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Alkaline hydrolysis and flocculation properties of acrylamide-modified cellulose polyelectrolytes

机译:丙烯酰胺改性的纤维素聚电解质的碱性水解和絮凝性能

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By controlling the saponification hydrolysis of acylamino groups to carboxyl groups in alkaline medium, a series of acrylamide-modified cellulose polyelectrolyte (AMC) samples with various degree of hydrolysis (DH) were successfully obtained. The structure and solution properties of AMC were characterized by using elemental analysis, FT-IR, ~(13)C NMR, viscometer, and zeta potential measurement. The results revealed that DH value of AMC samples could be controlled by adjusting the hydrolysis reaction time. The carboxyl group content and intrinsic viscosity ([η]) value increased with increasing DH value. Moreover, ferric hydroxide (Fe(OH)3) colloid was selected as a model to evaluate the flocculation properties of AMC. The results showed that AMC was an effective flocculant to Fe(OH)3 colloid, and the Fe(OH)3 colloid was almost removed (up to nearly 100%). Therefore, acrylamide-modified celluloses are applicable as novel flocculants with high flocculation efficiency, non-toxicity as well as biodegradability.
机译:通过控制碱性介质中酰基氨基的皂化水解为羧基,成功获得了一系列具有不同水解度(DH)的丙烯酰胺改性纤维素聚电解质(AMC)样品。通过元素分析,FT-IR,〜(13)C NMR,粘度计和Zeta电位测量对AMC的结构和溶液性质进行表征。结果表明,通过调节水解反应时间可以控制AMC样品的DH值。羧基含量和特性粘度([η])值随DH值的增加而增加。此外,选择氢氧化铁(Fe(OH)3)胶体作为模型来评估AMC的絮凝性能。结果表明,AMC对Fe(OH)3胶体是一种有效的絮凝剂,Fe(OH)3胶体几乎被去除(高达近100%)。因此,丙烯酰胺改性的纤维素可用作具有高絮凝效率,无毒和可生物降解性的新型絮凝剂。

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