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Hydrostatic pressure measurement for evaluation of particle dispersion and flocculation in slurries containing temperature responsive polymers

机译:静水压力测量,用于评估含温度响应性聚合物的浆料中的颗粒分散和絮凝

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The state of particle dispersion and flocculation was evaluated through hydrostatic pressure measurements in aqueous slurries of alumina with neutral and charged temperature responsive co-polymers of poly (N-isopropylacrylamide) (PNIPAM). Slurries were prepared and poured into test tubes at room temperature, and then heated in a hot water bath to a controlled temperature. The slurries were then cooled down to room temperature. The hydrostatic pressure at the bottom of the slurry was continuously measured. The effect of the fraction of charge on the polymer on the particle dispersion state was investigated by changing the ratio of acrylic acid (AA) to PNIPAM in the synthesized co-polymers. It was shown that the hydrostatic pressure of the slurry with 15% AA-PNIPAM co-polymer decreased the fastest at temperature above the polymer lower critical solution temperature (LCST), indicating that the largest flocs were formed due to a strong attractive force. However, the hydrostatic pressure of the 15% charged polymer did not recover (increase) after reducing the temperature below the LCST, revealing that the formed flocs did not re-disperse. On the other hand, the hydrostatic pressures of the slurries with 1% and 5% AA-PNIPAM co-polymer showed relatively quick decrease at temperature above the LCST and clearly recovered (increased) after changing the temperature to below LCST. The particles in these slurries can be changed from the dispersed to the flocculated state by temperature control. The hydrostatic pressure measurement has been shown to be a very useful tool to monitor how the particle dispersion and flocculation state are changed by changing the surrounding temperature for slurries with temperature responsive polymer.
机译:通过在具有中性和带电温度响应性的聚(N-异丙基丙烯酰胺)(PNIPAM)的氧化铝水性浆料中通过静水压力测量来评估颗粒的分散状态和絮凝状态。制备浆料并在室温下倒入试管中,然后在热水浴中加热至受控温度。然后将浆液冷却至室温。连续测量浆液底部的静水压力。通过改变合成共聚物中丙烯酸(AA)与PNIPAM的比例,研究了电荷分数对聚合物的影响,从而影响了颗粒的分散状态。结果表明,含有15%AA-PNIPAM共聚物的淤浆的静水压力在高于聚合物下限临界溶液温度(LCST)的温度下下降最快,这表明由于强大的吸引力而形成了最大的絮凝物。但是,在将温度降低至低于LCST后,带电15%的聚合物的静水压力无法恢复(升高),这表明所形成的絮凝物并未重新分散。另一方面,具有1%和5%AA-PNIPAM共聚物的淤浆的流体静压力在高于LCST的温度下显示出相对快速的下降,并且在将温度改变为低于LCST之后明显地恢复了(升高)。这些浆料中的颗粒可以通过温度控制从分散状态改变为絮凝状态。静水压力测量已被证明是一种非常有用的工具,可通过改变具有温度响应性聚合物的浆料的周围温度来监测颗粒分散度和絮凝状态的变化。

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