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Preparation and flocculation properties of modified alginate amphiphilic polymeric nano-flocculants

机译:改性藻酸盐两亲型聚合物纳米絮凝剂的制备和絮凝性能

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The novel nano-flocculants were synthesized through a conjugation of dodecylamine with partly oxidized sodium alginate. The structures of the flocculants were characterized by FTIR, 1HNMR, TGA, and EA. The flocculants possessed amphiphilic structures and formed nano-micelles through self-assembly in water. The nano-micelles showed rod-like shapes about 100 nm. Removal rates of the flocculants for Pb2+ and bisphenol A were determined under different conditions, showing the removal rates as high as 97.20% and 88.66% for Pb2+ and bisphenol A, respectively. The flocculation mechanisms were revealed by X-ray photoelectron spectroscopy (XPS) and scanning electron microscope (SEM), respectively. Isotherm adsorption studies indicated that the flocculation for Pb2+ accorded with the Langmuir single-layer adsorption model, and for bisphenol A accorded with the Freundlichmulti-layer adsorptionmodel. The quasi-second-order kinetic model was suitable for describing the adsorption kinetics. The new nano-flocculant was a promising agent for removing both heavy metal ions and organic pollutants of wastewater.
机译:通过用部分氧化藻酸钠的十二烷基胺共轭合成新型纳米絮凝剂。絮凝剂的结构特征在于FTIR,1HNMR,TGA和EA。絮凝剂具有通过水中的自组装形成两亲结构并形成纳米胶束。纳米胶束显示出约100nm的棒状形状。絮凝剂用于Pb2 +和双酚A的去除速率不同的条件下进行了测定,显示出的移除速率分别高为97.20%和Pb2 +的88.66%和双酚A,。 X射线光电子能谱(XPS)和扫描电子显微镜(SEM)揭示了絮凝机制。等温线的吸附研究表明,对于对Pb2 +絮凝赋予与朗缪尔单层吸附模型,和用于与Freundlichmulti层adsorptionmodel符合双酚A。准二阶动力学模型适用于描述吸附动力学。新的纳米絮凝剂是一种有望的试剂,用于除去废水的重金属离子和有机污染物。

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