Sun Lijun, Liu Dongjie, Sun Jiaojiao, Yang Xingbin, Fu Minghai, Guo Yurong
Centre of Food Engineering and Nutritional Science, Shaanxi Normal University, Xi'an 710062, PR China; Centre for Nutrition and Food Science, Queensland Alliance for Agriculture and Food Innovation, The University of Queensland, Brisbane 4072, Australia.
Centre for Nutrition and Food Science, Queensland Alliance for Agriculture and Food Innovation, The University of Queensland, Brisbane 4072, Australia.
Food Chem. 2017 Sep 1;230:362-371. doi: 10.1016/j.foodchem.2017.03.065. Epub 2017 Mar 14.
The method for separating and purifying chlorogenic acid (CA), epicatechin (EC), hyperoside (HY) and phlorizin (PH) simutaneously from young Qinguan apples by successive use of X-5 and polyamide resins has been developed in this study. The order of adsorption capacities of X-5 for the four phenolics was PH>HY>EC>CA, and the adsorption equilibriums of the four phenolics onto X-5 resin conformed to Langmuir isotherms preferentially. The adsorption kinetics of EC and CA onto X-5 conformed to the pseudo-first-order model, while that of HY and PH accorded with the pseudo-second-order model. Interestingly, the values of equilibrium adsorption capacities (Q) calculated in the preferential kinetics models were closer to that of theoretical maximum adsorption capacities (Q) calculated by Langmuir isotherms. Through dynamic adsorption and desorption using X-5 and polyamide resins with ethanol solution as strippant, CA, EC, HY and PH were obtained with purities of 96.21%, 95.34%, 95.36% and 97.36%, respectively.
本研究开发了一种通过依次使用X-5和聚酰胺树脂从青冠苹果幼果中同时分离纯化绿原酸(CA)、表儿茶素(EC)、金丝桃苷(HY)和根皮苷(PH)的方法。X-5对这四种酚类物质的吸附容量顺序为PH>HY>EC>CA,四种酚类物质在X-5树脂上的吸附平衡优先符合Langmuir等温线。EC和CA在X-5上的吸附动力学符合准一级模型,而HY和PH的吸附动力学符合准二级模型。有趣的是,在优先动力学模型中计算的平衡吸附容量(Q)值更接近通过Langmuir等温线计算的理论最大吸附容量(Q)值。通过使用X-5和聚酰胺树脂以乙醇溶液为解吸剂进行动态吸附和解吸,分别获得了纯度为96.21%、95.34%、95.36%和97.36%的CA、EC、HY和PH。