Benzene and C9 and more than that arene transalkylation method
A technology of aromatic hydrocarbon alkylation and transfer method, which is applied in chemical instruments and methods, hydrogenation to hydrocarbons, hydrocarbons, etc., can solve the problem of catalyst stability without zeolite metal modification, inability to effectively utilize heavy aromatic hydrocarbons, and unfavorable aromatic hydrocarbons. Combined device and other problems, to achieve the effect of easy industrialization, convenient operation and simple equipment
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Embodiment 4
[0025] Commercially available sodium Y zeolite (SiO 2 / Al 2 o 3 =4), carry out ion exchange, kneading, molding, roasting by the method for embodiment (1~3), make catalyst A4, the metal molybdenum content of catalyst A4 is 4.0% by weight. [Examples 5-7]
Embodiment 5~7
[0026] Sodium-type MCM-22 zeolite, sodium-type MCM-49 zeolite and sodium-type MCM-56 zeolite were prepared according to USP4956514, USP5264643 and USP5453554 respectively. Three kinds of sodium zeolites are ion-exchanged with ammonium chloride or ammonium nitrate aqueous solution at 90-98°C for 1-8 hours respectively, the mother liquor is filtered off, ion exchange is repeated several times, then washed, and dried at 110°C to obtain ammonium-type zeolites. SiO of three ammonium type zeolites 2 / Al 2 o 3 30, 138 and 18 respectively. Three ammonium-type zeolites were combined with pseudoboehmite (α-Al 2 o 3 ·H 2 O) mixing, adding dilute nitric acid, ammonium molybdate and water, kneading evenly, extruding, drying at 110°C, pelletizing, and roasting at 550°C to obtain catalysts A5, A6, and A7, and the molybdenum content of the three kinds of catalysts is 4.0% by weight . [Embodiments 8-13]
Embodiment 8~13
[0027] Prepare SiO according to USP3308069 2 / Al 2 o 3 Four kinds of β zeolites with 25.7, 35.1, 40.2 and 44.0, respectively, were exchanged with ammonium, dried, and commercially available pseudoboehmite (α-Al 2 o 3 ·H 2 O) Mix according to 50 / 50 (weight ratio), add dilute nitric acid and water, knead evenly, extrude, dry at 110°C, pelletize, and roast at 400°C to obtain cylindrical objects. The cylinder was soaked in ammonium molybdate aqueous solution overnight, then dried at 110°C, and then calcined at 540°C to obtain catalysts B1, B2, B3, and B4 containing 4.0% by weight of metal molybdenum. Catalysts B5 and B6 with the weight ratios of Hβ zeolite and commercially available pseudo-boehmite being 70 / 30 and 30 / 70 were obtained in the same manner. [Examples 14-16]
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