High-flux and high-selectivity nanofiltration membrane and preparation method thereof
A high-selectivity, nanofiltration membrane technology, applied in chemical instruments and methods, membrane technology, semi-permeable membrane separation, etc., can solve problems such as poor stability and decreased membrane retention performance, and achieve the effect of high permeation flux
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Embodiment 1
[0036] Preparation of aspartate-calcium metal (Asp-Ca) chelate:
[0037] Dissolve aspartic acid powder and anhydrous calcium chloride solid at a molar ratio of 2:1 in an aqueous solution with pH = 8, stir and react at 80°C for 1 hour, then concentrate under reduced pressure and suction to a sticky paste. The precipitate was washed 4 times with absolute ethanol. Finally, the precipitate was dried in a vacuum oven at 50 °C for 24 h for use.
[0038] Preparation of composite nanofiltration membrane:
[0039] Prepare an Asp-Ca aqueous solution with a mass concentration of 0.01w / v%, a 0.1w / v% PIP aqueous solution, and a 0.1w / v% TMC n-decane solution.
[0040] First, cut the polysulfone ultrafiltration base membrane with a molecular weight cut off of 5000 to an appropriate size, and place it on the mouth of the suction filter bottle (effective filtration area 20cm 2 ), pour 30mL of prepared Asp-Ca aqueous solution into the suction filter cup, that is, the suction filtration volum...
Embodiment 2
[0042] Preparation of Glu-Cu metal chelates:
[0043] Heat and dissolve L-glutamic acid powder and copper sulfate pentahydrate crystals with a molar ratio of 2:1 in an aqueous solution of pH=6, stir and react in a water bath at 85°C for 1 hour, cool the reaction solution, and filter under reduced pressure in batches , adding absolute ethanol to wash the precipitate for 4 times, taking the filter cake layer and drying it in an oven at 110°C to constant weight to obtain blue Glu-Cu crystals, which were stored in a vacuum desiccator.
[0044] Preparation of composite nanofiltration membrane:
[0045] Prepare an Asp-Ca aqueous solution with a mass concentration of 0.01w / v%, a 0.2w / v% PIP aqueous solution, and a 0.2w / v% TMC n-decane solution.
[0046] First, cut the polysulfone ultrafiltration base membrane with a molecular weight cut off of 5000 to an appropriate size, and place it on the mouth of the suction filter bottle (effective filtration area 20cm 2 ), pour 30mL of prepar...
Embodiment 3
[0048] Preparation of Glu-Cu metal chelate: same as Example 2.
[0049] Preparation of composite nanofiltration membrane:
[0050] The Glu-Cu aqueous solution with a mass concentration of 0.05w / v%, the PIP aqueous solution with 1.0w / v%, and the TMC n-decane solution with 0.2w / v% were prepared.
[0051] First, cut the polysulfone ultrafiltration base membrane with a molecular weight cut off of 10,000 to an appropriate size, and place it on the mouth of the suction filter bottle (effective filtration area 20cm 2 ), pour 10mL of the prepared Glu-Cu aqueous solution into the suction filter cup, that is, the suction filtration volume is 0.5mL / cm 2 (relative to the area of the base membrane), vacuumize and filter the moisture under the condition of 0.02MPa (absolute pressure), and obtain a polysulfone base membrane with a layer of Glu-Cu deposited on the surface. Then soak it in the water phase solution for 10 minutes, remove excess water on the surface with filter paper after t...
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