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Hydrolysis and Coagulation of Aluminum Salts in the Initial Stage of Mixing of Solutions

机译:溶液混合初期铝盐的水解和混凝

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摘要

The turbulent mixing of a solution of a coagulant with water is studied in the initial process step, when, in the bulk of the system, regions of different liquids can still be individualized. The mixing is accompanied by the hydrolysis of metal salt and coagulation of the hydrolysis product (mixing is considered within a small vicinity of the interface between the liquids being mixed). It is shown that, in the course of time, a locking layer is formed, which prevents the diffusion transfer of the component. This layer exists throughout the initial process step and decomposes only at the end of this step. A model of aluminum salt hydrolysis is constructed, on the basis of which analytical expressions are obtained for pH and the concentrations of various hydrolysis products as functions of the concentration of the initial reactant solution, the water alkalinity, and the equilibrium constants for the hydrolysis reactions. The coagulation kinetics is analyzed. The limiting sizes of aggregates as functions of the properties of the liquids being mixed and the process parameters are determined. It is shown that, once the limiting sizes of aggregates are attained, the coagulation is suspended until the end of the initial mixing step; a new coagulation step then begins, in which the role of coagulation nuclei is played by the previously formed aggregates.
机译:在最初的工艺步骤中研究了混凝剂溶液与水的湍流混合,此时,在系统的大部分中,仍然可以区分不同液体的区域。混合伴随有金属盐的水解和水解产物的凝结(认为混合在所混合的液体之间的界面的小范围内)。结果表明,随着时间的流逝,形成了锁定层,该锁定层阻止了组分的扩散转移。该层存在于整个初始处理步骤中,并且仅在此步骤结束时分解。建立铝盐水解的模型,在此模型的基础上,获得pH和各种​​水解产物的浓度与初始反应物溶液的浓度,水碱度和水解反应的平衡常数有关的解析表达式。分析了凝固动力学。确定聚集体的极限尺寸,该极限尺寸取决于所混合的液体的性质和工艺参数。结果表明,一旦达到限制的聚集体大小,混凝就停止,直到最初的混合步骤结束。然后开始一个新的凝结步骤,其中凝结核的作用是由先前形成的聚集体发挥的。

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