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An Investigation of the Swelling Kinetics of Bentonite Systems Using Particle Size Analysis

机译:粒径分析对膨润土体系肿胀动力学的研究

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Particles size distribution (PSD) is introduced as a tool for analysis of bentonite aggregation and swelling kinetics. Raw Ca-bentonite was purified using a combined wet sieving and sedimentation processes, followed by thermochemical treatment with Na2CO3 to increase its swelling capacity. The detailed analysis of the PSD shows a strong correlation between the PSD and the swelling process. For the chemically treated raw bentonite, PSD revealed two different peaks representing unswelled and swelled particles along with some aggregates. The swelling is shown to be a kinetically controlled process that depends on time, temperature, and bentonite chemical composition. At the beginning of the chemical treatment, the effect of aggregates was more dominant; therefore, the viscosity did not increase much with particle size. However, the combined chemical and thermal treatment has enhanced the Na-activation process and boosted bentonite swelling. The rheological measurements have shown enhancement in the viscosity and confirmed the PSD findings. The same optimal treatment conditions are obtained from both rheological measurements and PSD analysis. A model is developed based on classical reaction rate kinetics and used to describe the conversion from unswelled to swelled particles. The PSD has a strong correlation with the physical properties of the suspension such as the viscosity. The swelling rate fits a second order model with a rate constant, k, in the range 0.002 to 0.124 h(-1) and an activation energy, E, of 87 kJ/mol. PSD analysis together with the developed kinetic model are powerful tools for studying the swelling kinetics of bentonites.
机译:将颗粒尺寸分布(PSD)作为分析膨润土聚集和肿胀动力学的工具。使用组合的湿筛分和沉淀工艺纯化未加工的Ca-Bentonite,然后用Na 2 CO 3进行热化学处理,以增加其溶胀容量。 PSD的详细分析显示了PSD与膨胀过程之间的强相关性。对于化学处理过的原料膨润土,PSD揭示了两种不同的峰,其代表没有膨胀的颗粒以及一些聚集体。肿胀被证明是一种依赖于时间,温度和膨润土化学组成的动力学控制的方法。在化学处理开始时,聚集体的效果更大;因此,粘度不会增加粒径。然而,组合的化学和热处理增强了Na-as活化过程并提高了膨润土溶胀。流变测量表明粘度的增强并证实了PSD发现。从流变测量和PSD分析中获得相同的最佳处理条件。基于经典反应速率动力学开发了一种模型,并用于描述从未熔化到膨胀颗粒的转化率。 PSD与诸如粘度的悬浮液的物理性质具有很强的相关性。膨胀率适合具有速率常数k的二阶模型,其范围为0.002至0.124h(-1)和87kJ / mol的活化能量e。 PSD分析与开发的动力学模型一起是研究膨润土的肿胀动力学的强大工具。

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