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首页> 外文期刊>Biomacromolecules >Effect of Interfacial Permeability on Droplet Relaxation in Biopolymer-Based Water-in-Water Emulsions
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Effect of Interfacial Permeability on Droplet Relaxation in Biopolymer-Based Water-in-Water Emulsions

机译:界面渗透性对基于生物聚合物的水包水乳液中液滴松弛的影响

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摘要

In this paper,we show that for aqueous phase-separated biopolymer mixtures(water-in-water emulsions)both interfacial tension and permeability of the interface are important for the relaxation process of deformed droplets.We give an expression for the characteristic relaxation time that contains both contributions.With this description,the interfacial tension and the permeability can be deduced from cessation-of-flow experiments.The results show that for samples that are very close to the critical point the interfacial tension,calculated without taking into account the permeability,are overestimated significantly.For samples close to the critical point,the permeability has to be taken into account in the description for the relaxation time to get a reliable estimation of the interfacial tension.Our experiments show that for these systems the effective permeability is inversely proportional to the interfacial tension,lambda_(eff)(propor.to)1/gamma,and proportional to the square of the interfacial thickness,lambda_(eff)(propor.to)zeta~2.We find that the permeability is related to an effective diffusion coefficient as D_(eff)(propor.to)lambda_(gamma_eff)From this relation,we find that the diffusion coefficient is equal to 0.9 centre dot10~(-9)m~2/s,which is close to the self-diffusion coefficient of water;D_w~0 = 2.3 centre dot 10~(-9)m~2/s.This indicates that only water diffuses through the interface,and the diffusion coefficient is independent of the composition of the system for the concentration regime that is used.
机译:本文表明,对于水相分离的生物聚合物混合物(水包水乳液)而言,界面张力和界面渗透性对于变形液滴的松弛过程都很重要。包含这两个贡献。通过这种描述,可以从停止流实验中推导出界面张力和渗透率。结果表明,对于非常接近临界点的样品,在不考虑渗透率的情况下计算界面张力对于接近临界点的样品,弛豫时间必须在描述中考虑渗透率,才能可靠地估算界面张力。我们的实验表明,对于这些系统,有效渗透率是相反的与界面张力成正比,λ_(eff)(正比)1 /伽玛,与入射角的平方成正比界面厚度,lambda_(eff)(约)zeta〜2。我们发现渗透率与有效扩散系数D_(eff)(propor.to)lambda_(gamma_eff)有关。扩散系数等于0.9中心点10〜(-9)m〜2 / s,D_w〜0 = 2.3中心点10〜(-9)m〜2 / s。这表明只有水通过界面扩散,并且扩散系数与所使用的浓度方案的系统组成无关。

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