Desulfurization of commercial jet fuels by adsorption via π-complexation with vapor phase ion exchanged Cu(I)-Y zeolites

被引:48
作者
Hernandez-Maldonado, AJ
Yang, RT [1 ]
Cannella, W
机构
[1] Univ Michigan, Dept Chem Engn, Ann Arbor, MI 48109 USA
[2] ChevronTexaco Energy Res & Technol Co, Richmond, CA 94802 USA
关键词
D O I
10.1021/ie049533x
中图分类号
TQ [化学工业];
学科分类号
0817 ;
摘要
Desulfurization of a commercial jet fuel by vapor phase ion exchange (VPIE) Cu(I)-Y adsorbents were studied in a fixed-bed adsorber operated at ambient temperature and pressure. When used with an activated alumina guard bed, Cu(l)-Y(VPIE) provides by far the best adsorption capacities. In general, the adsorbents tested for total sulfur adsorption capacity at breakthrough follow the order Selexsorb CDX < Cu(I)-Y(VPIE) < Selexsorb CDX/Cu(I)-Y(VPIE). The best adsorbent, Selexsorb CDX/Cu(I)-Y(VPIE) (layered bed of 25 wt% activated alumina followed by Cu(l)-Y), is capable of producing 38 cm(3) of jet fuel per gram of adsorbent with a weighted average content of 0.071 ppmw-S. The sorbent is also capable of producing about 50 cm3 of jet fuel with a sulfur content of less than 1 ppmw-S. These low-sulfur fuels are suitable for fuel cell applications. Regeneration tests have shown the sorbent capacity can be fully recovered using calcination/reduction methods. Gas chromatography-flame photometric detection results show that the :pi-complexation sorbents selectively adsorb highly substituted benzothiophenes from jet fuel, which is not possible by using conventional hydrodesulfurization reactors. The high sulfur selectivity and high sulfur capacity of Cu(I)-Y(VPIE) were due to pi-complexation.
引用
收藏
页码:6142 / 6149
页数:8
相关论文
共 47 条
[1]  
[Anonymous], [No title captured]
[2]  
Avidan A, 2001, HYDROCARB PROCESS, V80, P47
[3]   Science and technology of novel processes for deep desulfurization of oil refinery streams: A review [J].
Babich, IV ;
Moulijn, JA .
FUEL, 2003, 82 (06) :607-631
[4]   Evolution of sulfur compounds and hydrocarbons classes in diesel fuels during hydrodesulfurization.: Combined use of thin-layer chromatography and GC-sulfur-selective chemiluminescence detection [J].
Bacaud, R ;
Cebolla, VL ;
Membrado, L ;
Matt, M ;
Pessayre, S ;
Gálvez, EM .
INDUSTRIAL & ENGINEERING CHEMISTRY RESEARCH, 2002, 41 (24) :6005-6014
[5]  
Baes C.F., 1976, HYDROLYSIS CATIONS
[6]   Investigation of copper carbonyl species formed upon CO adsorption on copper-exchanged zeolites by diffuse reflectance FTIR [J].
Borovkov, VY ;
Jiang, M ;
Fu, YL .
JOURNAL OF PHYSICAL CHEMISTRY B, 1999, 103 (24) :5010-5019
[7]  
Breck D. W., 1973, ZEOLITE MOL SIEVES
[8]   DYNAMIC BEHAVIOR OF LAYERED COLUMNS IN PRESSURE SWING ADSORPTION [J].
CHLENDI, M ;
TONDEUR, D .
GAS SEPARATION & PURIFICATION, 1995, 9 (04) :231-242
[9]  
Gates BC, 1979, Chemistry of Catalytic Processes
[10]   The conversion of 1-propanamine on copper-containing MFI and BEA zeolites prepared by aqueous and vapor ion-exchange [J].
Guidry, TF ;
Price, GL .
JOURNAL OF CATALYSIS, 1999, 181 (01) :16-27