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首页> 外文期刊>Colloids and Surfaces, A. Physicochemical and Engineering Aspects >Synthesis of sodium polyacrylate copolymers as water-based dispersants for ultrafine grinding of praseodymium zirconium silicate
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Synthesis of sodium polyacrylate copolymers as water-based dispersants for ultrafine grinding of praseodymium zirconium silicate

机译:将聚丙烯酸钠共聚物合成作为水基硅酸钠超细研磨的水基分散剂

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A series of sodium polyacrylate copolymers (i.e., poly acrylic acid-co-itaconic acid-co-2-acrylamide-2-methylpropanesulfonic acid or PSIA with different molecular weights and monomer molar ratios) were synthesized based on acrylic acid-co-itaconic acid (PAI) as water-based dispersants for ultrafine grinding of praseodymiumdoped zirconium silicate (Pr-ZrSiO4). The particle size/size distribution, suspension rheology and dispersant adsorption were analyzed by laser particle size analysis, rheometry, Fourier transform infrared (FTIR) spectroscopy, thermogravimetry (TG) and electrokinetic potential measurement, respectively. Compared to the dispersant PAI, the use of the dispersant PSIA(1) with a greater molecular weight in the Pr-ZrSiO4 suspension ground for 45 min at pH values 7.0-8.0 can give a finer product with the narrower particle size distribution. The dispersant PSIA(1) used in ultrafine grinding has a suitable viscosity of the suspension and generates more hydrogen bonds on the particle surface, and sulfonic acid group in the dispersant PSIA(1) can provide a greater charge density than carboxylic acid groups in the dispersant PAI. In addition, the total potential energies between the particles in suspension with different copolymer dispersants at different pH values were also calculated. It is indicated that the effective ultrafine grinding of the particles is related to the total interparticle potential energy provided by the dispersant PSIA(1) at pH 7.0-8.0.
机译:基于丙烯酸 - 共衣酸合成,合成了一系列聚丙烯酸钠共聚物(即,具有不同分子量和单体摩尔比的聚丙烯酸 - 共衣酸-CO-2-丙烯酰胺-2-甲基丙二磺酸或PSIA) (PAI)作为水基分散剂,用于镨硅酸盐的超细研磨(PR-ZRSIO4)。通过激光粒度分析,流变学,傅里叶变换红外(FTIR)光谱,热重率(TG)和电动电位测量分析粒度/尺寸分布,悬浮流变学和分散剂吸附。与分散剂PAI相比,在PH值7.0-8.0下使用具有更大分子量的分散剂PSIA(1)在PH值7.0-8.0下用更大的分子量为45分钟,可以给出更细的粒度分布。在超细研磨中使用的分散剂PSIA(1)具有悬浮液的合适粘度,并在颗粒表面上产生更多的氢键,并且分散剂PSIA(1)中的磺酸基可以提供比羧酸基团更大的电荷密度分散剂p。另外,还计算了在不同pH值下用不同共聚物分散剂的悬浮液中悬浮液之间的总电位能。结果表明,颗粒的有效超细研磨与PH 7.0-8.0的分散剂PSIA(1)提供的总颗粒势能有关。

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