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Dispersion stability and aggregation behavior of TEMPO-oxidized cellulose nanofibrils in water as a function of salt addition

机译:TEMPO氧化纤维素纳米纤维在水中的分散稳定性和聚集行为,作为盐分添加的函数

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Dispersion stability of TEMPO-oxidized cellulose nanofibrils (TOCNs) in water was investigated through both experimental and theoretical analyses to elucidate the critical aggregation concentration of different salts. The 0.1 wt% TOCN/water dispersions with various NaCl concentrations were evaluated by measuring light transmittance, viscosity under steady-shear flow, and the weight fraction of TOCN that had aggregated. Homogeneous TOCN/ water dispersion turned to gel as the NaCl concentration increased. The TOCN dispersion maintained its homogeneous state up to 50 mMNaCl, but aggregated gel particles were formed at 100 mM NaCl. The mixture became separated into two phases (gel and supernatant) at ≥200 mM NaCl. Theoretical analysis using ξ-potentials of TOCN elements in the dispersions revealed that the aggregation behavior upon NaCl addition could be explained well in terms of the interaction potential energy between two cylindrical rods based on the Derjaguin–Landau–Verwey–Overbeek theory. The experiments were extended to analyze critical aggregation concentrations of MgCl_2 and CaCl_2 for the 0.1 wt% TOCN dispersion. In the case of divalent electrolytes, TOCN elements began to form aggregated gel particles at salt concentrations of 2–4 mM, corresponding to the critical aggregation concentration predicted by the empirical Schultz- Hardy rule.
机译:通过实验和理论分析研究了TEMPO氧化纤维素纳米纤维(TOCNs)在水中的分散稳定性,以阐明不同盐类的临界聚集浓度。通过测量透光率,稳定剪切流下的粘度以及已聚集的TOCN的重量分数,评估了具有各种NaCl浓度的0.1 wt%TOCN /水分散体。随着NaCl浓度的增加,均相的TOCN /水分散体变成凝胶。 TOCN分散液在高达50 mMNaCl的条件下仍保持其均匀状态,但在100 mM NaCl时会形成聚集的凝胶颗粒。在≥200 mM NaCl下,混合物分成两相(凝胶和上清液)。使用分散体中TOCN元素的ξ势进行的理论分析表明,基于Derjaguin–Landau–Verwey–Overbeek理论,添加NaCl后的聚集行为可以很好地解释为两个圆柱棒之间的相互作用势能。实验扩展到分析0.1 wt%TOCN分散液的MgCl_2和CaCl_2的临界聚集浓度。在二价电解质的情况下,TOCN元素在2–4 mM的盐浓度下开始形成聚集的凝胶颗粒,这对应于经验Schultz-Hardy规则预测的临界聚集浓度。

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