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从水溶液中增强葛根素在新型亲水和极性改性后交联树脂上的吸附。

Enhanced adsorption of puerarin onto a novel hydrophilic and polar modified post-crosslinked resin from aqueous solution.

机构信息

School of Life Sciences, Tsinghua University, Beijing 100084, PR China.

出版信息

J Colloid Interface Sci. 2012 Nov 1;385(1):166-73. doi: 10.1016/j.jcis.2012.07.006. Epub 2012 Jul 20.

Abstract

A novel of hydrophilic and polar N-vinylpyrrolidone modified post-crosslinked resin was synthesized and the adsorption behaviors toward puerarin from aqueous solution were investigated. The post-crosslinked adsorbent PNVP-DVBpc was prepared by Friedel-Crafts reaction of residual double bonds without external crosslinking agent. The specific surface area of precursor PNVP-DVB increased obviously after post-crosslinking modification. The synthesized adsorbents were characterized by BET surface area, Fourier transform infrared (FTIR), and scanning electron microscopy (SEM). The adsorption behaviors of puerarin from aqueous solution onto precursor PNVP-DVB and post-crosslinked adsorbent PNVP-DVBpc were thoroughly researched. Commercial polymeric adsorbents Amberlite XAD-4 and AB-8 were chosen as the comparison. Among the four media, PNVP-DVBpc presented the largest adsorption capacity of puerarin, which resulted from the synergistic effect of high specific surface area and polar groups (amide groups) onto the adsorbent matrix. Experimental results showed that equilibrium isotherms could be fitted by Freundlich model and the kinetic data could be characterized by pseudo-second order model reasonably. Column adsorption experiments indicated that the puerarin could be completely desorbed by 4.0 BV industrial alcohol. Continuous column adsorption-regeneration cycles demonstrated the PNVP-DVBpc without any significant adsorption capacity loss during operation.

摘要

合成了一种新型亲水性和强极性 N-乙烯基吡咯烷酮改性后交联树脂,并研究了其对水溶液中葛根素的吸附行为。通过无外加交联剂的 Friedel-Crafts 反应制备了后交联吸附剂 PNVP-DVBpc,其比表面积明显增加。通过 BET 表面积、傅里叶变换红外(FTIR)和扫描电子显微镜(SEM)对合成的吸附剂进行了表征。详细研究了水溶液中葛根素在 PNVP-DVB 前体和后交联吸附剂 PNVP-DVBpc 上的吸附行为。选择商用聚合物吸附剂 Amberlite XAD-4 和 AB-8 作为比较。在这四种介质中,PNVP-DVBpc 对葛根素的吸附容量最大,这是由于高比表面积和极性基团(酰胺基团)与吸附剂基质的协同作用所致。实验结果表明,平衡等温线可以用 Freundlich 模型拟合,动力学数据可以用准二级模型合理地描述。柱吸附实验表明,葛根素可以用 4.0BV 的工业酒精完全洗脱。连续柱吸附-再生循环表明,PNVP-DVBpc 在运行过程中没有任何明显的吸附容量损失。

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