PERFORMANCE OF AN INTERNALLY CIRCULATING FLUIDIZED-BED REACTOR FOR THE CATALYTIC OXIDATIVE COUPLING OF METHANE

Citation
L. Mleczko et Kj. Marschall, PERFORMANCE OF AN INTERNALLY CIRCULATING FLUIDIZED-BED REACTOR FOR THE CATALYTIC OXIDATIVE COUPLING OF METHANE, Canadian journal of chemical engineering, 75(3), 1997, pp. 610-619
Citations number
32
Categorie Soggetti
Engineering, Chemical
ISSN journal
00084034
Volume
75
Issue
3
Year of publication
1997
Pages
610 - 619
Database
ISI
SICI code
0008-4034(1997)75:3<610:POAICF>2.0.ZU;2-Z
Abstract
The oxidative coupling of methane to C-2-hydrocarbons (OCM) over a La2 O3/CaO catalyst (27 at.%) was investigated in an internally circulatin g fluidized-bed (ICFB) reactor (IDeff = 1.9 cm, H-riser = 20.5 cm). Th e experiments were performed in the following range of conditions: T = 800-900 degrees C, p(CH4):p(O2):p(N2) = 57.1-64:16-22.9:20 kPa. The o btained C-2 selectivities and C-2 yields were compared with the corres ponding data from a spouted-fluid-bed reactor (ID = 5 cm) and a bubbli ng fluidized-bed (F1B) reactor (ID = 5 cm). The maximum C-2 yield in t he internally circulating fluidized-bed (ICFB) reactor amounted to 12. 2% (T 860 degrees C, 38.7% C-2 selectivity, 31.5% methane conversion), whereas in the FIB reactor a maximum C-2 yield of 13.8% (T= 840 degre es C, 40.4% C-2 selectivity, 34.2% methane conversion) was obtained. T he lowest C-2 yield was achieved in the spouted-bed (SFB) reactor (Y-C 2 = 11.6%, T= 840 degrees C, 36.2% C-2 selectivity, 32.0% methane conv ersion). The highest space-time yield of 24.0 mol/kg(cat).h was obtain ed in the ICFB reactor, whereas in a F1B reactor only a space-time yie ld of 9.6 mol/kg(cat).h could be obtained. The performance of the ICFB reactor was strongly influenced by gas-phase reactions. Furthermore, stable reactor operation was possible only over a narrow range of gas velocities.