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机构地区:[1]华东理工大学工业催化研究所
出 处:《燃料化学学报》1997年第6期533-538,共6页Journal of Fuel Chemistry and Technology
基 金:国家教委博士点基金
摘 要:利用色谱微反联用技术对负载钯催化剂上甲醇、甲醛的深度氧化进行了较全面的研究。结果表明:Pd/Al2O3催化剂对甲醇氧化具有很高的转化效率和一定的深度氧化活性。以(NH4)2PdCl4为浸渍液、还原气氛下焙烧所得的0.1%Pd/γAl2O3性能最好,当进气O2/CH3OH比为6、并无CO存在时,其T50、T95分别为90℃、200℃,生成甲醛的最高转化率为17%左右。另外,反应原料气组分如O2、CO等也将严重影响Pd/γAl2O3对甲醇氧化的活性及选择性。The deep oxidation of methanol on aluminasupported palladium catalyst at low temperature has been investigated in a laboratory reactor The results are as follows: Pd/γAl 2O 3 catalysts have very high methanol oxidation activity and fairly good deep oxidation selectivity, in which, the 0 1% Pd/γAl 2O 3 prepared by impregnating (NH 4) 2PdCl 4 precursor solution into the gamma alumina powder and calcined in reducing gas has the highest activity, and its T 50 ,T 95 is 90℃, 200℃ respectively in the absence of CO The yields of partial oxidation products such as formaldehyde, methyl formate are not high In addition, the components of feed gas such as O 2, CO have strong influence on the activity and selectivity of methanol oxidation over Pd/γAl 2O 3 catalyst
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