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首页> 外文期刊>Journal of Polymers and the Environment >Preparation of Polymer Microparticles Through Non-aqueous Suspension Polycondensations: Part Ⅳ-Effect of the Continuous Phase on the Characteristics of Final Poly(Butylene Succinate) Particles
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Preparation of Polymer Microparticles Through Non-aqueous Suspension Polycondensations: Part Ⅳ-Effect of the Continuous Phase on the Characteristics of Final Poly(Butylene Succinate) Particles

机译:通过非水悬浮缩聚的聚合物微粒的制备:部分α-效应于最终聚(丁二酸酯)颗粒的特性

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摘要

Suspension polycondensations used to manufacture poly(butylene succinate) (PBS) can be regarded as a type of inverse heterogeneous polymerization technique, as the monomer phase is formed by polar reacting compounds (1,4-butanediol and succinic acid) that are partially soluble in water and require the use of a nonpolar continuous phase in order to form stable suspended droplets. In this context, the main objective of the present study was to investigate the influence of the continuous phase on the kinetic behavior of suspension PBS reactions and the morphological aspects of PBS particles produced through suspension polycondensations. Particularly, renewable soybean oil was used here for the first time as the continuous phase for preparation of PBS microparticles and results were compared to data obtained when paraffin was used as the continuous phase. It is shown that soybean oil can be used successfully as the continuous phase of polycondensations, allowing for production of microparticles with regular spherical morphology and leading to sustainablegreenerprocesses, as the constituents of both the continuous and discontinuous phases can be obtained from renewable materials.
机译:用于制造聚(丁二烯酸酯)(PBS)的悬浮胶缩聚可以被认为是一种反相聚合技术,因为单体相通过部分可溶性的极性反应化合物(1,4-丁二醇和琥珀酸)形成水并要求使用非极性连续相,以形成稳定的悬浮液滴。在这种情况下,本研究的主要目的是探讨连续相对悬浮PBS反应动力学行为的影响以及通过悬浮缩聚产生的PBS颗粒的形态学方面。特别是,在此首次使用可再生大豆油作为将PBS微粒的连续相和结果进行比较,与链烷烃作为连续相获得的数据进行比较。结果表明,大豆油可以成功地用作缩聚的连续相,从而允许具有规则球形形态的微粒并导致可持续的可持续渗碳过程,因为可以从可再生材料中获得连续和不连续相的组成部分。

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