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Selective oxidation of propane to acrylic acid over mixed metal oxide catalysts

机译:在混合金属氧化物催化剂上将丙烷选择性氧化为丙烯酸

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摘要

MoVTeNbO 的催化表演上的原子比率,水内容,氧内容,和锻烧温度混合了的金属的效果为到丙烯酸的酸的丙烷的选择氧化的氧化物催化剂系统被调查了并且讨论。在学习的催化剂之中,在 600 ° C 的温度锻烧的 MoVTeNbO 催化剂在氮的气氛下面为丙烯酸的酸以丙烷变换和选择显示出最好的表演,这被发现。为丙烷的有效 MoVTeNbO 氧化物催化剂到丙烯酸的酸的选择氧化与比较喜欢的金属的联合被获得原子比率(瞬间 1 V 0.31 Te 0.23 Nb 0.12) 。为丙烷的选择氧化的最佳反应条件是 C 3 H 8:O2 :H 2 O:N 2= 4.4:12.8:15.3:36.9。在如此的条件下面,丙烷的变换和丙烯酸的酸的最大的收益分别地到达了大约 50% 和 21% 。
机译:The effects of metal atomic ratio, water content, oxygen content, and calcination temperature on the catalytic perfor-mances of MoVTeNbO mixed oxide catalyst system for the selective oxidation of propane to acrylic acid have been investigated and discussed. Among the catalysts studied, it was found that the MoVTeNbO catalyst calcined at a temperature of 600 ℃ showed the best performance in terms of propane conversion and selectivity for acrylic acid under an atmosphere of nitrogen. An effective MoVTeNbO oxide catalyst for propane selective oxidation to acrylic acid was obtained with a combination of a preferred metal atomic ratio (Mo1 V0.31Te0.23Nb0.12). The optimum reaction condition for the selective oxidation of propane was the molar ratio of C3H81 :O2 : H2O : N1 = 4.4 : 12.8 : 15.3 : 36.9. Under such conditions, the conversion of propane and the maximum yield of acrylic acid reached about 50% and 21%, respectively.

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