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Shrinking core models applied to the sodium silicate production process

机译:收缩核心模型应用于硅酸钠生产过程

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The sodium silicate production process, with the molar ratio SiO2/Na2O = 2, for detergent zeolite 4A production, is based on quartz sand dissolving in NaOH aqueous solution, with a specific molality. It is a complex process performed at high temperature and pressure. It is of vital importance to develop adequate mathematical models, which are able to predict the dynamical response of the process parameters. A few kinetic models were developed within this study, which were adjusted and later compared to experimental results. It was assumed that SiO2 particles are smooth spheres, with uniform diameter. This diameter decreases during dissolving. The influence of particle diameter, working temperature and hydroxide ion molality on the dissolution kinetics was investigated. It was concluded that the developed models are sufficiently correct, in the engineering sense, and can be used for the dynamical prediction of process parameters.
机译:用于生产洗涤剂沸石4A的摩尔比为SiO2 / Na2O = 2的硅酸钠生产工艺,是基于溶解在NaOH水溶液中的特定摩尔浓度的石英砂制成的。这是在高温和高压下执行的复杂过程。开发适当的数学模型至关重要,它能够预测过程参数的动态响应。在本研究中开发了一些动力学模型,对其进行了调整,然后与实验结果进行了比较。假设SiO2颗粒是光滑的球体,直径均匀。该直径在溶解过程中减小。研究了粒径,工作温度和氢氧根离子摩尔浓度对溶解动力学的影响。结论是,所开发的模型在工程意义上是足够正确的,并且可以用于过程参数的动态预测。

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