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首页> 外文期刊>Biomacromolecules >Inhibitory Effects of Multicomponent, Phosphonate-Grafted, Zwitterionic Chitosan Biomacromolecules on Silicic Acid Condensation
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Inhibitory Effects of Multicomponent, Phosphonate-Grafted, Zwitterionic Chitosan Biomacromolecules on Silicic Acid Condensation

机译:多组分膦酸酯接枝的两性离子壳聚糖生物大分子对硅酸缩合的抑制作用

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摘要

This article reports the inhibitory effects of phosphonated chitosan (PCH, synthesized from chitosan (CHS) by a Mannich-type reaction) on the in vitro silicic acid condensation. In particular, the ability of PCH to retard silicic acid condensation in aqueous supersaturated solutions at circumneutral pH is studied. Furthermore, the effect ot anionic carboxymethyl inulin (CMI) polyelectrolyte on the inhibitory activity of PCH is systematically studied. It was discovered that when PCH is added in dosages up to 150 ppm, it can inhibit silicic acid condensation, thereby maintaining soluble silicic acid up to 300 ppm (for 8 h, from a 500 ppm initial stock solution). Inc addition of CMI to working solutions that already contain PCH can further enhance the inhibitory action of PCH. A combination of 150 ppm PCH and 100 ppm CMI maintains 400 ppm soluble silicic acid for 8 h. PCH and CMI combinations also affect colloidal silica particle morphology.
机译:本文报道了磷酸化壳聚糖(PCH,通过曼尼希型反应由壳聚糖(CHS)合成)对体外硅酸缩合的抑制作用。尤其是,研究了在环境中性pH下PCH抑制过饱和水溶液中硅酸缩合的能力。此外,系统地研究了阴离子羧甲基菊粉(CMI)聚电解质对PCH抑制活性的影响。已经发现,当以高达150 ppm的剂量添加PCH时,它可以抑制硅酸的缩合,从而使可溶性硅酸保持高达300 ppm(从500 ppm的初始储备溶液开始保持8小时)。在已经包含PCH的工作溶液中添加CMI可以进一步增强PCH的抑制作用。 150 ppm PCH和100 ppm CMI的组合可保持400 ppm可溶性硅酸8小时。 PCH和CMI的组合也会影响硅胶颗粒的形态。

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