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Updated: Jan 3, 2026

Methods of Ex Situ and In Situ Investigations of Structural Transformations: The Case of Crystallization of Metallic Glasses
Published on: June 7, 2018
Studies on nucleation and crystal growth kinetics of ferrous oxalate
Chuanbo Li1, Yongzhi Ning1, Taihong Yan1
1China Institute of Atomic Energy, P.O.Box 275-26, Beijing, 102413, China.
Abstract:
An improved apparatus is used for nucleation measurements according to Nielsen's method. A new method is proposed to calculate the dilution ratio N of the reaction solution during nucleation rate determination. With the rule, when the initial apparent supersaturation ratio S'=f(N) in the dilution tank is controlled from 1.3 to 3.0, crystal nucleus dissolving and secondary nucleation can be avoided satisfactorily. Experiments are realized by varying the supersaturation ratio from 15.6 to 93.3 and temperature from 15 °C to 50 °C. Ferrous oxalate is precipitated by mixing equal volumes of ferrous sulfate and oxalic acid solution. The experimental results showed that the nucleation rate of ferrous oxalate in the supersaturation range above is characterized by the primary homogeneous mechanism and can be expressed by the equation R = A exp(-E /RT)exp[-B/(ln S) ], where A = 3.9×10 m s , E = 33.9 kJ mol-1, and B =13.7. The crystal growth rate can be expressed by equation G(t)=k exp(-E' /RT) (c-c ) , where k = 3.6 × 10 m/s, E' = 58.0 kJ mol-1 , and g = 2.4.
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