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Synthesis of amphoteric starch-based grafting flocculants for flocculation of both positively and negatively charged colloidal contaminants from water

机译:两性淀粉基接枝絮凝剂的合成,用于从水中絮凝带正电荷和负电荷的胶体污染物

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Contaminants in real water are normally complicated. Surface charges of suspended colloidal particles can be either negative or positive. In this work, a series of amphoteric starch-based grafting flocculants (3-chloro-2-hydroxypropyl trimethyl ammonium chloride modified starch-graft-poly(acrylamide-co-acrylic acid)) denoted as SCPAMPAA were successfully synthesized with different grafting ratios and used for the removal of different charged contaminants from water. Various SCPAMPAA flocculants exhibited remarkably different flocculation performance and obeyed diverse flocculation mechanisms due to the differences in their structural characteristics. Therefore, precise control of the molecular structure of flocculants is of great significance to obtain the desired flocculation performance. To provide practically operational feasibility for the preparation of a predicted flocculant, a quantitative mathematical correlation between the preparation recipe and the structural features of SCPAMPAA were derived. The final well-designed flocculant demonstrated a high flocculation performance in aspects of optimal dosage, flocculation window and pH sensitivity for the removal of both negatively and positively charged colloidal contaminants from targeted wastewater.
机译:真实水中的污染物通常很复杂。悬浮的胶体颗粒的表面电荷可以为负或正。在这项工作中,成功合成了不同接枝率的一系列两性淀粉基接枝絮凝剂(3-氯-2-羟丙基三甲基氯化铵改性淀粉接枝聚(丙烯酰胺-丙烯酸))。用于从水中去除不同的带电污染物。由于其结构特征的差异,各种SCPAMPAA絮凝剂表现出明显不同的絮凝性能,并遵循多种絮凝机理。因此,精确控制絮凝剂的分子结构对于获得所需的絮凝性能具有重要意义。为了为预计的絮凝剂的制备提供实际的操作可行性,得出了制备配方与SCPAMPAA的结构特征之间的定量数学相关性。最终设计良好的絮凝剂在最佳剂量,絮凝窗口和pH敏感性方面表现出很高的絮凝性能,可从目标废水中去除带负电荷和带正电荷的胶体污染物。

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