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An Electroacoustic Investigation of Concentrated Aqueous Suspensions of Calcium Pyrophosphate

机译:焦磷酸钙浓缩水悬浮液的电声研究

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摘要

The zeta potential of concentrated suspensions of calcium pyrophosphate were investigated using electro-acoustics.The particles were negatively charged over the entire pH range studied.It proved impossible to reduce the pH of the suspension below 1.8,but the iso electric point could be estimated to occur at approximately pH 1.Two commercially available dispersants (one cationic and one anionic) were then added in small increments to the suspension in order to follow the change in zeta potential as the dispersants adsorbed onto the particles.From the shape of the curve it was possible to estimate the optimum adsorbed amount of dispersant required to fully coat the particles.The cationic dispersant adsorbed strongly and the optimum dosage was estimated at 2.5 ml of active polymer/kg of powder.Anionic dispersants are known to adsorb onto negatively charged ceramic oxide particles,but the anionic dispersant used in this study did not adsorb onto the negatively charged calcium pyrophosphate particles.
机译:使用电声法研究了焦磷酸钙浓缩悬浮液的zeta电位,在整个研究的pH范围内这些颗粒带负电,证明不可能将悬浮液的pH降低到1.8以下,但可以估计等电点为然后将两种市售分散剂(一种阳离子分散剂和一种阴离子分散剂)以小增量加入到悬浮液中,以跟踪分散剂吸附到颗粒上时zeta电位的变化。可以估算出完全覆盖颗粒所需的分散剂的最佳吸附量。阳离子分散剂吸附强,最佳剂量估计为2.5 ml活性聚合物/ kg粉末。已知阴离子分散剂吸附在带负电的陶瓷氧化物上颗粒,但本研究中使用的阴离子分散剂未吸附到带负电的焦磷酸钙上 粒子。

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