...
首页> 外文期刊>Food research international >Substrates emulsification process to improve lipase-catalyzed sardine oil glycerolysis in different systems. Evaluation of lipid oxidation of the reaction products
【24h】

Substrates emulsification process to improve lipase-catalyzed sardine oil glycerolysis in different systems. Evaluation of lipid oxidation of the reaction products

机译:底物的乳化过程可改善脂肪酶催化的沙丁鱼油在不同系统中的甘油分解。评价反应产物的脂质氧化

获取原文
获取原文并翻译 | 示例
           

摘要

Mono- and diacylglycerols rich in omega-3 have a great interest due to their good bioavailability and oxidation stability compared with other kind of omega-3 concentrates. The main drawback in mono- and diacylglycerols production by glycerolysis is the immiscibility of the substrates, oil and glycerol. To improve mass transfer rates, avoiding the use of organic solvents, emulsification of both reactants as reverse micelles (glycerol-in-oil) was carried out previous to lipase-catalyzed sardine oil glycerolysis. Substrate emulsification yielded higher reaction rates compared to kinetics with no previous emulsification, but still lower than in organic solvents. To avoid the use of organic solvent, SC-CO2 was used as reaction medium but no kinetic advantages were demonstrated in the pressure range from 15 to 25 MPa. By increasing temperature, from 40 to 90 degrees C, reaction rates increased both in a solvent-free system and in SC-CO2 medium. It was also found that an increase in temperature does not lead to an increase in the final oxidation status of the reaction products. This behavior was due to the adsorption capacity of the Lipozyme 435 support, giving lower oxidation status at the highest temperature, 80-90 degrees C.
机译:与其他种类的omega-3浓缩物相比,富含omega-3的单酰基和二酰基甘油具有良好的生物利用度和氧化稳定性,因此引起了人们的极大兴趣。通过甘油水解生产单和二酰基甘油的主要缺点是底物,油和甘油的不溶混性。为了提高传质速率,避免使用有机溶剂,在脂肪酶催化的沙丁鱼油进行甘油分解之前,先将两种反应物乳化为反胶束(油中甘油)。与动力学相比,没有先前的乳化,底物乳化产生的反应速率更高,但仍低于有机溶剂中的动力学。为了避免使用有机溶剂,将SC-CO2用作反应介质,但在15至25 MPa的压力范围内未显示出动力学优势。通过将温度从40摄氏度提高到90摄氏度,在无溶剂系统和SC-CO2介质中,反应速率都会提高。还发现温度升高不会导致反应产物的最终氧化状态升高。此行为归因于Lipozyme 435载体的吸附能力,在最高温度80-90摄氏度下氧化态较低。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号