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首页> 外文期刊>The Korean journal of chemical engineering >Degradation of drag reducing polymers in aqueous solutions
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Degradation of drag reducing polymers in aqueous solutions

机译:减阻聚合物在水溶液中的降解

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The performance of drag reducing polymers in turbulent flow is restricted by their mechanical degradation. This study examines how the working fluid can affect the degradation behavior of diluted drag reducing polymeric solutions. Solutions having different proportions of tap water and de-ionized water served as the working fluids. Three commercially available water soluble polymeric agents, namely, an anionic copolymer of polyacrylamide, xanthan gum, and polyethylene oxide, were then added to these solutions. All experiments had identical flow rates corresponding to turbulent conditions in a laboratory scale pipe line. Variation of pressure drop in the pipe line was then measured for 2 hours. It was found that polymer degradation is accelerated in tap water solutions compared to that in de-ionized water solutions. However, this is dependent on the specification of the polymer used, namely, the molecular weight of the polymer and the rigidity of its molecular backbone. Furthermore, a new mathematical relation has been developed to investigate degradation of the polymers over time.
机译:减阻聚合物在湍流中的性能受到其机械降解的限制。这项研究检查了工作流体如何影响稀释减阻聚合物溶液的降解行为。具有不同比例的自来水和去离子水的溶液用作工作流体。然后将三种市售水溶性聚合物试剂,即聚丙烯酰胺,黄原胶和聚环氧乙烷的阴离子共聚物,添加到这些溶液中。所有实验均具有相同的流速,对应于实验室规模管道中的湍流条件。然后测量管道中的压降变化2小时。已发现与去离子水溶液相比,自来水溶液中的聚合物降解加速。但是,这取决于所用聚合物的规格,即聚合物的分子量及其分子骨架的刚性。此外,已经开发了新的数学关系来研究聚合物随时间的降解。

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