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聚乙烯吡咯烷酮的平衡吸附及其在热调节微胶囊合成过程中的作用。

Equilibrium adsorption of polyvinylpyrrolidone and its role on thermoregulating microcapsules synthesis process.

作者信息

Szczotok Anna M, Carmona Manuel, Kjøniksen Anna-Lena, Rodriguez Juan F

机构信息

Department of Chemical Engineering, Institute of Chemical and Environmental Technology, University of Castilla-La Mancha, Avda. De Camilo Jose Cela s/n, 13071 Ciudad Real, Spain.

Faculty of Engineering, Østfold University College, P.O. Box 700, 1757 Halden, Norway.

出版信息

Colloid Polym Sci. 2017;295(5):783-792. doi: 10.1007/s00396-017-4061-5. Epub 2017 Mar 11.

Abstract

The adsorption of polyvinylpyrrolidone (PVP) by the thermoregulating microcapsules has been studied. The mass ratio of PVP has been changed from 1 to 20, with respect to the lowest amount of PVP value (4.08 g). The results confirmed that a large amount of PVP was adsorbed by the polymeric shell. Experimental data were perfectly fitted by Langmuir model, obtaining at a confidence level of 95% values of 192.9 ± 0.4 g/kg and 0.18 ± 0.11 m/kg for the maximum adsorption capacity and the equilibrium constant, respectively. It was found that utilizing PVP, at a concentration of 5.03 wt% of the total mass provided optimum conditions for synthesizing thermoregulating microcapsules containing Rubitherm®RT27 from poly(styrene-divinylbenzene) (P(St-DVB)), with the best thermal and physical properties. Finally, the robustness of the process was checked at a large scale by using a reactor that maintains geometrical similarities with that used at laboratory scale. The thermal properties, the encapsulation efficiency, and the microcapsule yield were similar, but at pilot plant scale, narrower particle size distributions were obtained.

摘要

已经研究了热调节微胶囊对聚乙烯吡咯烷酮(PVP)的吸附作用。相对于PVP的最低量值(4.08克),PVP的质量比从1变化到20。结果证实,聚合物壳吸附了大量的PVP。实验数据与朗缪尔模型完美拟合,在95%的置信水平下,最大吸附容量和平衡常数的值分别为192.9±0.4克/千克和0.18±0.11米/千克。结果发现,以总质量的5.03重量%的浓度使用PVP为从聚(苯乙烯 - 二乙烯基苯)(P(St - DVB))合成含有Rubitherm®RT27的热调节微胶囊提供了最佳条件,具有最佳的热性能和物理性能。最后,通过使用与实验室规模使用的反应器保持几何相似性的反应器在大规模上检查了该过程的稳健性。热性能、包封效率和微胶囊产率相似,但在中试规模下,获得了更窄的粒度分布。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8de1/5395600/4ee2286b2399/396_2017_4061_Fig1_HTML.jpg

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