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UV-Initiated Polymerization of Cationic Polyacrylamide: Synthesis Characterization and Sludge Dewatering Performance

机译:紫外线引发的阳离子聚丙烯酰胺聚合:合成表征和污泥脱水性能。

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摘要

P(AM-DAC-BA) was synthesized through copolymerization of acrylamide (AM), acryloyloxyethyl trimethyl ammonium chloride (DAC), and butylacrylate (BA) under ultraviolet (UV) initiation using response surface methodology (RSM). The influences of light intensity, illumination time, and photoinitiator concentration on the intrinsic viscosity [η] of P(AM-DAC-BA) were investigated. RSM model based on the influencing data was established for optimizing synthetic conditions. It was found that, at light intensity 1491.67 μw·cm−2, illumination time 117.89 min, and photoinitiator concentration 0.60‰, there was a better material performance achieved. Thus P(AM-DAC-BA) prepared under the above conditions showed excellent dewatering performance that, with 40 mg·L−1 P(AM-DAC-BA) at pH 7, the residual turbidity of supernatant and the dry solid content were up to 38 NTU, 28.5%, respectively.
机译:通过使用响应表面方法(RSM)在紫外线(UV)引发下,通过丙烯酰胺(AM),丙烯酰氧基乙基三甲基氯化铵(DAC)和丙烯酸丁酯(BA)的共聚反应合成P(AM-DAC-BA)。研究了光强度,光照时间和光引发剂浓度对P(AM-DAC-BA)特性粘度[η]的影响。建立了基于影响数据的RSM模型,以优化合成条件。结果表明,在光强1491.67 w·cm −2 ,光照时间117.89 min,光引发剂浓度0.60‰的条件下,材料性能较好。因此,在上述条件下制备的P(AM-DAC-BA)表现出优异的脱水性能,在pH值为7的条件下,以40μmg·L -1 P(AM-DAC-BA),残留的浊度上清液和干固含量分别高达38 NTU,28.5%。

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