Green synthetic method of epoxy unsaturated fatty acid methyl ester and catalyst
A fatty acid methyl ester, green synthesis technology, applied in chemical instruments and methods, organic compound/hydride/coordination complex catalysts, physical/chemical process catalysts, etc., can solve the unsatisfactory hydrophobicity and water resistance of rhenium ionic liquids , The catalytic effect is not very ideal, the double bond structure is complicated, etc., to achieve good catalytic oxidation effect, reduce the difficulty of post-processing, and strong hydrophobic effect
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Example Embodiment
[0035] The preparation method of above-mentioned hydrophobic rhenium ionic liquid catalyst is:
[0036] Add N-methylimidazole (1 mmol) and bromododecane (1.5 mmol) to a round-bottomed flask with a reflux condenser, respectively, and stir at 125-135 ° C for 5 hours to obtain a pale yellow viscous liquid, which is washed with ether for 3 times, overnight at 40~50℃ / 100~133Pa to obtain light brown waxy solid, namely 1-dodecyl-3-methylimidazolium bromide; take 1-dodecyl-3-methylimidazole The bromide salt was dissolved in hot distilled water, stirred rapidly, slowly added dropwise an aqueous solution of ammonium perrhenate (20 ml, 0.1 mol / L), vigorously stirred at 80-90 °C for 6 hours, allowed to stand, poured off the upper aqueous phase, and washed the lower layer with water The ionic liquid is neutralized, the water is removed in vacuum, and the vacuum is dried at 60-70℃ / 100~133Pa overnight to obtain a yellow viscous liquid, namely alkylimidazolium rhenium ionic liquid.
Example Embodiment
[0037] Example 1
[0038] 500 g of unsaturated fatty acid methyl esters with an iodine value of 55% were placed in a three-necked flask, heated to 60 °C, 1 g of hydrophobic rhenium ionic liquid catalyst was added, 88.35 g of hydrogen peroxide with a concentration of 50% was added dropwise, and the reaction was performed at 60 °C for 3 hours. After standing for stratification, the upper oil layer is vacuumed to remove a small amount of residual water to obtain the target product epoxy fatty acid methyl ester with an epoxy value of 2.65% and an iodine value of 5.6%. The epoxy fatty acid methyl ester obtained by the formic acid method epoxidizing the unsaturated fatty acid methyl ester with the same iodine value has an epoxy value of 2.62% and an iodine value of 5.1%. The lower layer is a mixture of ionic liquid and hydrogen peroxide, the concentration of hydrogen peroxide is about 12%, and the hydrogen peroxide concentration is increased to about 30% after removing part of the wate
Example Embodiment
[0039] Example 2
[0040]Put 500 g of unsaturated fatty acid methyl esters with an iodine value of 90% in a three-necked flask, heat to 50 ° C, add 2.5 g of hydrophobic rhenium ionic liquid catalyst, drop 132.52 g of hydrogen peroxide with a concentration of 50%, and react at 62 ° C for 2 hours , stand for stratification, the upper oil layer is vacuumed to remove a small amount of residual water, and the target product epoxy fatty acid methyl ester is obtained, the epoxy value is 3.49%, and the iodine value is 6.0%. The epoxy fatty acid methyl ester obtained by the formic acid method epoxidizing the unsaturated fatty acid methyl ester with the same iodine value has an epoxy value of 3.37% and an iodine value of 5.7%. The lower layer is a mixture of ionic liquid and hydrogen peroxide, the concentration of hydrogen peroxide is about 14%, and the hydrogen peroxide concentration is increased to about 30% after removing part of the water under reduced pressure at low temperature, whic
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