Study of the influence of regime factors on the kinetics of the dehydration process of iron (ii) sulfate heptahydrate using the filtration method

D. Kindzera, V. Kochubei, V. Atamanyuk, N. Tsiura, A. Helesh
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Abstract

The filtration method of gradual dehydration of Iron(II) sulfate heptahydrate hase been proposed. Based on the generalization of experimental data of hydrodynamics, the calculated dependence Euзовн=155∙Reзовн-0,55∙Hdч was obtained, which makes it possible to determine theoreticallypressure losses in the stationary layer of FeSO4·7H2O.According to the results of complex thermal analysis, the regularities of the gradual dehydration process of FeSO4·7H2O have been established in different temperature intervals. The temperature of 339K has been chosen, to implement the FeSO4∙7H2O dehydration process with the separation of the first three molecules of crystallization water, ensuring the preservation of the crystalline state of the product.The kinetics of moisture removal from FeSO4∙7H2Oat different heights of the material layer and velocities of heat agent movement have been investigated. Based on energy consumption calculations, the optimal parameters of the process were established: the height of the stationary layer Н = 60.10-3mand the fictitious velocities of the heat agent movement v0 =0,86 m/s.The filtration method of gradual dehydration of Iron(II) sulfate heptahydrate hase been proposed. Based on the generalization of experimental data of hydrodynamics, the calculated dependence Euзовн=155∙Reзовн-0,55∙Hdч was obtained, which makes it possible to determine theoreticallypressure losses in the stationary layer of FeSO4·7H2O.According to the results of complex thermal analysis, the regularities of the gradual dehydration process of FeSO4·7H2O have been established in different temperature intervals. The temperature of 339K has been chosen, to implement the FeSO4∙7H2O dehydration process with the separation of the first three molecules of crystallization water, ensuring the preservation of the crystalline state of the product.The kinetics of moisture removal from FeSO4∙7H2Oat different heights of the material layer and velocities of heat agent movement have been investigated. Based on energy consumption calculations, the optimal parameters of the process were established: the height of the stationary layer Н = 60.10-3mand the fictitious velocities of the heat agent movement v0 =0,86 m/s.
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过滤法对七水硫酸铁脱水动力学影响的研究
提出了七水硫酸铁(II)的逐步脱水过滤方法。通过对流体力学实验数据的推广,得到了计算依赖关系Euзовн=155∙Reзовн-0,55∙hdmo,从而可以从理论上确定FeSO4·7H2O固定层的压力损失。根据复热分析结果,建立了FeSO4·7H2O在不同温度区间内逐渐脱水的规律。选择339K的温度,进行FeSO4∙7H2O脱水工艺,分离前三分子结晶水,保证了产品的结晶状态的保存。研究了不同材料层高度和热剂运动速度下FeSO4∙7h2o的脱湿动力学。根据能耗计算,确定了工艺的最佳参数:固定层高度Н = 60.10-3,热剂运动速度v0 = 0.86 m/s。提出了七水硫酸铁(II)的逐步脱水过滤方法。通过对流体力学实验数据的推广,得到了计算依赖关系Euзовн=155∙Reзовн-0,55∙hdmo,从而可以从理论上确定FeSO4·7H2O固定层的压力损失。根据复热分析结果,建立了FeSO4·7H2O在不同温度区间内逐渐脱水的规律。选择339K的温度,进行FeSO4∙7H2O脱水工艺,分离前三分子结晶水,保证了产品的结晶状态的保存。研究了不同材料层高度和热剂运动速度下FeSO4∙7h2o的脱湿动力学。根据能耗计算,确定了工艺的最佳参数:固定层高度Н = 60.10-3,热剂运动速度v0 = 0.86 m/s。
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