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首页> 外文期刊>Polymer: The International Journal for the Science and Technology of Polymers >Gelation behaviors of cellulose solution dissolved in aqueous NaOH/thiourea at low temperature
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Gelation behaviors of cellulose solution dissolved in aqueous NaOH/thiourea at low temperature

机译:低温下溶于NaOH /硫脲水溶液的纤维素溶液的胶凝行为

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Cellulose was dissolved rapidly in 9.5 wt% NaOH/4.5 wt% thiourea aqueous solution pre-cooled to —5 °C, as a result of the formation of an inclusion complex (IC) associated with cellulose, NaOH and thiourea, which could bring cellulose to the aqueous system. To clarify the Theological behaviors of the system dissolved at low temperature, this cellulose solution was investigated by dynamic viscoelastic measurement. The shear storage modulus (G') and loss modulus (G") as a function of the angular frequency (ω), concentration (c), temperature (T) and weight-average molecular weight (M_w) were analyzed and discussed. The results revealed that gels could form in the cellulose solution at either high temperature or low temperature, or for longer time. Interestingly, 4 wt% cellulose solution having cellulose M_w of 12.0 x 10~4 remained at liquid state for longer time (12 days) at the temperature ranging from 0 to 5 °C. The gels already formed at elevated temperature were irreversible, i.e., after cooling to lower temperature including the temperature of cellulose dissolution (—5 °C), they could not be dissolved to become liquid. The Arrhenius analysis of the temperature dependence of viscosity in the cellulose solution indicated that a high apparent activation energy (E_a) occurred at 0 to —5 °C, suggesting the relatively stable IC structure. However, the viscosity of the cellulose solution increased slowly with an increase in the temperature at 0—40 °C, leading to the negative E_a values. The results suggested that the cellulose solution in NaOH/thiourea system is complex to differ from normal polymer systems.
机译:由于形成了与纤维素,NaOH和硫脲缔合的包合配合物(IC),可将纤维素迅速溶于预冷至-5°C的9.5 wt%NaOH / 4.5 wt%硫脲水溶液中到水系统。为了阐明在低温下溶解的系统的神学行为,通过动态粘弹性测量研究了该纤维素溶液。分析和讨论了剪切储能模量(G')和损耗模量(G“)与角频率(ω),浓度(c),温度(T)和重均分子量(M_w)的关系。结果表明,在高温或低温或更长的时间内,纤维素溶液中都可能形成凝胶,有趣的是,纤维素M_w为12.0 x 10〜4的4 wt%纤维素溶液在液态下保持更长的时间(12天)在0至5°C的温度范围内已经形成的凝胶是不可逆的,即,冷却至包括纤维素溶解温度(-5°C)在内的较低温度后,它们不会溶解成为液体。 Arrhenius分析纤维素溶液中粘度的温度依赖性表明,表观活化能(E_a)在0至-5°C时出现,表明IC结构相对稳定,但纤维素溶液的粘度增加s随温度升高0-40°C最低,导致E_a值为负。结果表明,NaOH /硫脲体系中的纤维素溶液很复杂,不同于常规的聚合物体系。

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