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首页> 外文期刊>Reactive & Functional Polymers >Effect of heparin coating on epichlorohydrin cross-linked chitosan microspheres on the adsorption of copper (II) ions
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Effect of heparin coating on epichlorohydrin cross-linked chitosan microspheres on the adsorption of copper (II) ions

机译:肝素涂层对环氧氯丙烷交联的壳聚糖微球吸附铜离子的影响

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Epichlorohydrin cross-linked chitosan microspheres (CS) and chitosan-heparin polyelectrolyte complex microspheres (CSH) were used in the adsorption of copper (II) ions in aqueous solution. The chitosan microspheres were prepared by the phase inversion method. The use of a cross-linking agent improved the resistance to acidic medium. Polyelectrolyte complex microspheres were prepared by impregnating heparin in cross-linked chitosan microspheres. The microspheres were characterized by IR, TGA and DSC. A study on the effect of the pH on the adsorption of copper (II) ions showed that the optimum pH for both CS and CSH microspheres was 6.0. From a kinetic evaluation, it could be established that the adsorption equilibrium was achieved after 8 h for CS and 25 h for CSH microspheres. The adsorption isotherms were interpreted using Langmuir and Freundlich mathematical models. The results revealed that experimental data of CS was best adjusted by Langmuir model, with maximum capacity of surface saturation equal to 39.31 mg g~(-1). On the other hand, Langmuir and Freundlich models provided a good fit for adsorption by CSH and the adsorption capacity was 81.04 mg g~(-1). The interactions between copper (II) ions and both CS and CSH were confirmed by electron paramagnetic resonance spectroscopy, which revealed the formation of a square-planar complex with tetrahedral distortion on the surface of the adsorbents.
机译:表氯醇交联的壳聚糖微球(CS)和壳聚糖-肝素聚电解质复合物微球(CSH)用于吸附水溶液中的铜(II)离子。通过相转化法制备壳聚糖微球。交联剂的使用改善了对酸性介质的抗性。通过在交联的壳聚糖微球中浸渍肝素来制备聚电解质复合物微球。通过IR,TGA和DSC表征微球。 pH值对铜离子的吸附作用的研究表明,CS和CSH微球的最佳pH值均为6.0。从动力学评估可以确定,CS的微球在8小时后和CSH的微球在25小时后达到了吸附平衡。使用Langmuir和Freundlich数学模型解释了吸附等温线。结果表明,Langmuir模型对CS的实验数据进行了最佳调整,最大表面饱和能力为39.31 mg g〜(-1)。另一方面,Langmuir和Freundlich模型提供了很好的CSH吸附能力,吸附容量为81.04 mg g〜(-1)。电子顺磁共振波谱证实了铜离子与CS和CSH的相互作用,揭示了在吸附剂表面形成了具有四面体形变的方形平面络合物。

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