首页> 外文期刊>The Canadian Journal of Chemical Engineering >On the Investigation of the Effect of Apparatus Configurations on the Nucleation Mechanisms in a Cooling Crystallization of Sodium Chlorate
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On the Investigation of the Effect of Apparatus Configurations on the Nucleation Mechanisms in a Cooling Crystallization of Sodium Chlorate

机译:氯酸钠冷却结晶时设备结构对成核机理影响的研究

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摘要

Continuous crystallization plays a key role in the drive to deliver consistent crystal properties while minimizing solvent waste and undesired crystals. Plug flow crystallizers such as the continuous oscillatory baffled crystallizer (COBC) have been investigated. Kinetics studies are often carried out in batch OBCs where two types of setup can be utilized: the moving baffle system and the pulsing fluid configuration. The former involves moving a set of orifice baffles up and down the column containing supersaturated solution, while the latter is associated with pulsing the solution at the base of the column with the presence of stationary baffles. Uniform mixing is achieved by the generation and cessation of eddies, and similar degrees of mixing can be controlled and achieved in both devices. In a temperature assisted crystallization of sodium chlorate however, we found that the latter gave more nucleation of the seed-dissimilar enantiomorph than the former. By constructing and testing a number of hypotheses, we have demonstrated that the effects of external and internal fluid renewal were responsible for such differences in nucleation mechanisms.
机译:连续结晶在提供一致的晶体特性,同时最大程度地减少溶剂浪费和不良晶体的过程中起着关键作用。已经研究了塞流结晶器,例如连续振荡折流结晶器(COBC)。动力学研究通常在批量OBC中进行,其中可以使用两种类型的设置:移动挡板系统和脉冲流体配置。前者涉及在装有过饱和溶液的色谱柱上上下移动一组孔板挡板,而后者则涉及在存在固定挡板的情况下在立柱底部对溶液进行脉冲处理。通过产生和停止涡流可以实现均匀混合,并且在两个设备中都可以控制和实现相似的混合程度。然而,在温度辅助的氯酸钠结晶中,我们发现后者比前者提供更多的种子相异对映体形核。通过构建和检验许多假设,我们证明了外部和内部流体更新的影响是成核机制中这种差异的原因。

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