A kind of preparation method of hydrocracking catalyst containing y molecular sieve
A hydrocracking and molecular sieve technology, applied in molecular sieve catalysts, physical/chemical process catalysts, chemical instruments and methods, etc., can solve the problem of increased secondary cracking during the heating process, poor temperature sensitivity of hydrocracking catalysts, and secondary cracking Increase and other issues, to achieve the effect of improving the sensitivity of temperature increase, improving the liquid collection of the device and chemical hydrogen consumption, and increasing the acid center
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Embodiment 1
[0034] Molecular sieve modification process:
[0035] (1) Take 200g of NaY molecular sieve raw powder prepared in the laboratory, mix it with ammonium nitrate with a concentration of 0.5mol / L according to the liquid-solid ratio of 3:1, exchange at 70°C for 3 hours, repeat this process 3 times, and the exchanged Y molecular sieve Na content in Na 2 O is calculated as 2.5%;
[0036] (2) Hydrothermally treat the Y molecular sieve obtained in step (1) at 570°C and 0.1MPa for 2 hours;
[0037] (3) The molecular sieve obtained in step (2) is prepared according to a liquid-solid ratio of 10:1 and a hydrochloric acid solution with a concentration of 0.6mol / L (the concentration is expressed as H + meter) and mixed at 80°C for 2 hours at a constant temperature;
[0038] (4) The molecular sieve obtained in step (3) was dried at 150°C for 4 hours;
[0039] (5) Take the molecular sieve obtained in step (4) and place it in a closed container filled with butadiene atmosphere, control the...
Embodiment 2
[0049] Molecular sieve modification process:
[0050] (1) Take the NaY molecular sieve raw powder prepared in the laboratory, mix it with ammonium nitrate with a concentration of 0.8mol / L according to the liquid-solid ratio of 3:1, exchange at 70°C for 3 hours, repeat this process 3 times, and the Y molecular sieve after exchange Na content in Na 2 O is calculated as 2.0%.
[0051] (2) Hydrothermally treat the Y molecular sieve obtained in step (1) at 600°C and 0.1MPa for 3 hours;
[0052] (3) The molecular sieve obtained in step (2) is mixed with H at a liquid-solid ratio of 7:1 + A mixed solution of hydrochloric acid with a concentration of 1.0mol / L was mixed and treated at 95°C for 2 hours;
[0053] (4) The molecular sieve obtained in step (3) was dried at 250°C for 2 hours;
[0054] (5) soak the molecular sieve obtained in step (4) in heptene for 4 hours, and then heat at 200°C for 20 hours in an air atmosphere;
[0055] (6) The molecular sieve treated in step (5) is ...
Embodiment 3
[0064] Molecular sieve modification process:
[0065] (1) Take the NaY molecular sieve raw powder prepared in the laboratory, mix it with ammonium nitrate with a concentration of 0.6mol / L according to the liquid-solid ratio of 3:1, exchange at 80°C for 2 hours, repeat this process 3 times, and the Y molecular sieve after exchange Na content in Na 2 O is calculated as 2.3%.
[0066] (2) Hydrothermally treat the Y molecular sieve obtained in step (1) at 590°C and 0.1MPa for 2 hours;
[0067] (3) The molecular sieve obtained in step (2) is mixed with H at a liquid-solid ratio of 5:1 + A mixed solution of hydrochloric acid with a concentration of 1.2mol / L was mixed and treated at 80°C for 2 hours;
[0068] (4) The molecular sieve obtained in step (3) was dried at 150°C for 6 hours;
[0069] (5) Soak the molecular sieve obtained in step (4) in hexadiene for 3 hours, and then heat at 180°C for 30 hours in an air atmosphere;
[0070] (6) The molecular sieve treated in step (5) i...
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