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Preparation of the monodispersed carboxyl-functionalized polymer microspheres with disproportionated rosin moiety and adsorption of methylene blue

机译:用不成比例的松香部分制备单分散的羧基官能化聚合物微球和亚甲基蓝的吸附

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摘要

Carboxyl-functionalized polymer microspheres with a rosin moiety were prepared through dispersion polymerization using styrene, disproportionated rosin ester, and methylacrylic acid as raw materials. The effects of dispersion medium (ethanol/water) ratio, monomer mass proportion and initiator concentration on the polymer microspheres were studied. Scanning electron microscopy, laser particle size analysis, thermogravimetric analysis and Fourier transform infrared spectroscopy were used to characterize the microspheres, and their carboxyl contents were determined by the conductance titration method. The adsorption of methylene blue of the microspheres was also investigated. The results showed that rosin-based carboxyl-functionalized polymer microspheres were successfully synthesized. The microspheres exhibited smooth, spherical shapes with good monodispersity and high thermal stability. The carboxyl content of the microspheres prepared under optimum conditions was 0.089 mmol.g(-1), with the average particle size approximately 950 nm. With increasing carboxyl contents of the polymer micro-spheres, their methylene blue adsorption capacities increased. The maximum methylene blue adsorption capacity of the microspheres was 59.55 mg.g(-1) in the highest carboxyl content.
机译:通过使用苯乙烯,不成比例的松香酯和甲基丙烯酸作为原料,通过分散聚合制备具有松香部分的羧基官能化聚合物微球。研究了分散介质(乙醇/水)比,单体质量比例和引发剂浓度对聚合物微球的影响。扫描电子显微镜,激光粒度分析,热重分析和傅里叶变换红外光谱谱表征微球,并通过电导滴定法测定它们的羧基含量。还研究了微球的亚甲基蓝的吸附。结果表明,基于松香基羧基官能化聚合物微球被成功地合成。微球表现出光滑,球形的形状,具有良好的单一性和高热稳定性。在最佳条件下制备的微球的羧基含量为0.089mmol.g(-1),平均粒度约为950nm。随着聚合物微球的羧基含量的增加,它们的亚甲基蓝吸附能力增加。微球的最大亚甲基蓝色吸附容量在最高羧基含量中为59.55mg.g(-1)。

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