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Viscosity of erythritol and erythritol-water particles as a function of water activity: new results and an intercomparison of techniques for measuring the viscosity of particles

机译:作为水活动的赤藓糖醇和赤藓糖醇 - 水颗粒的粘度:新的结果和用于测量粒子粘度的技术的相互熟练

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摘要

A previous study reported an uncertainty of up to 3 orders of magnitude for the viscosity of erythritol (1,2,3,4-butanetetrol)-water particles. To help reduce the uncertainty in the viscosity of these particles, we measured the diffusion coefficient of a large organic dye (rhodamine B isothiocyanate-dextran, average molecular weight similar to 70000 g mol(-1)) in an erythritol-water matrix as a function of water activity using rectangular-area fluorescence recovery after photobleaching (rFRAP). The diffusion coefficients were then converted to viscosities of erythritol-water particles using the Stokes-Einstein equation. In addition, we carried out new viscosity measurements of erythritol-water particles using aerosol optical tweezers. Based on the new experimental results and viscosities reported in the literature, we conclude the following: (1) the viscosity of pure erythritol is 184(-73)(+122) Pa s (2 standard deviations); (2) the addition of a hydroxyl (OH) functional group to a linear C-4 carbon backbone increases the viscosity on average by a factor of 27(-5)(+6) (2 standard deviations); and (3) the increase in viscosity from the addition of one OH functional group to a linear C-4 carbon backbone is not a strong function of the number of OH functional groups already present in the molecule up to the addition of three OH functional groups, but the increase in viscosity may be larger when the linear C-4 carbon backbone already contains three OH functional groups. These results should help improve the understanding of the viscosity of secondary organic aerosol particles in the atmosphere. In addition, these results show that at water activity 0.4 the rFRAP technique, aerosol optical tweezers technique, and bead-mobility technique give results in reasonable agreement if the uncertainties in the measurements are considered. At water activity 0.4, the mean viscosity values determined by the optical tweezers technique were higher than those determined by the bead-mobility and rFRAP techniques by 1-2 orders of magnitude. Nevertheless, the disagreement in viscosity measured using multiple techniques reported in this paper is smaller than reported previously.
机译:先前的研究报告了赤藓糖醇(1,2,3,4-丁酰胺)-水颗粒的粘度高达3个级别的不确定性。为了帮助减少这些颗粒的粘度的不确定性,测量赤糖醇 - 水基质中的大型有机染料的扩散系数(罗丹明B异硫氰酸酯 - 葡聚糖,平均分子量,与70000g mol(-1))中的作为a使用光漂白(RFRAP)后使用矩形区域荧光恢复的水活性的功能。然后使用斯托克斯-Einstein方程转化扩散系数转化为红细胞水颗粒的粘度。此外,我们使用气溶胶光学镊子进行了新的赤藓糖水颗粒的粘度测量。基于文献中报道的新实验结果和粘度,我们得出结论:(1)纯赤藓糖醇的粘度为184(-73)(+ 122)PA S(2标准偏差); (2)将羟基(OH)官能团加入直链C-4碳骨架,平均增加粘度27(-5)(+ 6)(2个标准偏差); (3)从添加一个OH官能团的粘度增加到线性C-4碳骨架的升高不是已经在分子中存在的OH官能团的数量的强函数,从而加入三个OH官能团,但是当线性C-4碳骨架已经含有三个OH官能团时,粘度的增加可能更大。这些结果应该有助于改善大气中次级有机气溶胶颗粒粘度的理解。此外,这些结果表明,在水中活性& 0.4 RFRAP技术,气溶胶光学镊子技术和珠子移动性技术如果考虑测量中的不确定性,则可达成合理的协议。在水中活性& 0.4,光学镊子技术确定的平均粘度值高于由珠迁移率和RFFAP技术决定的粘度值,其数量级1-2。然而,使用本文报道的多种技术测量的粘度的分歧小于先前的报道。

著录项

  • 来源
    《Atmospheric Measurement Techniques》 |2018年第8期|共14页
  • 作者单位

    City Univ Hong Kong Sch Energy &

    Environm Kowloon Hong Kong Peoples R China;

    Univ British Columbia Dept Chem 2036 Main Mall Vancouver BC V6T 1Z1 Canada;

    Univ British Columbia Dept Chem 2036 Main Mall Vancouver BC V6T 1Z1 Canada;

    Univ Bristol Sch Chem Bristol BS8 1TS Avon England;

    Univ Bristol Sch Chem Bristol BS8 1TS Avon England;

    City Univ Hong Kong Sch Energy &

    Environm Kowloon Hong Kong Peoples R China;

    Univ British Columbia Dept Chem 2036 Main Mall Vancouver BC V6T 1Z1 Canada;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 计量学;
  • 关键词

  • 入库时间 2022-08-20 01:30:20

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