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Rheological Behaviors in the Regimes from Dilute to Concentrated in Cellulose Solutions Dissolved at Low Temperature

机译:从稀溶液到浓溶液在低温下溶解的纤维素溶液中的流变行为

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Cellulose was dissolved rapidly in 9.5 wt.-% NaOH/4.5 wt.-% thiourea aqueous solution precooled to -5 degrees C to prepare cellulose solution with different concentrations. The rheological properties of the cellulose solutions in wide concentration regimes from dilute (0.008 wt.-%) to concentrated (4.0 wt.-%) at 25 degrees C were investigated. On the basis of data from the steady-shear flow test, the critical overlap (c*), the entanglement (C-e) and the gel (c(g)) concentrations of the cellulose solution at 25 degrees C were determined, respectively, to be 0.10 wt.-%, 0.53 wt.-% and 2.50 wt.-%, in accordance with the results of storage modulus (G) versus c by dynamic test. Moreover, the Cox-Merz deviation at relatively low concentrations was in good agreement with the micro-gel particles in dilute regime. As the cellulose concentration increased, a homogeneous 3-dimensional network formed in the cellulose solution in the concentrated regime, and further increasing of the concentration led to micro-phase separation as determined by the time-temperature superposition (tTS). So far, this complex cellulose solution has been successfully described by the concentration regime theory for the first time, and the relatively molecular morphologies in each regime have been determined, providing useful information for the applications of the cellulose solution systems.
机译:将纤维素快速溶解在预冷至-5℃的9.5重量%的NaOH / 4.5重量%的硫脲水溶液中以制备具有不同浓度的纤维素溶液。研究了纤维素溶液在25摄氏度下从稀释(0.008 wt .-%)到浓缩(4.0 wt .-%)的宽浓度方案的流变特性。根据稳态剪切流动试验的数据,分别确定纤维素溶液在25摄氏度时的临界重叠(c *),缠结(Ce)和凝胶(c(g))浓度,以得出根据通过动态测试的储能模量(G)相对于c的结果,其为0.10重量%,0.53重量%和2.50重量%。此外,在较低浓度下的Cox-Merz偏差与稀释状态下的微凝胶颗粒非常吻合。随着纤维素浓度的增加,纤维素溶液在浓缩状态下会形成均匀的三维网络,浓度的进一步增加导致微相分离,这是由时间-温度叠加(tTS)确定的。迄今为止,这种复杂的纤维素溶液已经首次通过浓度方案理论成功地进行了描述,并且已经确定了每种方案中的相对分子形态,为纤维素溶液系统的应用提供了有用的信息。

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