Selective Separation of Hydrogen from Gas Mixture using LaNi5

LaNi5를 이용한 혼합기체로부터 수소의 선택적 분리

  • Sun, Yang Kook (Department of Chemical Engineering, Seoul National University) ;
  • Nahm, Kee Suk (Department of Chemical Engineering, Seoul National Polytechnic University) ;
  • Lee, Wha Young (Department of Chemical Engineering, Seoul National University)
  • 선양국 (서울대학교 공과대학 화학공학과) ;
  • 남기석 (서울산업대학 화학공학과) ;
  • 이화영 (서울대학교 공과대학 화학공학과)
  • Published : 1989.12.31

Abstract

The selective separation of hydrogen from gas mixture containing hydrogen was experimentally studied using $LaNi_5$. The capacity and the rate of hydrogen separation, the purity of recovered hydrogen and the optimum condition of the regeneration of deactivated $LaNi_5$ were investigated. The separation rate and the recovery ratio of hydrogen were slowly decreased with the increase of the number of hydrogen absorption cycle. It was found that this result comes from the deactivation of $LaNi_5$ partly because of the blocking of hydrocarbon compounds in the $LaNi_5$ lattice and partly because of the poisoning of $LaNi_5$ surface by carbon monoxide contained in the gas mixture. The optimum condition for the regeneration of deactivated $LaNi_5$ was obtained by heating in a vacuum to about 637 K. The recovery ratio of hydrogen at the optimum condition was observed to be about 80%. The rates of hydrogen separation were measured in the ${\alpha}$-phase and two phase regions. The rate equations could be expressed as follows ; ${\alpha}$ - phase : $$-\frac{dP{_{H_2}}}{dt}=9.836{\times}10^{-3}(P{_{H_2}}_{-P_{eq}})$$ two phase region : $$-\frac{dP_{H{_2}}}{dt}=1.6909{\times}10^2\exp(-17560/RT)(P{_{H_2}}_{-P_{eq}})$$.

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