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Application of cluster analysis and optimization to determine the synthesis conditions of macroreticular poly(styrene-co-divinylbenzene) microparticles with enhanced structural and adsorption properties

机译:聚类分析和优化在确定结构和吸附性能增强的大网状聚(苯乙烯-共二乙烯基苯)微粒的合成条件中的应用

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A suitable porous structure and high mechanical strength are extremely valuable properties in adsorbent polymeric microparticles. To achieve this objective, macroreticular poly(styrene-co-divinylbenzene) microparticles with high amounts of cross-linker and diverse proportions of porogen agent were synthesized according to the methodology of the factorial design of experiments. The structural characteristics of the microparticles and their adsorption properties of a model macromolecule (bovine serum albumin (BSA)) were studied. From the results obtained, as well as those observed in previous works [C. Garcia-Diego, J. Cuellar, Synthesis of macroporous poly(styrene-co-divinylbenzene) microparticles using re-heptane as the porogen: quantitative effects of the DVB concentration and the monomeric fraction on their structural characteristics, Ind. Eng. Chem. Res. 44 (22) (2005) 8237-8247; C. Garcia-Diego, J. Cuellar, Determination of the quantitative relationships between the synthesis conditions of macroporous poly(styrene-co-di vinylbenzene) microparticles and the characteristics of their behaviour as adsorbents using bovine serum albumin as a model macromolecule, Ind. Eng. Chem. Res. 45 (10) (2006) 3624-3632], it was decided to apply a cluster analysis to all the adsorbents with a view to determining the range of synthesis conditions that would allow the synthesis of microparticles with high mechanical strength and a porous structure appropriate for absorbing the BSA macromolecule. This range was found to be 0.50-0.60 for the monomeric fraction and 25.0-55.0% for the divinylbenzene concentration in the monomeric mixture. Additionally, through use of the desirability function, the results revealed that the adsorbent with the optimum adsorption characteristics, as regards both adsorption equilibrium and adsorption kinetics, should be synthesized with a DVB concentration of 42.5% and a monomeric fraction of 0.50.
机译:合适的多孔结构和高机械强度是吸附性聚合物微粒中极有价值的性能。为了达到这个目的,根据实验设计的方法,合成了具有大量交联剂和不同比例致孔剂的大网状聚(苯乙烯-共二乙烯基苯)微粒。研究了模型大分子(牛血清白蛋白(BSA))的微粒结构特征及其吸附性能。从获得的结果以及以前的工作中观察到的结果[C. Garcia-Diego,J. Cuellar,使用庚烷作为致孔剂合成大孔聚(苯乙烯-共二乙烯基苯)微粒:DVB浓度和单体分数对其结构特征的定量影响,Ind。Eng。化学Res。 44(22)(2005)8237-8247; C.Garcia-Diego,J.Cuellar,使用牛血清白蛋白作为模型大分子,确定大孔聚(苯乙烯-共-二乙烯基苯)微粒的合成条件与其作为吸附剂的行为特征之间的定量关系。 。化学Res。 45(10)(2006)3624-3632],决定对所有吸附剂进行聚类分析,以确定可合成具有高机械强度和适当多孔结构的微粒的合成条件范围用于吸收BSA高分子。发现该范围对于单体级分是0.50-0.60,对于单体混合物中二乙烯基苯浓度是25.0-55.0%。此外,通过使用所需函数,结果表明,在吸附平衡和吸附动力学方面,具有最佳吸附特性的吸附剂应以DVB浓度为42.5%和单体分数为0.50的方式合成。

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