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Choline derivatives immobilized on silica to catalyze transesterification reaction for production of glycerophosphocholine

机译:胆碱衍生物固定在硅胶上以催化酯交换反应生成甘油磷酸胆碱

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Choline derivatives were covalently immobilized on the surface of γ -aminated silica. The obtained immobilized choline derivative was then successfully used for a transesterification reaction to produce glycerophosphocholine (GPC). Fourier transform infrared analysis and thermogravimetric analysis/differential thermal gravimetry indicated that the surface of the γ -aminated silica was covered by choline derivatives and the highest immobilization amount reached 1.1 mmol/g under optimal conditions. More importantly, the highest yield of GPC reached 97.9% during transesterification. With regard to GPC in food or medicine for human use, the immobilization technology can avoid catalyst contamination of the product and increase the safety of the product. The recyclability and stability of the immobilized choline derivative were excellent, as demonstrated by its use 20 times without any loss of productivity. A first-order kinetic model was employed and the relevant parameters were calculated to investigate kinetic characteristics of transesterification.
机译:将胆碱衍生物共价固定在γ-胺化的二氧化硅表面上。然后将获得的固定化胆碱衍生物成功地用于酯交换反应以生产甘油磷酸胆碱(GPC)。傅立叶变换红外分析和热重分析/差示热重分析表明,在最佳条件下,γ-胺化二氧化硅表面被胆碱衍生物覆盖,固定化量最高达到1.1 mmol / g。更重要的是,酯交换过程中GPC的最高收率达到97.9%。对于用于人类的食品或药品中的GPC,固定化技术可以避免催化剂污染产品并提高产品的安全性。固定化胆碱衍生物的可回收性和稳定性极好,使用20次就证明了这一点,而没有任何生产力的损失。采用一阶动力学模型并计算相关参数以研究酯交换反应的动力学特征。

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