Molecular sieve production apparatus

A molecular sieve and equipment technology, applied in the field of equipment for preparing molecular sieves, can solve the problems of difficulty in improving, unfavorable harm, device blockage, etc., and achieve the effects of stable product performance, low labor intensity and high production efficiency

Active Publication Date: 2014-05-14
CHINA PETROLEUM & CHEM CORP +1
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

However, this method uses gas to carry the molecular sieve powder material and SiCl 4 The gas phase ultrastable reaction is carried out by means of gas contact reaction. In order to fluidize the molecular sieve, the amount of gas must be large enough. The carrier gas and SiCl 4 The weight ratio can reach 10-250, otherwise it is easy to cause the problem of device blockage, increasing the amount of gas makes it difficult to increase the reaction depth, and there is a contradiction between the solid material transportation and the improvement of the gas phase ultra-stable reaction depth. A certain degree of reaction requires a larger SiCl 4 The amount of input will inevitably cause the residual SiCl after the gas phase ultrastable reaction 4 The increase in the amount of exhaust gas not only aggravates the harm of environmental pollution, but also is not conducive to the effective absorption of exhaust gas.

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preparation example Construction

[0028] In the method for preparing molecular sieves provided by the present invention, the molecular sieves are continuously introduced into the gas-phase ultra-stable reactor, and the molecular sieves are continuously moved from the molecular sieve inlet to the molecular sieve outlet without carrier gas transportation, and are combined with the gas-phase ultra-stable reactor. Silicon tetrachloride gas contact for ultra-stabilized reaction. Simultaneously, silicon tetrachloride was continuously introduced into the reactor.

[0029] In the method for preparing molecular sieves provided by the present invention, silicon tetrachloride can be introduced into the reactor in a liquid phase and then vaporized in the reactor and reacted with the molecular sieve, but in order to make the reaction uniform, it is preferred that silicon tetrachloride is vaporized and then introduced into the gas phase stabilized in the reactor. The molecular sieve and vaporized silicon tetrachloride are ...

Embodiment 1

[0067] Made of industrial grade stainless steel with a thickness of 3mm NiCr18Ti figure 2 In the molecular sieve gas-phase silicon replenishment equipment shown, the upper part of the gas-solid separator 6 is cylindrical with a diameter of 6 meters and a height of 14 meters, and the lower part is conical with an opening with a cone angle of 45°, and a valve is provided at the opening , the outlet is located at a position 1 meter away from the top of the gas-solid separator, and the absorption tower 7 is filled with an aqueous sodium hydroxide solution with a concentration of 10 mol / liter. The absorption tower 7 and the gas-solid separator 6 are connected by a conduit, and the conduit goes deep into the Sodium hydroxide aqueous solution.

[0068] Reactor 5 is a tubular reactor, such as Figure 5 As shown, the total length of the pipe body is 80 meters, and the diameter of the pipe body is 0.8 meters. The pipe body of the reactor is made into a ring. The reactor includes an up...

Embodiment 2

[0071] Made of industrial grade stainless steel with a thickness of 3mm NiCr18Ti figure 2 In the molecular sieve gas-phase silicon replenishment equipment shown, the upper part of the gas-solid separator 6 is cylindrical with a diameter of 6 meters and a height of 14 meters, and the lower part is conical with an opening with a cone angle of 45°, and a valve is provided at the opening , the outlet is located at a position 1 meter away from the top of the gas-solid separator, and the absorption tower 7 is filled with an aqueous sodium hydroxide solution with a concentration of 10 mol / liter. The absorption tower 7 and the gas-solid separator 6 are connected by a conduit, and the conduit goes deep into the Sodium hydroxide aqueous solution.

[0072] The pipe body of the tubular reactor is 60 meters in length and is a straight pipe. The angle between the axis of the pipe reactor and the horizontal plane is 45°, and the diameter (inner diameter) of the pipe body is 1 meter, such as...

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Abstract

The invention relates to a molecular sieve production apparatus, which comprises a NaY molecular sieve exchange device, a baking furnace, a gas phase ultra-stable reactor and a gas-solid separation device, wherein the gas phase ultra-stable reactor comprises a molecular sieve inlet, a molecular sieve outlet and a silicon tetrachloride inlet. According to the present invention, with the gas phase ultra-stable reactor, the molecular sieve can move to the molecular sieve outlet of the gas phase ultra-stable reactor from the molecular sieve inlet of the gas phase ultra-stable reactor in the case of no requirement of conveying of the molecular sieve through carrier gas, and the molecular sieve and gas phase silicon tetrachloride can be subjected to a contact reaction in the gas phase ultra-stable reactor; and the apparatus can be used for continuous production of the high silicon molecular sieve, and further has characteristics of process simplifying, no requirement of molecular sieve fluidization carrier gas, and substantial silicon tetrachloride consumption reduction.

Description

technical field [0001] The invention relates to a device for preparing molecular sieves, and more particularly relates to a device for producing molecular sieves by using a gas-phase chemical method to extract aluminum and supplement silicon and its application. Background technique [0002] Molecular sieve is a widely used material in catalytic cracking catalyst, and it is also a very important component. The performance of molecular sieve directly affects the reaction performance of catalytic cracking catalyst. According to different needs, molecular sieves can be modified differently to meet the requirements of use. For example, molecular sieves with a high silicon-to-aluminum ratio are generally considered to be required for catalytic cracking catalysts. [0003] In terms of preparing molecular sieves with high silicon-aluminum ratio, there are mainly the following methods: ammonium fluorosilicate method to extract aluminum and replenish silicon, hydrothermal method and...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): C01B39/02
Inventor 朱玉霞田辉平周灵萍张杰潇许明德张蔚琳
Owner CHINA PETROLEUM & CHEM CORP
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