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HAO Hongxun; WANG Jingkang; WANG Yongli; HOU Baohong
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郝红勋; 王静康; 王永莉; 侯宝红
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Abstract: The reactive crystallization process of dexamethasone sodium phosphate was investigated in a continuous mixed-suspension, mixed-product-removal(MSMPR) crystallizer. Analyzing experimental data, it was found that the growth of product crystal was size-dependent. The Bransom, CR, ASL, M J2 and M J3 size-dependent growth models were discussed in details. Using experimental steady state population density data of dexamethasone sodium phosphate, parameters of five size-dependent growth models were determined by the method of non-linear least-squares. By comparison of experimental population density and linear growth rate data with those obtained from the five size-dependent growth models, it was found that the MJ3 model predicts the growth more accurately than do the other four models. Based on the theory of population balance, the crystal nucleation and growth rate equations of dexamethasone sodium phosphate were determined by non-linear regression method. The effects of different operation parameters such as supersaturation, magma density and temperature on the quality of product crystal were also discussed, and the optimal operation conditions were derived.
Key words: dexamethasone sodium phosphate, growth model, crystal size distribution (CSD), population balance equation
摘要: The reactive crystallization process of dexamethasone sodium phosphate was investigated in a continuous mixed-suspension, mixed-product-removal(MSMPR) crystallizer. Analyzing experimental data, it was found that the growth of product crystal was size-dependent. The Bransom, CR, ASL, M J2 and M J3 size-dependent growth models were discussed in details. Using experimental steady state population density data of dexamethasone sodium phosphate, parameters of five size-dependent growth models were determined by the method of non-linear least-squares. By comparison of experimental population density and linear growth rate data with those obtained from the five size-dependent growth models, it was found that the MJ3 model predicts the growth more accurately than do the other four models. Based on the theory of population balance, the crystal nucleation and growth rate equations of dexamethasone sodium phosphate were determined by non-linear regression method. The effects of different operation parameters such as supersaturation, magma density and temperature on the quality of product crystal were also discussed, and the optimal operation conditions were derived.
关键词: 地塞米松;钠;磷酸盐;结晶器;增长模型;结晶分布
HAO Hongxun, WANG Jingkang, WANG Yongli, HOU Baohong. Crystal Growth Models of Dexamethasone Sodium Phosphate in a MSMPR Reactive Crystallizer[J]. .
郝红勋,王静康,王永莉,侯宝红. MSMPR反应结晶器中地塞米松磷酸钠晶体生长模型的研究[J]. CIESC Journal.
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