Preparation method and application of molecularly imprinted membrane for separation of phenylethanoid glycosides
A technology of molecularly imprinted membrane and phenylethanol glycosides, which is applied in the fields of semipermeable membrane separation, chemical instruments and methods, membrane technology, etc., can solve the problems of few types of materials, low product purity, easy membrane pollution, etc., and achieve simple preparation process, The effect of low energy consumption and easy operation
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[0021] A method for preparing a molecularly imprinted membrane for separating phenylethanol glycosides of the present invention comprises the following steps:
[0022] Step 1. After soaking the PVDF membrane in methanol solution for 24 hours and activating it, soak it in 0.05mol / L azobisisobutyronitrile / methanol solution for 10 minutes, take out the membrane and put it in an electric blast drying oven at 40°C Take out after drying;
[0023] Step 2: Add 0.2 mmol of verbascoside template molecules and 2 to 8 mmol of functional monomers into the solvent, seal, mix and ultrasonically until the template molecules and functional monomers are completely dissolved, put them into a constant temperature oscillator, and perform pre-polymerization at 30°C and 150rpm 2h, obtain prepolymerization reaction solution;
[0024] Wherein, the functional monomer is one of 4-vinylpyridine, methacrylic acid and acrylamide.
[0025] The solvent is acetonitrile:N,N-dimethylformamide (1:1.5, v / v).
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Embodiment 1
[0031] Preparation of phenylethanol glycoside molecularly imprinted membrane:
[0032] Step 1. Soak the PVDF membrane in methanol solution for 24 hours, then soak it in 0.05mol / L azobisisobutyronitrile / methanol solution for 10 minutes, take out the membrane and put it in an electric blast drying oven to dry at 40°C remove after drying;
[0033] Step 2. Add 0.2mmol verbascoside as a template molecule and 2mmol 4-vinylpyridine as a functional monomer into the solvent, the solvent is acetonitrile: DMF (1:1.5, v / v), mix and ultrasonically put into constant temperature oscillation Pre-polymerization was carried out at 30°C and 150 rpm for 2 hours to obtain a pre-polymerization reaction solution;
[0034] Step 3, adding 6 mmol of ethylene glycol dimethacrylate as a crosslinking agent and 0.1 mmol of azobisisobutyronitrile as an initiator to the prepolymerization reaction solution obtained in step 2, and mixing uniformly and ultrasonically for 10 minutes to obtain a film casting sol...
Embodiment 2
[0040] The preparation of the phenylethanol glycosides molecularly imprinted membrane was different from Example 1 in that: methacrylic acid was the functional monomer, and the amount of the functional monomer was 2 mmol.
[0041] Selective adsorption experiment of the above-mentioned phenylethanol glycosides molecularly imprinted membrane on Cistanche tubulosa extract: put the molecularly imprinted membrane in a 50mL Erlenmeyer flask, add Cistanche tubulosa extract, seal and place on a shaker at 200rpm, shake at 30°C Adsorption for 24h. The content of purified verbascoside was determined by HPLC. The adsorption capacity of purified verbascoside reached 8.86 mg / g, the adsorption capacity of echinacoside reached 7.83 mg / g, and the selectivity was 1.03.
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