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Preparation of a Crosslinked Poly(acrylic acid) Based New Dehydrating Agent by Using the Taguchi Method

机译:田口法制备交联聚丙烯酸新型脱水剂

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A new crosslinked, poly(acrylic acid)-based, dehydrating agent was synthesized through solution polymerization. The Taguchi method, a robust experimental design, was adopted to optimize the synthetic conditions based on the moisture and water absorbing capacities of the dehydrating agent. The method applied for the experiment was a standard L27 (3~8) orthogonal array with eight parameters and three levels. By analyzing the variance of the test results, the most effective parameters to control the moisture absorbing capacity (MAC) and its rate were the kind of alkaline base (LiOH, NaOH, or KOH) used as a neutralizing agent of the acrylic acid monomer and the degree of neutralization: The maximum MAC of 40% was achieved at only 2 h at 32 °C and 50% RH when KOH was used as a base and the degree of neutralization was 90%, respectively. However, the water absorbing capacity (WAC) of the resulting dehydrating agent was very low at 158 g/g, indicating that WAC is unaffected by MAC and its rate in this system. The surface morphologies of the agents were examined using scanning electron microscopy (SEM).
机译:通过溶液聚合合成了一种新型的交联的,基于聚丙烯酸的脱水剂。 Taguchi方法是一种稳健的实验设计,它根据脱水剂的水分和水分吸收能力来优化合成条件。实验使用的方法是标准的L27(3〜8)正交数组,具有八个参数和三个级别。通过分析测试结果的差异,控制吸湿能力(MAC)及其速率的最有效参数是用作丙烯酸单体中和剂的碱性碱(LiOH,NaOH或KOH)的种类和中和度:当以KOH为碱,中和度分别为90%时,在32°C和50%RH下仅2 h时,最大MAC达到40%。但是,所得脱水剂的吸水量(WAC)非常低,为158 g / g,表明WAC不受MAC及其在该系统中的使用率的影响。使用扫描电子显微镜(SEM)检查试剂的表面形态。

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