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Comparison of dinitrogen, methane, carbon monoxide, and carbon dioxide mass-transport dynamics in carbon and zeolite molecular sieves

机译:碳和沸石分子筛中二氮,甲烷,一氧化碳和二氧化碳传质动力学的比较

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Equilibrium (based on Henry constants) and kinetic (based on relaxation-time constants or rather macropore transport diffusivities) selectivities for commercial zeolite and carbon-molecular-sieve (CMS) adsorbents were compared. Adsorption isotherms were recorded at -20°. The frequency-response (FR) sorption-rate spectra were determined in the range of -78 and 70° at 133 Pa. In particles of a larger size than 1.0 mm, macropore diffusion governed the rate of sorption mass transport in both types of microporous materials. The differences in the intercrystalline diffusivities established the kinetic separation of the gases notwithstanding the essential importance of interactions in the micropores. Zeolites seem to be more advantageous for a dynamic separation of CO_2 and CH4 than CMS 4A. With the CO2 and CO pair, the CMS is characterized by short characteristic times which, together with a good separation factor, is a double advantage in a short-cycle adsorption technology. Upon comminution of the carbon pellets, intercrystalline-diffusion resistance can be completely removed by using CMS 4A adsorbent particles with a diameter smaller than 1 mm. The carbonization of spruce-wood cubes resulted in an excellent carbon honeycomb structure, which seems to be ideal from a dynamic point of view for applications in short-cycle adsorption-separation technologies. In the development of adsorbents, the use of the FR method can be beneficial.
机译:比较了商用沸石和碳分子筛(CMS)吸附剂的平衡(基于亨利常数)和动力学(基于弛豫时间常数或大孔传输扩散率)的选择性。在-20°记录吸附等温线。频率响应(FR)吸附速率谱在133 Pa下在-78和70°范围内测定。在尺寸大于1.0 mm的颗粒中,大孔扩散决定了两种类型的微孔中吸附质量的传输速率材料。尽管在微孔中相互作用至关重要,但晶间扩散率的差异建立了气体的动力学分离。沸石似乎比CMS 4A更有利于动态分离CO_2和CH4。对于CO2和CO对,CMS的特点是特征时间短,再加上良好的分离系数,是短周期吸附技术的双重优势。粉碎碳粒后,通过使用直径小于1 mm的CMS 4A吸附剂颗粒,可完全消除抗晶间扩散性。云杉木立方体的碳化产生了出色的碳蜂窝结构,从动态角度来看,这似乎是短周期吸附分离技术中应用的理想选择。在开发吸附剂时,使用FR方法可能是有益的。

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