Preparation method of triazinyl calix [4] arene porous polymer and application thereof
A porous polymer, triazine-based cup technology, applied in chemical instruments and methods, water pollutants, other chemical processes, etc., to achieve the effect of large adsorption capacity and high efficiency
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Embodiment 1
[0034] Embodiment 1.CalPOP-1 iodine adsorption experiment
[0035] 25mg of CalPOP-1 (denoted as m) and potassium iodide solution of iodine (by 600mg KI, 300mg I 2 Dissolve in 2mLH 2 O for preparation) into a 5mL glass bottle at the same time, then seal the bottle mouth, place the glass bottle at room temperature, the pressure is normal pressure, filter after 2h, 4h, 6h, 8h, 10h, 24h, weigh the adsorption The mass of CalPOP-2 is recorded as m a , according to the formula m a -m calculated adsorption capacity is 54mg, 59.7mg, 59.8mg, 60mg, 60mg, 60mg ( image 3 ).
Embodiment 2
[0036] Embodiment 2.CalPOP-2 iodine adsorption experiment
[0037] 25mg of CalPOP-2 (denoted as m) and potassium iodide solution of iodine (by 600mg KI, 300mg I 2 Dissolve in 2mLH 2 O for preparation) into a 5mL glass bottle at the same time, then seal the bottle mouth, place the glass bottle at room temperature, the pressure is normal pressure, filter after 2h, 4h, 6h, 8h, 10h, 24h, weigh the adsorption The mass of CalPOP-1 is recorded as m a , according to the formula m a -m calculated adsorption capacity is 2.6mg, 9.1mg, 10mg, 10.3mg, 10.3mg, 10.3mg ( image 3 ). Compared with CalPOP-1, the substituents on the lower edge of caliPOP-2 range from ethyl to butyl, and the steric positions increase. After polymerization, the specific surface area will decrease, thereby reducing the amount of iodine adsorption.
Embodiment 3
[0038] Embodiment 3.CalPOP-1 iodine desorption experiment
[0039] Weigh 10 mg of CalPOP-1 after absorbing iodine and place in Al 2 o 3 The crucible starts from 28°C, high-purity nitrogen is used as the protective gas in the furnace, and the ambient gas is also high-purity nitrogen. The temperature of the instrument is controlled at 28°C, preheated for 20 minutes, so that the sample temperature is balanced to 28°C, and the heating program is as follows: the initial temperature is 28°C, and the temperature rises to 700°C at a rate of 5°C per minute. According to the obtained TGA curve, it can be concluded that the desorption behavior of iodine occurs at 90-290°C. Figure 4 For the present invention CalPOP-1 and CalPOP-1_I 2 thermogravimetric curve.
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