V-P-Si composite oxide catalyst precursor used for producing maleic anhydride from butance
The present invention provides a catalyst precursor for producing maleic anhydride by oxidizing butane. Said catalyst precursor is prepared by a process comprising partially reducing V +5 to V +4 in a mixture of alcohols consisting of isobutanol and benzyl alcohol in a volume ratio of 2.5-5.0, then adding a phosphoric oxy-acid and an alkylsilicon in turn. The catalyst precursor prepared according to said process has a small pore volume, a relatively high bulk density in an appropriate pore size distribution.
1. A VPSi composite oxide catalyst precursor for preparing a catalyst for the production of maleic anhydride, characterized in that said catalyst precursor has a pore size distribution of: more than 90% pores having a pore size of greater than 100 Å, less than 10% pores having a pore size of smaller than 100 Å, and having a pore volume of 0.01-0.10 ml/g.
2. The catalyst precursor according to claim 1 , characterized in that the bulk density is 0.80-1.00 g/cm3.
3. The catalyst precursor according to claim 1 , characterized in that the molar ratio of V:P:Si is 0.77-1.1:1:0.1-1.
4. A process for preparing a catalyst precursor according to claim 1 , characterized in that said process comprises the following steps:
a) adding a pentavalent vanadium compound to a mixture of alcohols, heating and refluxing for 0.5-2 hours;
b) adding a phosphorus oxy acid to the product formed in step (1) at a rate of 1.0-10 g/min under reflux heating condition;
c) adding an alkylsilicon to the product formed in step (2) at a rate of 0.5-5 g/min under reflux heating condition, and continuously heating and refluxing for 6-12 hours;
d) cooling, filtering, washing the filter cake with an organic solvent, and drying to obtain the catalyst precursor.
5. The process according to claim 4 , characterized in that the steps (2) and (3) are carried out in twice.
6. The process according to claim 4 , characterized in that the phosphorus oxy acid is added dropwise after the reduction reaction between the pentavalent vanadium compound and the mixture of alcohols is completed.
7. The process according to claim 4 , characterized in that the mixture of alcohols is a mixture of isobutanol and benzyl alcohol in a volume ratio of 2.5-5.0.
8. The process according to claim 4 , characterized in that the rate of adding the phosphorus oxy acid is 1-9 g/min.
9. The process according to claim 8 , characterized in that the rate of adding the phosphorus oxy acid is 3-8 g/min.
10. The process according to claim 4 , characterized in that the phosphorus oxy acid is phosphoric acid.
11. The process according to claim 10 , characterized in that the phosphoric acid is 85 wt % phosphoric acid.
12. The process according to claim 4 , characterized in that the rate of adding alkylsilicon is 1.0-5.0 g/min.
13. The process according to claim 12 , characterized in that the rate of adding alkylsilicon is 1.0-4.5 g/min.
14. The process according to claim 4 , characterized in that the alkylsilicon is tetramethoxysilicane or tetraethoxysilicane.
15. A method for producing maleic anhydride comprising the steps of mixing butane and the catalyst precursor of claim 1 to catalytically oxidize the butane and obtain maleic anhydride.
16. The catalyst precursor according to claim 1 , characterized in that the pore volume is from 0.02-0.06 ml/g.
17. The catalyst precursor according to claim 16 , characterized in that the bulk density is 0.80-1.00 g/cm3.