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首页> 外文期刊>Journal of Surfactants and Detergents >Acquisition of Water Solubility Diagrams in Ternary Systems (AOT/Organic Solvent/Alcohol) and Extraction of alpha-Lactalbumin Using Reverse Micellar Systems
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Acquisition of Water Solubility Diagrams in Ternary Systems (AOT/Organic Solvent/Alcohol) and Extraction of alpha-Lactalbumin Using Reverse Micellar Systems

机译:使用反向胶束系统采集三元系统(AOT /有机溶剂/醇)中的水溶解度图和α-乳白酶的提取

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In this study water solubility curves were constructed and calorimetric measurements obtained for reverse micellar systems consisting of an alcohol (isopropanol or butanol), surfactant (AOT) and organic solvent (isooctane or hexane). Also evaluated were the effects of alcohol and solvent type and surfactant concentration on the extraction of the alpha-lactalbumin (alpha-la). From the obtained solubility diagrams for ternary systems, it was concluded that isooctane presented the highest water solubility capacity in the center of the micelle systems with hexane, since isooctane has greater molecular volume and greater effect of the surfactant aggregation number. With respect to the alcohols, it was observed that isopropanol and butanol act in the system as a co-surfactant, since they prefer to adsorb at the water/solvent interface. It was also verified that butanol improved water solubility inside the reverse micellar due to its contribution to increase the critical packing parameter. The amount of alpha-la extracted increased proportionally with the AOT concentration for systems with isooctane and hexane. However, for systems with the latter solvent, the concentration of extracted protein first increases and then decreases. The extraction power of reverse micellar systems with isooctane was influenced by the type of alcohol with butanol showing better results. For systems containing hexane there was no effect of the alcohol added to the system on extraction power of alpha-lactalbumin.
机译:在该研究中,对由醇(异丙醇或丁醇),表面活性剂(AOT)和有机溶剂(异辛烷或己烷)组成的反向胶束系统而构建和量热测量。还评估了醇和溶剂类型和表面活性剂浓度对α-乳白蛋白酶(α-LA)的萃取的影响。从所得三元系统的溶解度图中,得出结论是,异辛烷呈现胶束系统中央的最高水溶性容量,具有己烷,因为异辛烷具有更大的分子量和表面活性剂聚集数的更大效果。关于醇,观察到异丙醇和丁醇作为共表面活性剂在该系统中起作用,因为它们更倾向于在水/溶剂界面上吸附。还验证了丁醇由于其对增加关键填料参数的贡献,丁醇在反向胶束内的水溶性提高了水溶性。提取的α-LA的量与具有异辛烷和己烷的系统的AOT浓度比例增加。然而,对于具有后一种溶剂的系统,提取的蛋白质的浓度首先增加,然后降低。具有异辛烷的反向胶束系统的提取动力受丁醇的醇类型的影响,显示出更好的结果。对于含己烷的系统,没有含有α-乳白蛋白的提取功率的醇的醇的作用。

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