Hydrated alumina composition and shaped body containing beta molecular sieve, preparation method and application, catalyst and preparation method
A technology of hydrated alumina and molding methods, which is applied in the direction of molecular sieve catalysts, chemical instruments and methods, physical/chemical process catalysts, etc., can solve problems such as transfer difficulties, secondary dust pollution, molding interference, etc., to simplify the process flow and reduce Operational energy consumption and effects of avoiding dust pollution
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[0104] According to the preparation method of the hydrated alumina composition of the present invention, the raw material mixture contains hydrated alumina wet gel, BETA molecular sieve and a compound having at least two proton acceptor sites. The compound with at least two proton acceptor sites and the BETA molecular sieve have been described in detail above, and will not be repeated here.
[0105] The hydrated alumina wet gel can be synthesized by conventional methods, such as one or more of precipitation method (including acid method and alkali method), hydrolysis method, seed separation method and rapid dehydration method. Generally, it is obtained by optionally aging the hydrated alumina gel solution, followed by washing and solid-liquid separation.
[0106] The precipitation method includes acid method and alkali method. The acid method is to carry out precipitation reaction of aluminum salt with basic compound. The alkali method is to carry out precipitation reaction ...
Embodiment 1
[0242] The alumina hydrate wet gel used in this example is a quasi-alumina hydrogel solution prepared by the acid method (sodium metaaluminate-aluminum sulfate method, obtained from Sinopec Changling Branch) after washing and filtering. The wet filter cake of boehmite (the wet filter cake is coded as SLB-1), after measurement, the i value of the wet filter cake is 78.2%.
[0243] (1) Add 5.07kg BETA molecular sieves (purchased from Sinopec Catalyst Changling Branch Company, the silicon-aluminum mol ratio is 30, the dry basis is 0.81, and the sodium oxide content is less than 0.05% by weight) in 50kg wet filter cake SLB-1, then Add 10kg of water and mix for beating for 5 minutes, then filter the slurry with a belt filter to obtain wet filter cake SLBY-1. The i value of the wet filter cake SLBY-1 was determined to be 79.7%. After the wet filter cake SLBY-1 was roasted at 600°C for 3 hours, it was determined that the weight ratio of alumina to BETA molecular sieve was 65:35.
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Embodiment 2
[0253] (1) Mix 5 kg of wet filter cake numbered SLBY-1 with 500 g of deionized water for beating for 1 minute, then send the resulting slurry into a plate and frame filter press, adjust the pressure of the plate and frame to 0.7 MPa and maintain After 15 minutes, a wet filter cake (coded as LBY-1) was obtained. It has been determined that the i value of the wet filter cake numbered LBY-1 is 67%.
[0254] (2) 300g of wet filter cake numbered LBY-1 was placed in a beaker, and 3.7g of hydroxyethyl methylcellulose (purchased from Shanghai Huiguang Fine Chemical Co., Ltd., the same below) and 1.9g of scallop powder ( The content of galactomannan is 85% by weight (purchased from Beijing Chemical Reagent Company). After stirring for 10 minutes with a mechanical stirrer, the hydrated alumina composition of the present invention is obtained, and its properties are listed in Table 1.
[0255] (3) Extrude the hydrated alumina composition prepared in step (2) on an F-26 twin-screw extrud...
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