Preparation method of anti-pollution cross-linked anion exchange membrane based on polyvinyl alcohol
A technology of anion exchange membrane and polyvinyl alcohol, which is applied in the direction of anion exchange, ion exchange, chemical instruments and methods, etc., can solve the problems of weak skeleton rigidity, and achieve the effects of excellent attenuation, superior anti-pollution performance, and high stability
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Embodiment 1
[0047] (1) Synthesis of 4-bromomethylbenzaldehyde: Weigh 5.00 grams (25.5mmol) of 4-(bromomethyl)benzonitrile (CBB) and fully dissolve it in 100mL of toluene. Under anaerobic conditions, 38.5 mL of a toluene solution of diisobutylaluminum hydride (DIBAL-H) was added dropwise, and stirred for 1 hour under an ice bath. Then, the remaining DIBAL-H was quenched with 10 mL of saturated ammonium chloride solution, and the organic phase of the resulting mixture was extracted with ethyl acetate, and the resulting organic phase was washed with anhydrous MgSO 4 dry. Ethyl acetate was removed by rotary evaporation at 40°C to obtain a pale yellow crude product. Then use chromatographic column separation and purification (mobile phase volume ratio: petroleum ether: ethyl acetate = 100:1) to remove by-products. Petroleum ether and ethyl acetate were removed by rotary evaporation to obtain 4.75 g of white 4-bromomethylbenzaldehyde (BMBD).
[0048] (2) Synthesis of 4-pyridylbenzaldehyde:...
Embodiment 2
[0054] (1) Synthesis of 4-bromomethylbenzaldehyde: adopt the same preparation process as in Example 1.
[0055] (2) Synthesis of 4-pyridylbenzaldehyde: the same preparation process as in Example 1 was adopted.
[0056] (3) Preparation of crosslinking agent containing bipyridine structure: the same preparation process as in Example 1 was adopted.
[0057] (4) Preparation of cross-linked ion-exchange membrane: adopt the same preparation process as in Example 1, the difference is that p-trifluoromethyl benzaldehyde, 4-pyridyl benzaldehyde and containing bipyridine structure cross-linking agent The molar ratio was 20:10:4, and the masses were 3.7630 grams, 2.7814 grams and 2.2171 grams respectively (see Table 1); the thickness of the obtained anion exchange membrane was 119 μm.
[0058] (5) Performance evaluation of cross-linked ion exchange membrane:
[0059] Parameters such as ion exchange capacity, surface resistance, tensile strength and elongation at break, water absorption...
Embodiment 3
[0061] (1) Synthesis of 4-bromomethylbenzaldehyde: adopt the same preparation process as in Example 1.
[0062] (2) Synthesis of 4-pyridylbenzaldehyde: the same preparation process as in Example 1 was adopted.
[0063] (3) Preparation of crosslinking agent containing bipyridine structure: the same preparation process as in Example 1 was adopted.
[0064] (4) Preparation of cross-linked ion-exchange membrane: adopt the same preparation process as in Example 1, the difference is that p-trifluoromethyl benzaldehyde, 4-pyridyl benzaldehyde and containing bipyridine structure cross-linking agent The molar ratio was 25:10:4, and the masses were 4.7038 grams, 2.7814 grams and 2.2171 grams respectively (see Table 1); the thickness of the obtained anion exchange membrane was 116 μm.
[0065] (5) Performance evaluation of cross-linked ion exchange membrane:
[0066] Parameters such as ion exchange capacity, surface resistance, tensile strength and elongation at break, water absorption...
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