The oxidative dehydrogenation of ethane was investigated on LaOF and B
aF2-LaOF catalysts. It was found that BaF2-LaOF was more effective tha
n LaOF for the catalytic conversion of ethane to ethylene. A selectivi
ty of 74% for ethylene was obtained at 55% ethane conversion over 8 mo
l-%BaF2-LaOF compared with a selectivity of 58.5% for ethylene at 44.6
% ethane conversion over LaOF under the same conditions: reaction temp
erature 660 degrees C, C2H6:O-2 = 67.7:32.3 and a feed gas flow-rate o
f 90 ml/min. It was also found that part of the ethylene in the produc
ts was produced by the thermal cracking of ethane. X-ray diffraction r
esults showed that, when the molar percentage of BaF2 in BaF2-LaOF was
less than 18%, only tetragonal LaOF was observed, and when the molar
percent of BaF2 in BaF2-LaOF increased from 18% to 50%, tetragonal LaO
F and lattice-contracted BaF2 were observed.