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首页> 外文期刊>World Journal of Environmental Engineering >Purification of Phycocyanin from Chaohu Algae by Various Salting out Methods
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Purification of Phycocyanin from Chaohu Algae by Various Salting out Methods

机译:多种盐析法纯化巢湖藻中的藻蓝蛋白

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This research was carried out to extract and purify phycocyan in from blue algae from Chaohu Lake by utilizing salting out methods. Thus a two-step salting out was performed using Ammonium sulphate, Triammonium citrate, Sodium citrate and Sodium sulfate. The phycocyanin and the impurity solution collected at each phase were subjected to analysis by using UV-Vis spectrophotometer to identify the optimal dose of ammonium sulfate, triammonium citrate, sodium citrate and sodium sulfate. The optimal molar concentration for Ammonium sulphate, Triammonium citrate, Sodium citrate and Sodium sulfate in the first and second salting out process were 1.0 mol/L and 1.7mol/L for Ammonium sulphate (NH4)2SO4, 0.7, mol/L and 1.3 mol/L for Triammonium citrate C6H17N3O7, 0.5mol/L and 0.9 mol/L for Sodium citrate C6H5Na3O7, 1.0mol/L and 1.3 mol/L for Sodium sulfate Na2S04. After the two-step salting out processes, it was observed that higher molar concentrations can remove impurities in large quantities, and both purity and yield was greatly increased. The results indicate a purity of phycocyanin above 2.0 with a phycocyanin recovery relatively high. This was carried out to affirm and estimate if result from the salt use will vary from a previous experiment carried out on the same river by the authors with three (3) different kinds of salt K3C6H5O7H2O, C6H5O7(NH4)3 and (NH4)2SO4 as compared to the four (4) salt compound used in this experiment.
机译:本研究利用盐析法从巢湖蓝藻中提取纯化藻蓝蛋白。因此,使用硫酸铵,柠檬酸三铵,柠檬酸钠和硫酸钠进行两步盐析。使用紫外可见分光光度计对各相中收集的藻蓝蛋白和杂质溶液进行分析,以确定硫酸铵,柠檬酸三铵,柠檬酸钠和硫酸钠的最佳剂量。在第一次和第二次盐析过程中,硫酸铵,柠檬酸三铵,柠檬酸钠和硫酸钠的最佳摩尔浓度分别为:硫酸铵(NH4)2SO4、0.7,mol / L和1.3 mol为1.0 mol / L和1.7mol / L。柠檬酸三铵C6H17N3O7 / L,柠檬酸钠C6H5Na3O7 0.5mol / L和0.9 mol / L,硫酸钠Na2SO4 1.0mol / L和1.3 mol / L。经过两步盐析过程后,观察到较高的摩尔浓度可以大量去除杂质,并且纯度和产率均大大提高。结果表明藻蓝蛋白的纯度高于2.0,而藻蓝蛋白的回收率相对较高。这样做是为了确认和估计盐的使用结果是否会与作者先前在同一条河上使用三(3)种不同的盐K3C6H5O7H2O,C6H5O7(NH4)3和(NH4)2SO4进行的实验有所不同。与本实验中使用的四(4)盐化合物相比。

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