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Kinetics and Mechanism of Spontaneous Crystallization of Potassium Nitrate from Its Supersaturated Aqueous Potassium Nitrate from Its Supersaturated Aqueous Solutions

机译:硝酸钾从过饱和水溶液中自发结晶的动力学和机理

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Kinetics of spontaneous crystallization of potassium nitrate from its supersaturated aqueous solutions has been studied simultaneously by electrical conductance and optical transmittance methods. It was found that spontaneous crystallization of potassium nitrate was accompanied by aggregation of crystals. Growth of salt crystals was in the kinetic mode of the growth process, and was described by the equation of the first order regarding supersaturation of solution. The mechanism of aggregation and intergrowth of crystals during bulk crystallization via formation of nucleus-bridges between crystals found earlier for several salts was confirmed. Specific surface energy of potassium nitrate was evaluated on the basis of the above mechanism of aggregation and intergrowth of crystals. The established value of the specific surface energy was reasonable and agreed satisfactorily with the available literature data. Examination of crystal deposit after completion of crystallization allowed detecting crystal agglomerates of freakish and irregular forms, which may be considered as the direct confirmation of the above mechanism of intergrowth of crystals. Kinetics of crystallization, aggregation and size distribution of salt crystals after completion of crystallization have been satisfactory described by the earlier proposed model of the crystallization process. An excellent agreement was established between the experimental data on potassium nitrate solubility in aqueous solutions found in the present work and those available in the literature.
机译:同时通过电导和光透射法研究了硝酸钾从过饱和水溶液中自发结晶的动力学。发现硝酸钾的自发结晶伴随晶体的聚集。盐晶体的生长处于生长过程的动力学模式中,并由关于溶液过饱和的一阶方程式描述。通过大量发现的盐之间较早发现的晶体之间的核桥形成,在本体结晶过程中晶体的聚集和共生机理得到了证实。根据上述晶体的聚集和共生机理,评价硝酸钾的比表面能。比表面能的确定值是合理的,并且与现有文献数据令人满意。结晶完成后对晶体沉积物的检查可以检测出异形和不规则形式的晶体附聚物,这可以被认为是上述晶体共生机制的直接确认。较早提出的结晶过程模型已经描述了结晶完成后盐晶体的结晶动力学,聚集和尺寸分布。在本工作中发现的有关硝酸钾在水溶液中的溶解度的实验数据与文献中可获得的数据之间建立了极好的协议。

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