首页> 外文期刊>Advanced Powder Technology: The internation Journal of the Society of Powder Technology, Japan >Mapping electrospray modes and droplet size distributions for chitosan solutions in unentangled and entangled concentration regimes
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Mapping electrospray modes and droplet size distributions for chitosan solutions in unentangled and entangled concentration regimes

机译:在未受触控和纠缠的集中制度中映射电涂层模式和液滴尺寸分布

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摘要

Chitosan is a natural polymer that exists as a polyelectrolyte in acidic aqueous solutions. The solution viscosity strongly depends on the polymer’s molecular weight and concentration in the solution, and the solution pH. Microparticle production by electrospraying is of significant interest in the drug delivery applications of this biocompatible polymer. We report herein a study aimed at empirical understanding of the influence of electrospray process parameters on the size distribution of microdroplets of chitosan solutions with different molecular weights and concentrations. How the nature of interchain interactions in the solution affects the electrospray mode, was studied for different applied voltages,V, over a wide range of solution flow rates,Q. Stable cone-jets were observed only for solutions in the unentangled regime. Unlike solutions of non-polymeric electrolytes of comparable viscosities, the chitosan droplet size distribution generally showed a strong dependence not only onQbut also onVand the solution viscosity. Carrying out the electrospraying process at a higher voltage in the stable cone-jet mode resulted in smaller and more narrowly dispersed droplets. For the droplets produced in this mode,We~Re1.79, whereWeandReare the droplet Weber and Reynolds numbers, respectively. The order of dependence of the Sauter mean droplet diameter onQwas found to be 0.26. Diameters of droplets produced in (or close to) the precession mode exhibited a significantly weaker dependence onQ. For a given wt% concentration in solution, a polymer of lower molecular weight resulted in a lower droplet size polydispersity index.
机译:壳聚糖是一种天然聚合物,其作为酸性水溶液中的聚电解质存在。溶液粘度强烈取决于聚合物的分子量和溶液中的浓度,溶液pH。通过电喷雾的微粒产生对该生物相容性聚合物的药物递送应用具有重要兴趣。我们在本文中报告了一项关于实证理解电喷雾过程参数对壳聚糖溶液尺寸分布的实证,具有不同的分子量和浓度。对于不同施加的电压,v在宽范围的溶液流速下,如何研究溶液中的间隔相互作用的性质如何影响电喷雾模式。仅针对未置控的制度的解决方案观察到稳定的锥形喷射。与相当粘度的非聚合物电解质的溶液不同,壳聚糖液滴尺寸分布通常均显示出强烈的依赖性​​,不仅on QET也onvand粘度。在稳定锥形喷射模式下的较高电压下执行电喷雾过程导致更小且更窄的液滴。对于在此模式下生产的液滴,我们〜re1.79,分别在哪里分别为液滴韦伯和雷诺数。燃烧器依赖性的依赖顺序,液滴直径Onqwas发现为0.26。 (或接近)产生的液滴直径表现出显着较弱的依赖性ONQ。对于溶液中给定的WT%浓度,低分子量的聚合物导致较低的液滴尺寸多分散性指数。

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