Method for synthesizing SAPO-20 molecular sieve
The invention discloses a method for synthesizing an SAPO-20 molecular sieve. The method comprises steps as follows: firstly, an SAPO-34 molecular sieve or a waste SAPO-34 molecular sieve catalyst isdissolved in a sodium hydroxide solution, the mixture is put in a high-pressure reactor and crystaliz...
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creator | ZHANG TAO SONG DIANHUA GUO YONG SHEN LAZHEN LIU HONGYAN JIANG YU CUI YUE ZHANG WENSHAN HAN SHENGHUA ZHANG HAIRONG LIU YIDING |
description | The invention discloses a method for synthesizing an SAPO-20 molecular sieve. The method comprises steps as follows: firstly, an SAPO-34 molecular sieve or a waste SAPO-34 molecular sieve catalyst isdissolved in a sodium hydroxide solution, the mixture is put in a high-pressure reactor and crystalized at the temperature of 160 DEG C for 1-3 days, cooling, washing and drying are performed after crystallization, and the SAPO-20 molecular sieve is obtained. The new route for synthesizing the SAPO-20 molecular sieve is developed, and a utilization way of the waste SAPO-34 molecular sieve catalystis provided and can serve as an energy-saving, consumption-reducing and comprehensive-utilization new exploration mode in an SAPO-34 molecular sieve catalyst process. Particularly, when the method isused for synthesizing the SAPO-20 molecular sieve, a roasting template agent is not required after complete crystallization, a synthesized product has regular morphology and uniform particle size, can be used for separation ad |
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The method comprises steps as follows: firstly, an SAPO-34 molecular sieve or a waste SAPO-34 molecular sieve catalyst isdissolved in a sodium hydroxide solution, the mixture is put in a high-pressure reactor and crystalized at the temperature of 160 DEG C for 1-3 days, cooling, washing and drying are performed after crystallization, and the SAPO-20 molecular sieve is obtained. The new route for synthesizing the SAPO-20 molecular sieve is developed, and a utilization way of the waste SAPO-34 molecular sieve catalystis provided and can serve as an energy-saving, consumption-reducing and comprehensive-utilization new exploration mode in an SAPO-34 molecular sieve catalyst process. 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The method comprises steps as follows: firstly, an SAPO-34 molecular sieve or a waste SAPO-34 molecular sieve catalyst isdissolved in a sodium hydroxide solution, the mixture is put in a high-pressure reactor and crystalized at the temperature of 160 DEG C for 1-3 days, cooling, washing and drying are performed after crystallization, and the SAPO-20 molecular sieve is obtained. The new route for synthesizing the SAPO-20 molecular sieve is developed, and a utilization way of the waste SAPO-34 molecular sieve catalystis provided and can serve as an energy-saving, consumption-reducing and comprehensive-utilization new exploration mode in an SAPO-34 molecular sieve catalyst process. 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The method comprises steps as follows: firstly, an SAPO-34 molecular sieve or a waste SAPO-34 molecular sieve catalyst isdissolved in a sodium hydroxide solution, the mixture is put in a high-pressure reactor and crystalized at the temperature of 160 DEG C for 1-3 days, cooling, washing and drying are performed after crystallization, and the SAPO-20 molecular sieve is obtained. The new route for synthesizing the SAPO-20 molecular sieve is developed, and a utilization way of the waste SAPO-34 molecular sieve catalystis provided and can serve as an energy-saving, consumption-reducing and comprehensive-utilization new exploration mode in an SAPO-34 molecular sieve catalyst process. Particularly, when the method isused for synthesizing the SAPO-20 molecular sieve, a roasting template agent is not required after complete crystallization, a synthesized product has regular morphology and uniform particle size, can be used for separation ad</abstract><oa>free_for_read</oa></addata></record> |
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subjects | CHEMISTRY COMPOUNDS THEREOF INORGANIC CHEMISTRY METALLURGY NON-METALLIC ELEMENTS |
title | Method for synthesizing SAPO-20 molecular sieve |
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