Efficient Cycle Recovery of Hydrogen from a Low Concentration Pyrolysis Gas Stream by Pressure Swing Adsorption - An Experimental Evaluation

被引:1
作者
Teiseh, Eliasu [1 ]
Capareda, Sergio [1 ]
机构
[1] Texas A&M Univ, College Stn, TX 77843 USA
关键词
breakthrough curves; cycle bed productivity; cycle mass balance; % cycle recovery; low concentration; pressure swing adsorption; pyrolysis; ACTIVATED CARBON; SEPARATION; EQUILIBRIUM; MIXTURES; MODEL; CO;
D O I
10.1080/01496395.2012.655834
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Breakthrough curves, cycle mass balances, and cycle bed productivities (mg H-2 per gram of adsorbent) on three dual adsorbent amounts (g) of 2,892, 1,963, and 1,013 respectively each filling 200 cm, 135 cm, and 70 cm of a 5.0 cm internal diameter stainless steel pipe were performed. The approximate optimum (sludge pyrolysis) synthesis gas with composition in volume % of 45% H-2/35% CO/20% CH4 was used as the feed gas with molecular sieve 5 angstrom and activated carbon as adsorbents. Impurity breakthroughs occurred at similar to 14.9, 12.3, and 5.0 minutes respectively for % cycle recoveries of 72.2, 65.0, and 60.2 using 2,892, 1,962, and 1,013 g of adsorbent respectively. Our results indicated that basing % recycle recovery on cycle bed productivity can enable efficient hydrogen recovery with savings on adsorbent amount. An optimum cycle bed productivity of 2.3 mg H-2/g of adsorbent corresponded to a cycle recovery of 66.2% for 2,300 g of adsorbent used. Only 1.7 mg H-2/g of adsorbent was obtained for a cycle recovery of 72.2% requiring up to 2,800 g of adsorbent. This makes economic sense in the pressure swing adsorption separation of hydrogen from traditionally low hydrogen concentration biomass sources.
引用
收藏
页码:1522 / 1530
页数:9
相关论文
共 20 条
[1]  
Douglas M., 1994, PRESSURE SWING ADSOR
[2]   SEPARATION OF METHANE-NITROGEN MIXTURES BY PRESSURE SWING ADSORPTION USING A CARBON MOLECULAR-SIEVE [J].
FATEHI, AI ;
LOUGHLIN, KF ;
HASSAN, MM .
GAS SEPARATION & PURIFICATION, 1995, 9 (03) :199-204
[3]  
Iyuke SE, 2000, J CHEM TECHNOL BIOT, V75, P803, DOI 10.1002/1097-4660(200009)75:9<803::AID-JCTB283>3.0.CO
[4]  
2-G
[5]   Ternary adsorption equilibrium of H2/CH4/C2H4 onto activated carbon [J].
Jeong, Byung-Man ;
Ahn, Eui-Sub ;
Yun, Jeong-Ho ;
Lee, Chang-Ha ;
Choi, Dae-Ki .
SEPARATION AND PURIFICATION TECHNOLOGY, 2007, 55 (03) :335-342
[6]   The application of water-soluble ruthenium catalysts for the hydrogenation of the dichloromethane soluble fraction of fast pyrolysis oil and related model compounds in a two phase aqueous-organic system [J].
Mahfud, F. H. ;
Bussemaker, S. ;
Kooi, B. J. ;
Ten Brink, G. H. ;
Heeres, H. J. .
JOURNAL OF MOLECULAR CATALYSIS A-CHEMICAL, 2007, 277 (1-2) :127-136
[7]   Improved purge step in pressure swing adsorption for CO purification [J].
Miyajima, H ;
Kodama, A ;
Goto, M ;
Hirose, T .
ADSORPTION-JOURNAL OF THE INTERNATIONAL ADSORPTION SOCIETY, 2005, 11 (Suppl 1) :625-630
[8]   Equilibrium isotherms of CH4, C2H6, C2H4, N2, and N2 on zeolite 5A using a static volumetric method [J].
Nam, GM ;
Jeong, BM ;
Kang, SH ;
Lee, BK ;
Choi, DK .
JOURNAL OF CHEMICAL AND ENGINEERING DATA, 2005, 50 (01) :72-76
[9]  
Nikolic D., 17 EUR S COMP AID PR
[10]  
Richards J.A., 1995, J POROUS MAT, V2, P43