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用于固液分离的温敏型超支化胺基聚合物。

Temperature-responsive hyperbranched amine-based polymers for solid-liquid separation.

机构信息

Department of Chemical and Materials Engineering, University of Alberta , 116 Street and 85 Avenue, Edmonton, AB T6G 2G6, Canada.

出版信息

Langmuir. 2014 Mar 11;30(9):2360-8. doi: 10.1021/la5003012. Epub 2014 Feb 26.

Abstract

Temperature-responsive hyperbranched polymers containing primary amines as pendent groups have been synthesized for solid-liquid separation of kaolinite clay suspension. The effects of temperature, polymer charge density, and polymer architecture on particle flocculation have been investigated. Suspensions treated with the temperature-responsive amine-based hyperbranched polymers showed remarkable separation of the fine particles at a low polymer dosage of 10 ppm and at testing temperatures of 40 °C. In comparison to other polymers studied (linear and hyperbranched homopolymers and copolymers), the temperature-responsive amine-based hyperbranched copolymers showed better particle flocculation at 40 °C, as evidenced by the formation of a thinner sediment bed without compromising the amount of clay particles being flocculated. This superior solid-liquid separation performance can be explained by the hydrophobic interaction of PNIPAM segments on particle surfaces or the capture of additional free particles or small floc due to the exposure of buried positive charges (because of the phase separation of the hydrophilic amines and hydrophobic PNIPAM part) at temperatures above the lower critical solution temperature (LCST).

摘要

已合成出含伯胺作为支链的温度响应性超支化聚合物,用于高岭土悬浮液的固液分离。考察了温度、聚合物电荷密度和聚合物结构对颗粒絮凝的影响。用温度响应性胺基超支化聚合物处理的悬浮液在低聚合物用量(10ppm)和测试温度为 40°C 的条件下,对细颗粒表现出显著的分离效果。与所研究的其他聚合物(线性和超支化均聚物和共聚物)相比,温度响应性胺基超支化共聚物在 40°C 时表现出更好的颗粒絮凝效果,这表现在形成更薄的沉淀物床,而不会影响被絮凝的粘土颗粒的数量。这种优越的固液分离性能可以通过 PNIPAM 段在颗粒表面上的疏水相互作用或由于亲水性胺和疏水性 PNIPAM 部分的相分离而在 LCST 以上温度下暴露的埋藏正电荷(因为亲水性胺和疏水性 PNIPAM 部分的相分离而暴露)捕获额外的自由颗粒或小絮体来解释。

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