Preparation method of As (III) ion imprinted material based on surface of MCM-41 molecular sieve
A MCM-41, ion imprinting technology, applied in the field of preparation of As ion imprinting materials, can solve the problems of slow mass transfer, difficult elution, etc., and achieve good mechanical and stability, good adsorption, good selectivity. Effect
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Embodiment 1
[0013] A kind of As (Ⅲ) ion imprinting material based on MCM-41 molecular sieve surface, comprises the steps:
[0014] (1) Preparation of MCM-41: Weigh 1.2 g of cetyltrimethylammonium bromide into a three-necked flask, and simultaneously measure 90 mL of ammonia water and 130 mL of distilled water into the three-necked flask. Stir at 60°C until cetyltrimethylammonium bromide is completely dissolved. Under vigorous stirring, 5 mL of ethyl orthosilicate was slowly added dropwise, and stirred at a constant speed, and reacted for 6 hours. Stop the reaction and pour it out while it is hot. At room temperature, it crystallizes for 3d. The solid particles were washed to neutral and dried. Burn in a muffle furnace at 550°C for 6 hours to remove hexadecyltrimethylammonium bromide to obtain MCM-41;
[0015] (2) Weigh 0.2mmol of sodium arsenite solid in a three-necked flask, then add 10mL of ultrapure water to fully dissolve it, then weigh 80-100mL of absolute ethanol and add it to th...
Embodiment 2
[0020] (1) Preparation of MCM-41: Weigh 1.2 g of cetyltrimethylammonium bromide into a three-necked flask, and simultaneously measure 90 mL of ammonia water and 130 mL of distilled water into the three-necked flask. Stir at 60°C until cetyltrimethylammonium bromide is completely dissolved. Under vigorous stirring, 5 mL of ethyl orthosilicate was slowly added dropwise, and stirred at a constant speed, and reacted for 6 hours. Stop the reaction and pour it out while it is hot. At room temperature, it crystallizes for 3d. The solid particles were washed to neutral and dried. Burn in a muffle furnace at 550°C for 6 hours to remove hexadecyltrimethylammonium bromide to obtain MCM-41;
[0021] (2) Weigh 0.25mmol of sodium arsenite in a three-necked flask, then add 10mL of ultrapure water to fully dissolve it, then weigh 80-100mL of methanol into the three-necked flask, mix well, and then add 2mL of N -(β-aminoethyl)-γ-aminopropyltrimethoxysilane, react for 1-2h, then add the MCM-...
Embodiment 3
[0025] (1) Preparation of MCM-41: Weigh 1.2 g of cetyltrimethylammonium bromide into a three-necked flask, and simultaneously measure 90 mL of ammonia water and 130 mL of distilled water into the three-necked flask. Stir at 60°C until cetyltrimethylammonium bromide is completely dissolved. Under vigorous stirring, 5 mL of ethyl orthosilicate was slowly added dropwise, and stirred at a constant speed, and reacted for 6 hours. Stop the reaction and pour it out while it is hot. At room temperature, it crystallizes for 3d. The solid particles were washed to neutral and dried. Burn in a muffle furnace at 550°C for 6 hours to remove hexadecyltrimethylammonium bromide to obtain MCM-41;
[0026] (2) Weigh 0.3mmol of sodium arsenite solid in a three-necked flask, then add 10mL of ultrapure water to fully dissolve it, then weigh 80-100mL of methanol and add it to the three-necked flask, mix well, and then add 2mL of N-(β-aminoethyl)-γ-aminopropyltrimethoxysilane, react for 1-2h, then...
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