Preparation method and application method of non-noble metal reforming catalyst
A reforming catalyst, non-precious metal technology, applied in molecular sieve catalysts, chemical instruments and methods, physical/chemical process catalysts, etc., can solve the problems of poor adaptability and expensive reforming raw materials, and achieve low cracking and disproportionation activities. Simple and effective in improving catalytic activity
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Embodiment 1
[0028] Ni 2 P / γ-Al 2 o 3 -The preparation method of SAPO-11 catalyst, comprises following process:
[0029] (1) Preparation of composite carrier. Use 49.0g of aluminum hydroxide dry rubber powder, 21.0g of SB powder and 30.0g of SAPO-11, add 2.0g of kale powder and mix evenly, then add 80.5g of deionized water and 4.5g of concentrated nitric acid (65-68m%) After kneading about three times, extrude on the F-26(Ⅲ) twin-screw extruder, the finished product is air-dried, dried at 120°C for 6-12h after molding, and calcined at 550°C for 4h to obtain the composite carrier. (SAPO / γ-Al 2 o 3 =3 / 7, mass ratio), the composite carrier is counted as NS-30.
[0030] (2) Preparation of catalyst precursor. Immerse 22.2g of nickel hypophosphite hexahydrate into 22.5g of deionized water at 60~80°C, carry out constant temperature supersaturated impregnation for 1h, then suction filter, wash with deionized water three times, and dry at 60°C for 24h in vacuum to obtain the catalyst prec...
Embodiment 2
[0033] The preparation process of the catalyst is the same as in Example 1, except that the mass content of the prepared catalyst carrier SAPO-11 molecular sieve is 20%, and the composite carrier is counted as NS-20.
Embodiment 3
[0035] The preparation process of the catalyst is the same as in Example 1, except that the mass content of the prepared catalyst carrier SAPO-11 molecular sieve is 40%, and the composite carrier is NS-40.
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