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Temperature-dependent interactions between hydrophobically modified ethyl(hydroxyethyl)cellulose and methyl nanocellulose

机译:疏水改性乙基(羟乙基)纤维素和甲基纳米纤维素之间的温度依赖性相互作用

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The temperature-dependent association between methyl nanocellulose and hydrophobically modified ethyl(hydroxyethyl)cellulose (EHEC) was determined. Methyl nanocellulose was mixed under different concentrations with EHEC in aqueous media. The hydrophobic association, cloud point and temperature-dependent flocculation were studied using turbidity, rheometry and laser diffraction analysis. The phase separation of EHEC samples containing different amounts of methyl nanocellulose in 1.0wt% solution was measured between 20 and 70 degrees C, showing that the cloud point of the solutions increased with increasing nanocellulose content. An increase in the low shear viscosity and gelation behavior of the mixture with the highest methyl nanocellulose content in conjunction with changes in cloud point indicated that the hydrophobic nanocellulose strengthened the hydrophobic association and the gel network. A bimodal particle size distribution was observed for both the pure EHEC and hydrophobically modified nanocellulose reference solutions, whereas the mixture had a trimodal particle size distribution when being diluted. The colloidal stability and re-structuring mechanism of the dilute methyl nanocellulose suspension after shear and the role of birefringence are discussed.
机译:测定甲基纳米纤维素和疏水性改性乙基(羟乙基)纤维素(EHEC)之间的温度依赖性关联。在水性介质中与EHEC在不同浓度下混合甲基纳米纤维素。利用浊度,流变测压和激光衍射分析研究了疏水性关联,浊点和温度依赖性絮凝。在20wt%溶液中含有不同量的甲基纳米纤维素的EHEC样品的相分离在20至70℃之间测量,显示溶液的浊点随着纳米纤维素含量的增加而增加。与最高甲基纳米纤维素含量结合浊点的变化的低剪切粘度和混合物的凝胶化行为的增加表明疏水纳米纤维素强化了疏水性关联和凝胶网络。对于纯EHEC和疏水性改性的纳米纤维素参考溶液,观察到双峰粒度分布,而当稀释时,混合物在稀释时具有三码粒度分布。讨论了剪切后稀甲基纳米纤维素悬浮液的胶体稳定性和重新构建机理,并讨论了双折射的作用。

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