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Acidulation of Phosphate Rock Using Nitric Acid: A New Reaction Kinetics Approach

机译:使用硝酸的磷酸盐酸化:一种新的反应动力学方法

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The reaction kinetics of the acidulation of Moroccan phosphate rock (32% P_2O_5) using 45% nitric acid were investigated using the Shrinking Core Model (SCM), a newly developed Diffusion Model (DM) and a newly developed Combined Reaction and Diffusion Model (CRDM). This was achieved buy conducting a number of experiments in a controlled batch reactor system at different temperatures. The conversion and the reaction rate were calculated at different time intervals. The SCM based on reaction time and the CRDM characterize the acidulation process of phosphate rock. Diffusion of nitric acid and the products of acidulation at the early stages of reaction through the phosphate rock were found to be the rate-controlling step, resulting in a diffusion coefficient, which controls the mass transfer process. The reaction kinetics were found to fit first-order kinetics especially during early stages of reaction time. The deviation of the kinetics from first-order at later stages was due to the fact that the overall reaction was mass transfer controlled with respect to nitric acid and products diffusion.
机译:使用收缩核模型(SCM),一种新开发的扩散模型(DM)和新开发的合并的反应和扩散模型(CRDM使用45%硝酸摩洛哥磷酸盐岩(32%P_2O_5)的酸化的反应动力学进行了研究)。能做到这一点买入传导在不同温度下在受控的间歇式反应器系统中的多个实验。转化率和反应速率在不同的时间间隔来计算。根据反应时间和控制棒驱动机构的SCM表征磷矿酸化过程。硝酸,并在通过所述磷矿反应的早期阶段酸化的产物的扩散被认为是速率控制步骤,从而导致扩散系数,其控制传质过程。反应动力学,尤其是在反应时间早期阶段被发现适合一级动力学。从在稍后阶段的一阶动力学的偏差是由于这样的事实,整个反应是相对于硝酸和产品扩散控制的质量传递。

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