Journal ArticleDOI
Falling film melt crystallization (I): Model development, experimental validation of crystal layer growth and impurity distribution process
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TLDR
In this article, a detailed model of the crystal layer growth and multi-ion impurity distribution process in the falling film melt crystallization (FFMC) model was developed and validated.About:
This article is published in Chemical Engineering Science.The article was published on 2012-12-24. It has received 41 citations till now. The article focuses on the topics: Crystallization.read more
Citations
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Recent progress of continuous crystallization
TL;DR: In this article, the development of continuous crystallization in recent years, including novel crystallizers, control strategies, models and some assistive technologies, is summarized, and the authors conclude that continuous crystallisation is still not as universal as batch crystallization due to the existence of the drawbacks, such as blockage and encrustation.
Journal ArticleDOI
Current development and future prospect review of freeze desalination
TL;DR: Freeze desalination (FD) is an emerging technology to overcome limitations of membrane-and thermal-energy-based desaline processes as discussed by the authors, and there exists a possibility towards combining FD with other desalification technologies, thereby developing a hybrid process.
Journal ArticleDOI
Membrane assisted cooling crystallization: Process model, nucleation, metastable zone, and crystal size distribution
TL;DR: In this paper, a membrane assisted cooling crystallization was proposed and investigated by the simulation and experiments, where the developed process model concerned the supersaturation evolution on the membrane interface, the combined nucleation rate in the crystallizer.
Journal ArticleDOI
Research Progress and Model Development of Crystal Layer Growth and Impurity Distribution in Layer Melt Crystallization: A Review
TL;DR: In this article, a review of the research progress and process model development of the key processes (crystal layer growth and impurity distribution) involved in layer melt crystallization is presented.
Journal ArticleDOI
Falling film melt crystallization (II): Model to simulate the dynamic sweating using fractal porous media theory
TL;DR: In this article, the authors describe the model development of dynamic sweating in falling film melt crystallization (FFMC) using fractal porous media theory and apply an overall mass balance to determine the structural and characteristic parameters of the crystal layer.
References
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Book
Principles of Solidification
TL;DR: Solidification is the process by which a liquid is transformed into a crystalline solid as discussed by the authors, in which the solid that forms first is solvent rich as distinct from crystallisation, and the crystals that are formed are solute rich.
Book
Handbook of industrial crystallization
TL;DR: Solutions and Solution Properties Crystals, Crystal Growth, and Nucleation The Influence of Impurities and Solvents on Crystallization Analysis and Measurement of Crystallisation Utilizing the Population Balance Crystallizer Selection and Design Precipitation Processes Melt and Mixing:Understanding and Modelingcrystallizer mixing andsuspension flow control of crystallization processes Processes Batch and Multi-batchCrystallization:
Journal ArticleDOI
Sea water desalination by dynamic layer melt crystallization: Parametric study of the freezing and sweating steps
Anouar Rich,Anouar Rich,Youssef Mandri,Youssef Mandri,Denis Mangin,Alain Rivoire,Alain Rivoire,Souad Abderafi,Christine Bebon,Naoual Semlali,Jean-Paul Klein,Tijani Bounahmidi,Ahmed Bouhaouss,Stéphane Veesler +13 more
TL;DR: In this article, a dynamic layer crystallizer operated batchwise for freezing desalination of sea water is presented. But the results show that the feasibility of the technique is questionable.
Journal ArticleDOI
Ultra-purification of ionic liquids by melt crystallization
TL;DR: Konig et al. as discussed by the authors presented results of purification and ultra-purification of EMIM-chloride and EMIMbromide (EMIM, 1-e thyl-3-m ethyl-im idazolium) by melt crystallization.
Reference BookDOI
Melt Crystallization Technology
TL;DR: Melt crystallization as discussed by the authors is an important chemical process technology and is one of the few routes that appear to be feasible for purifying starter materials for high-tech polymers.