Adsorption dynamics and effects of carbon to zeolite ratio of layered beds for multicomponent gas adsorption

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초록

To optimize the performance of an adsorption bed, layered beds of activated carbon and zeolite 5A are used for multicomponent gas separation (H-2: 72.2%, CO2: 21.6%, CO: 2.03%, CH4: 4.17%). The adsorption dynamic characteristics were studied experimentally and theoretically using layered beds of activated carbon and zeolite 5A at 8 atm adsorption pressure and 16.67 L/min feed rate. Non-isothermal and non-adiabatic models, based on a linear driving force model and Dual-Site Langmuir adsorption isotherm model, were used. As the carbon ratio increased, the average velocity of CH4 wavefront became slow, and wavefronts of CO and CO2 propagated quickly on average.

키워드

Adsorption DynamicLayered BedCarbon to Zeolite RatioHydrogenDual-Site LangmuirPRESSURE SWING ADSORPTIONOPTIMAL-DESIGNSEPARATIONMIXTURESPSA
제목
Adsorption dynamics and effects of carbon to zeolite ratio of layered beds for multicomponent gas adsorption
저자
Jang, Seong-CheolYang, Se-IlOh, Seong-GeunChoi, Dae-Ki
DOI
10.1007/s11814-010-0399-9
발행일
2011-02
유형
Article
저널명
Korean Journal of Chemical Engineering
28
2
페이지
583 ~ 590