Alkyltransfering catalyst for increasing yield C8 aromatic hydrocarbons
A technology of transalkylation and C8 aromatics, which is applied in molecular sieve catalysts, physical/chemical process catalysts, hydrocarbons, etc., can solve the problems of easy coking and deactivation of catalysts, low product yields, etc., and achieve high and good yields. Technical effect, effect that is not easy to be deactivated
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Embodiment 1
[0026] use Na 2 O content less than 0.15% (weight), SiO 2 / Al 2 o 3 66.7 grams of ammonium mordenite powder with a molecular ratio of 21.5 and Na 2 α-Al with an O content of less than 0.15% by weight 2 o 3 ·H 2 O 57.1 grams were evenly mixed, and then impregnated with chloroplatinic acid as an aqueous solution. Add the dilute nitric acid solution of lead nitrate and cerium nitrate to the impregnated powder, knead fully and evenly, extrude and roast to make catalyst A.
Embodiment 2
[0028] use Na 2 O content less than 0.15% (weight), SiO 2 / Al 2 o 3 66.7 grams of ammonium mordenite powder with a molecular ratio of 25.9 and Na 2 α-Al with an O content of less than 0.15% by weight 2 o 3 ·H 2 O 57.1 grams were uniformly mixed, then a certain amount of dilute nitric acid solution, zirconium oxychloride and stannous chloride were added, fully kneaded, extruded, roasted, then impregnated with chloroplatinic acid solution, roasted to make catalyst B.
Embodiment 3
[0030] Use a certain concentration of tetraammonium platinum chloride or tetraammonium platinum nitrate solution 2 O content less than 0.15% (weight), SiO 2 / Al 2 o 3 Ammonium mordenite with a molecular ratio of 18.9 was exchanged, and after drying, 66.7 grams of dry powder was weighed with Na 2α-Al with an O content of less than 0.15% by weight 2 o 3 ·H 2 O 57.1 grams were uniformly mixed, then a certain amount of dilute nitric acid solution, lead nitrate solution and lanthanum nitrate were added, fully kneaded, extruded and roasted to make catalyst C.
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