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Aggregation mechanisms of latex of different particle sizes in a controlled shear environment

机译:受控剪切环境下不同粒径胶乳的聚集机理

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摘要

Latex particles with diameters of 60, 380, and 810 nm, respectively, were sheared in a controlled shear environment of circular couette flow after being destabilized by the addition of MgCl2. The evolution of aggregate size and structure, as well as a measure of aggregate mass, was monitored with use of a particle size analyzer (Coulter LS230) operating on the principle of small-angle light scattering. The aggregates of different primary particle sizes displayed distinct behavior in attaining steady state under similar shear conditions, notably at low to moderate shear rates (G less than or equal to 100 s(-1)). Restructuring of aggregate structure was favored over fragmentation for aggregates composed of 60- and 380-nm particles, whereas fragmentation and reaggregation were the main mechanism in governing the final floe size and structure for aggregates made up from 810-nm particles. Also presented in this study is a dimensional analysis that yields a correlation between a floe factor (consisting of floc size and structure) and an aggregation factor, which encompasses the fluid properties, applied shear, number concentration and size of primary particles, as well as the estimated bonding force between particles. This relationship provides a better appreciation of other significant aggregation parameters. apart from the shear level and aggregate size, which are often ignored in the more conventional manners of presenting data from flocculation processes. [References: 47]
机译:通过添加MgCl2使溶液不稳定后,分别将直径分别为60、380和810 nm的乳胶颗粒在圆形couette流的受控剪切环境中剪切。使用粒径分析仪(Coulter LS230),根据小角度光散射原理,监测骨料尺寸和结构的演变以及骨料质量的测量。不同初级粒径的聚集体在相似的剪切条件下达到稳态时表现出不同的行为,特别是在低至中等剪切速率(G小于或等于100 s(-1))下。对于由60nm和380nm颗粒组成的聚集体,聚集体结构的重组优于破碎,而破碎和重新聚集是控制由810nm颗粒组成的聚集体的最终絮凝尺寸和结构的主要机制。在这项研究中还提出了一种尺寸分析,该分析在絮凝因子(由絮凝物的尺寸和结构组成)和聚集因子之间产生了相关性,其中包括流体性质,施加的剪切力,初级颗粒的数量浓度和尺寸以及粒子之间的估计结合力。这种关系可以更好地理解其他重要的聚合参数。除了剪切水平和集料尺寸外,在呈现絮凝过程数据的更常规方式中通常会忽略它们。 [参考:47]

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