上的天然气的重要组成部分之一。本实验研究提供了填充单片活性炭的原型储存容器中天然气的吸附和解吸循环的实验研究,并讨论了气体循环对吸附和解吸能力的影响。许多研究致力于合适的吸附材料表征以优化甲烷储存能力。然而,在该研究中,在Ang系统的连续操作周期之后观察到存储性能的劣化。在本研究中,通过实验测量10个循环操作的甲烷容量的变化。

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