Four Kinds of Polymer Microspheres Prepared by the Seed Swelling Method Used to Purify the Industrial Production of Phytol.

IF 1.5 4区 化学 Q4 BIOCHEMICAL RESEARCH METHODS
Shixiang Liu, Zhipeng Fang, Yanan Li, Linlin Kang, Hailin Cong, Youqing Shen, Bing Yu
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引用次数: 0

Abstract

Four monodisperse porous polymer microspheres were successfully prepared by seed emulsion polymerization and used as stationary phases for HPLC and preparative high-performance liquid chromatography (Prep-HPLC). All four polymer microspheres(polystyrene-polystyrene (PS-PS), polystyrene-poly(glycidyl methylate) (PS-PGMA), polystyrene-poly(methyl methylate) and poly(glycidyl methylate)-poly(glycidyl methylate) were used for filling HPLC empty columns. According to the analysis results of the HPLC column, PS-PS and PS-PGMA microspheres were screened out as the stationary phase of Prep-HPLC. The industrial-grade phytol was successfully separated and purified, and the purity of the final phytol was as high as 99%. The two types of polymer microspheres have been applied to industrial-grade phytol purification and have been used in factories.

用种子膨胀法制备的四种聚合物微球,用于净化工业生产的植物醇。
利用种子乳液聚合法成功制备了四种单分散多孔聚合物微球,并将其用作高效液相色谱和制备型高效液相色谱(Prep-HPLC)的固定相。四种聚合物微球(聚苯乙烯-聚苯乙烯(PS-PS)、聚苯乙烯-聚缩水甘油酸甲酯(PS-PGMA)、聚苯乙烯-聚甲基丙烯酸甲酯和聚缩水甘油酸甲酯-聚缩水甘油酸甲酯)均用于填充高效液相色谱空柱。根据 HPLC 柱的分析结果,筛选出 PS-PS 和 PS-PGMA 微球作为 Prep-HPLC 的固定相。工业级植物醇被成功分离纯化,最终植物醇的纯度高达 99%。这两种聚合物微球已应用于工业级植物醇的纯化,并已在工厂中使用。
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来源期刊
CiteScore
2.90
自引率
7.70%
发文量
94
审稿时长
5.6 months
期刊介绍: The Journal of Chromatographic Science is devoted to the dissemination of information concerning all methods of chromatographic analysis. The standard manuscript is a description of recent original research that covers any or all phases of a specific separation problem, principle, or method. Manuscripts which have a high degree of novelty and fundamental significance to the field of separation science are particularly encouraged. It is expected the authors will clearly state in the Introduction how their method compares in some markedly new and improved way to previous published related methods. Analytical performance characteristics of new methods including sensitivity, tested limits of detection or quantification, accuracy, precision, and specificity should be provided. Manuscripts which describe a straightforward extension of a known analytical method or an application to a previously analyzed and/or uncomplicated sample matrix will not normally be reviewed favorably. Manuscripts in which mass spectrometry is the dominant analytical method and chromatography is of marked secondary importance may be declined.
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