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The effect of microwave on the crystallization process of magnesium carbonate from aqueous solutions

机译:微波对水溶液碳酸镁结晶过程的影响

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The effect of microwave on reactive crystallization is investigated with magnesium carbonate as the working substance. In the experiments, magnesium carbonate is precipitated by mixing aqueous magnesium sulfate and sodium carbonate solutions in a MSMPR crystallizer located in a microwave reactor. A population balance model along with crystallization kinetics is formulated to assess the influence of microwave energy input on nucleation, growth, agglomeration and breakage during crystallization process. A general high order moment method of classes (HMMC) framework is applied to solve the model numerically. The results show that crystallization kinetics parameters, including the nucleation rate constant (k(n)), the growth rate constant (k(g)), the exponent of growth rate (g) and the collision efficiency (psi(alpha g)) change significantly due to mass transfer enhancement in microwave field. Meanwhile, the exponent of nucleation (n) and the breakage rate constant (k(br)) remain constant or only change slightly. It is further discovered that the crystal suspension attenuates the microwave effect during crystallization process. (C) 2018 Elsevier B.V. All rights reserved.
机译:微波对反应性结晶的影响用碳酸镁作为工作物质研究。在实验中,通过将位于微波反应器的MSMPR结晶器中混合硫酸镁和碳酸钠溶液将碳酸镁和碳酸钠溶液混合来沉淀。制定了一种人口平衡模型以及结晶动力学,以评估微波能量投入对结晶过程期间成核,生长,附聚和破裂的影响。应用类(HMMC)框架的一般高阶矩法以数字方式解决模型。结果表明,结晶动力学参数,包括成核速率常数(K(n)),生长速率常数(k(g)),生长速率的指数(g)和碰撞效率(psi(alpha(alpha(alpha g))由于微波场中的传质增强,显着变化。同时,成核(n)和断裂率常数(k(br))的指数保持恒定或仅略微发生变化。进一步发现晶体悬浮液在结晶过程中衰减微波效果。 (c)2018 Elsevier B.v.保留所有权利。

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