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首页> 外文期刊>Chemical Science International Journal >Ultrasonic Degradation of Polyvinyl Pyrrolidone(PVP): Effect of Power of Ultrasound, Temperatureand Concentration
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Ultrasonic Degradation of Polyvinyl Pyrrolidone(PVP): Effect of Power of Ultrasound, Temperatureand Concentration

机译:聚乙烯吡咯烷酮(PVP)的超声降解:超声功率,温度和浓度的影响

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摘要

The ultrasonic degradation of polyvinyl pyrrolidone (PVP) was carried out in a range of different concentration of polymer solution to investigate on the changes of molecular weights. Also the ultrasonic degradation at different temperatures and power of ultrasound (30-150 W) was investigated. Most of the effects involved in controlling molecular weight can be attributed to the large shear gradients and shock waves generated around collapsing cavitation bubbles. The calculated rate constants indicated that the degradation rate of the PVP solutions decreased as the temperature increased. The average molecular weight of ultrasonicated PVP was determined by measurements of relative viscosity of samples. The degradation rate of this polymer was followed by a kinetic model based on viscosity measurements. Rate constants of ultrasonic degradation were calculated, and the results showed their dependence on polymer concentration.
机译:在不同浓度的聚合物溶液中对聚乙烯吡咯烷酮(PVP)进行超声降解,以研究分子量的变化。还研究了在不同温度和超声功率(30-150 W)下的超声降解。控制分子量的大多数作用可归因于大的剪切梯度和在崩塌的空化气泡周围产生的冲击波。计算出的速率常数表明,随着温度的升高,PVP溶液的降解速率降低。通过测量样品的相对粘度来测定超声PVP的平均分子量。该聚合物的降解速率随后是基于粘度测量的动力学模型。计算了超声波降解的速率常数,结果表明它们对聚合物浓度的依赖性。

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