天然高分子与热敏性高分子在二氧化硅微分散絮凝中的结合

Á. Licea-Claveríe, S. Schwarz, Christine Steinbach, Sandra Montserrat Ponce-Vargas, S. Genest
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引用次数: 13

摘要

报道了一种更快、更好地絮凝固液分离的新策略:将天然聚电解质壳聚糖(CH2500)与生物相容性热敏聚合物聚n -乙烯基己内酰胺(PNVCL)结合使用。二氧化硅分散体(Aerosil OX50)作为模型,通过分析离心机、激光衍射和浊度法研究进行评估。结果表明,加入PNVCL后,沉积物沉降速度提高了一倍,在45℃时,沉积物密度比仅使用CH2500时提高了33%。这是由于PNVCL的温度敏感行为,在高于其最低温度(32-34℃)的温度下相分离排出水,导致絮凝体的压实。通过使用这种策略,沉积物更加致密,含水量更少,并且含有非常少量的可生物降解CH2500和生物相容性PNVCL。
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Combination of Natural and Thermosensitive Polymers in Flocculation of Fine Silica Dispersions
A novel strategy for faster and better flocculation in solid-liquid separation processes is reported: the use of the natural polyelectrolyte chitosan (CH2500) in combination with the biocompatible thermosensitive polymer poly(N-vinylcaprolactam) (PNVCL). Silica dispersions (Aerosil OX50) were used as model and evaluated by means of analytical centrifuge, laser diffraction, and turbidimetry studies. Results show that the sedimentation velocity is doubled by addition of PNVCL and that at 45°C the density of the sediment is 33% higher, as compared to the use of CH2500 only. This results from the temperature sensitive behavior of PNVCL that phase-separate expelling water at temperatures higher than its LCST (32–34°C) leading to compaction of the flocs. By using this strategy the sediment is more compact, contains less water, and contains a very small amount of biodegradable CH2500 and biocompatible PNVCL.
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