Method for preparing small granulated SAPO molecular sieve, product prepared through method, and use of product

A molecular sieve, small-grain technology, applied in the direction of molecular sieve and alkali-exchanged phosphate, molecular sieve catalyst, molecular sieve characteristic silicoaluminophosphate, etc., can solve the problems of difficult control of composition, complex synthesis process, and difficulty in generating molecular sieve from nano molecular sieves. , to achieve the effect of cost saving and simple preparation process

Active Publication Date: 2015-02-11
中科催化新技术(大连)股份有限公司
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  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

These research results imply that it is difficult to synthesize nano-molecular sieves by this method while simultaneously controlling the composition of the resulting molecular sieves.
[0007] In view of the difficulties in the preparation of small-grain SAPO molecular sieves, including high cost, complicated synthesis process, difficult control of composition, poor crystallinity, low yield, etc., and problems such as a large amount of industrial wastewater produced in the production of SAPO molecular sieves, the inventors thought of If the SAPO molecular sieve is pretreated into a molecular sieve precursor whose crystal structure has been partially destroyed and the particle size becomes smaller, and then the crystal structure is repaired through secondary crystallization, it will be possible to obtain a high-crystallinity SAPO molecular sieve with a particle size of nanoscale

Method used

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  • Method for preparing small granulated SAPO molecular sieve, product prepared through method, and use of product
  • Method for preparing small granulated SAPO molecular sieve, product prepared through method, and use of product
  • Method for preparing small granulated SAPO molecular sieve, product prepared through method, and use of product

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Experimental program
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Effect test

Embodiment 1

[0064] Embodiment 1: the preparation of the SAPO molecular sieve sample (a)~(o) as raw material

[0065] SAPO molecular sieves as raw materials, in addition to using SAPO molecular sieves purchased from Chia Tai Energy Materials (Dalian) Co., Ltd. (where the particle size ranges from 1 to 10 μm), prepared the following SAPO molecular sieve samples as raw materials by conventional hydrothermal crystallization method .

[0066] sample (a)

[0067] Add 132g pseudo-boehmite (Al 2 o 3 Mass content 72%), 218.5g phosphoric acid (phosphoric acid mass content is 85%), 87g silica sol (SiO 2 mass content 28%), 290g triethylamine and 740g water, stir evenly, then seal, heat up to 210°C under stirring, and crystallize for 24h. The solid product was centrifuged (Hitachi high-speed centrifuge, centrifugal speed 10000 rpm), and the centrifuged supernatant was collected. The solid product was washed with deionized water until neutral, and dried in air at 120° C. to obtain a SAPO-34 mole...

Embodiment 2~18

[0096] Embodiment 2~18: the preparation of small grain SAPO molecular sieve product

[0097] Commercially available SAPO molecular sieves and SAPO molecular sieve samples (a)-(o) prepared in Example 1 were used as raw materials respectively, and pretreated into particles of 10-800 nm to obtain crystallization precursors with small particle size and low crystallinity; Then the organic amine template agent R and water and optional silicon source, aluminum source and phosphorus source are mixed in a certain proportion to prepare a crystallization solution, or directly use the samples (a)-(o) collected above The mother liquor is used as the crystallization solution; or the mother liquor collected in the above preparation samples (a) to (o) is used and a certain amount of optional phosphoric acid, aluminum source, silicon source, organic amine template agent R and water are used as the crystallization solution. Liquidization; the above-mentioned crystallization precursor is mixed w...

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Abstract

The invention relates to a method for preparing a small granulated SAPO molecular sieve, a product prepared through the method, and a use of the product. The method concretely includes the following steps: preprocessing a raw material SAPO molecular sieve to form granules with the granularity of 10-800nm in order to obtain a crystallization precursor with low crystallization degree; mixing an organic amine template R and water with optional silicon, aluminum and phosphorus sources to prepare a crystallization liquid, or using a mother liquor obtained after separating a product in the preparation process of the SAPO molecular sieve as the crystallization liquid; and mixing the crystallization precursor with the crystallization liquid, carrying out a hydrothermal reaction, and separating to obtain the small granulated SAPO molecular sieve. The method allows the small granulated SAPO molecular sieve to be simply prepared without using an organic amine template tetraethylammonium hydroxide, and the product prepared in the invention has the advantages of obvious prolongation of the catalysis life of a reaction of oxygen-containing compounds, such as methanol, to olefin as a catalyst, and obvious selectivity increase as a catalyst.

Description

technical field [0001] The invention relates to the field of molecular sieves and preparation methods thereof, in particular to a method for preparing small-grain SAPO molecular sieves, products obtained by the method and uses thereof. Background technique [0002] Since Union Carbide successfully developed a series of aluminum phosphate molecular sieves and their derivatives in 1982 (Pat: USP4310440, USP4,440,871), aluminum phosphate molecular sieves and their heteroatom-substituted derivatives have been widely concerned by researchers. It is one of the research hotspots in the field of materials science and catalysis. Especially the SAPO-n (n is the model) series silicoaluminophosphate molecular sieve: its skeleton is made of PO 2 + , AlO 2 - and SiO 2 Composed of tetrahedrons, Si atoms enter the neutral aluminum phosphate molecular sieve structure through substitution, so that it generates a net negative charge. According to different synthesis conditions and differ...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): C01B37/08C01B39/54B01J29/85C07C1/20C07C11/02
CPCC01B37/08C01B39/54C01P2004/03C01P2004/62C01P2004/64
Inventor 杨淼田鹏刘中民杨越张莹何艳丽杨虹熠
Owner 中科催化新技术(大连)股份有限公司
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