Preparation method of catalyst for butylene oxidative dehydrogenation to produce butadiene
An oxidative dehydrogenation and catalyst technology, applied in physical/chemical process catalysts, chemical instruments and methods, organic chemistry, etc., can solve the problems of poor preparation reproducibility and easy loss of components, achieve high selectivity and improve preparation repeatability. performance, the effect of enhancing electron cloud density
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Embodiment 1
[0028] Take 46.0g iron oxide (Fe 2 o 3 ), 20.0g magnesium oxide (MgO), 8.0g zinc oxide (ZnO), 1.6g manganese oxide (MnO 2 ) and 0.8g P 2 o 5 , and then added 3.0 g of glucose, and then mixed in a ball mill for 120 minutes, sifted >200 mesh powder (standard sieve), and calcined at 700 ° C for 6 hours to obtain composite oxide catalyst A.
[0029]
Embodiment 2
[0031] Take 24.0g iron oxide (Fe 2 o 3 ), 8.0g magnesium oxide (MgO), 10.0g zinc oxide (ZnO), 1.0g manganese oxide (MnO 2 ) and 2.0g P 2 o 5 , and then add 3.0g of polyvinyl alcohol, then mix in a ball mill for 30 minutes, sieve >200 mesh powder (standard sieve), and bake at 700°C for 8 hours to obtain composite oxide catalyst B.
[0032]
Embodiment 3
[0034] Take 36.2g iron oxide (Fe 2 o 3 ), 8.0g magnesium oxide (MgO), 11.0g zinc oxide (ZnO), 1.0g manganese oxide (MnO 2 ) and 2.0g P 2 o 5 , and then added 5.0 g of glucose, and then mixed in a ball mill for 60 minutes, screened the >150 mesh part powder (standard sieve), and calcined at 750 ° C for 6 hours to obtain composite oxide catalyst C.
[0035]
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