A kind of phytosterol ester and its low-temperature preparation method
A technology for phytosterol ester and phytosterol, which is applied in the field of phytosterol ester and low-temperature preparation thereof, can solve problems such as singleness, and achieve the effects of mild conditions, high conversion rate and low boiling point
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Embodiment 1
[0044] Get raw material phytosterol 100g (total plant sterol content 95%), soybean fatty acid 70g, add solvent methylene chloride 300ml, dissolve raw material phytosterol, then add catalyst p-toluenesulfonic acid 1g, esterification reaction temperature is 42 ℃, react 6h, During the reaction, the solvent was evaporated at 42°C, condensed and then refluxed to remove water. After the reaction, 2g of calcium oxide was added to neutralize the catalyst and excess fatty acid, the insoluble solids were removed by filtration, and the solvent was evaporated to dryness in vacuo to obtain 163g of phytosterol esters. The phytosterol esters had a purity of 97.3% as measured by GC-MS.
Embodiment 2
[0046] Get raw material phytosterol 100g (total phytosterol content 90%), soybean fatty acid 70g, add solvent sherwood oil 800ml, dissolve raw material phytosterol, then add catalyst p-toluenesulfonic acid 1g, esterification reaction temperature is 30 ℃, react 10h, react During the process, the solvent was evaporated at 30°C, and after condensation, the water was removed and refluxed. After the reaction, 2g of calcium oxide was added to neutralize the catalyst and excess fatty acid, the insoluble solids were removed by filtration, and the solvent was evaporated to dryness in vacuo to obtain 164g of phytosterol esters. The phytosterol esters had a purity of 96.6% as measured by GC-MS.
Embodiment 3
[0048] Get raw material phytosterol 100g (total phytosterol content 90%), linoleic acid 70g, add solvent methylene chloride 500ml, dissolve raw material phytosterol, then add catalyst p-toluenesulfonic acid 0.1g, esterification reaction temperature is 42 ℃, reaction 15h, the solvent was evaporated at 42°C during the reaction, and the water was removed and refluxed after condensation. After the reaction, 2g of calcium oxide was added to neutralize the catalyst and excess fatty acid, the insoluble solids were removed by filtration, and the solvent was evaporated to dryness in vacuo to obtain 163g of phytosterol esters. The phytosterol esters had a purity of 96.7% as measured by GC-MS.
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