Cowpea N-methyl xylene carbamate adsorbing material, preparation and application
A technology of xylyl methyl carbamate and adsorption materials, which is applied in the preparation of test samples, alkali metal oxides/hydroxides, inorganic chemistry, etc., and can solve problems such as long penetration time, complicated operation, and expensive equipment , to achieve the effects of wide linear range, avoiding secondary pollution, and easy operation
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Embodiment 1
[0028] 66 parts of Na with a mass fraction of 15% 2 HPO 4 It is 42% TEDA-PAM-Gel to mix evenly with 24 parts of mass fractions, obtains the gel mixture, then adds 10 parts of mass fractions and is ionic liquid [EPy]Br of 22%, the above-mentioned mixture is placed in the autoclave, in React at 150°C for two hours, then store it in a vacuum oven at 40°C and let it stand for 48 hours to prepare the morning glory-like ionic liquid active adsorption material.
[0029] Take out this adsorption material, be used to capture the N-methyl dimethyl carbamate in cowpea, cowpea: water: the mass ratio of adsorption material=4:8:1, leave standstill 20min under 26 ℃, capture the N-methylcarbamate in cowpea Xylyl methyl carbamate, then take out the cowpea and wash it with water. The permeability of the target before and after capture is recorded in Table 1.
Embodiment 2
[0031] The preparation method of this example is the same as that of Example 1, the only difference is that the type of ionic liquid in the preparation process is different. In this example, the ionic liquid is changed to [2-aemim][PF6](1-aminoethyl-3- Methylimidazole hexafluorophosphate), and the rest of the conditions were unchanged, and the permeability of the target before and after capture was recorded in Table 1.
Embodiment 3
[0033] The preparation method of this example is the same as that of Example 1, the only difference is that the type of ionic liquid in the preparation process is different. In this example, the ionic liquid is changed to [bmim][PF6](1-butyl-3-methylimidazole hexafluorophosphate), and the rest of the conditions were unchanged, and the permeability of the target before and after capture was recorded in Table 1.
[0034] As can be seen from the foregoing examples and Table 1, the composition of the ionic liquid in the adsorbent is changed, and the permeability for separating N-methylxylylcarbamate in cowpea is respectively 99.5%, 85.6%, and 78.2%. Therefore, when [EPy]Br is used as the ionic liquid, the permeability of N-methylxylylcarbamate in cowpea is the largest, and the penetration effect is the best.
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