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Canadian Metallurgical Quarterly
The Canadian Journal of Metallurgy and Materials Science
Volume 54, 2015 - Issue 4
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Mineral Processing

Modelling and simulation of vacuum filtration of ore slurry: a case study on limestone-hosted Indian uranium ore

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Pages 406-414 | Received 18 Jan 2015, Accepted 22 Sep 2015, Published online: 19 Jan 2016
 

Abstract

This paper discusses the results of vacuum filtration studies carried out on a finely ground uranium ore slurry with the objective of maximizing the filtration rate. Constant-pressure experiments were carried out to determine the filtration parameters such as specific cake resistance, cake permeability and medium resistance. The experimental data were analysed using the well-known power law function of the cake-forming pressure with specific cake resistance and cake concentration. The power law model equation developed was experimentally validated and the predicted values agreed very well with the experimental findings with >95% confidence level. This study helps in design and scale-up of filtration units to be used at industrial – size.

Cet article discute des résultats d’études de filtration sous vide effectuées avec une suspension de minerai d'uranium moulu finement, ayant pour objectif de maximiser la vitesse de filtration. On a effectué des expériences à pression constante afin de déterminer les paramètres de filtration comme la résistance spécifique du comprimé, la perméabilité, la résistance moyenne etc. On a analysé les données expérimentales en utilisant la fonction bien connue de la loi exponentielle de la pression de formation du comprimé, avec sa résistance spécifique et sa concentration. On a validé expérimentalement l’équation développée pour le modèle de loi exponentielle. Les valeurs prédites s'accordaient très bien avec les données expérimentales, avec un niveau de confidence > 95%. Cette étude aide à la conception et à l'agrandissement à l’échelle d'unités de filtration pour utilisation à l’échelle industrielle

Acknowledgement

The authors are thankful to Dr J. K. Chakravartty, Director, Materials Group, Bhabha Atomic Research Centre for his constant encouragement and support during these investigations.

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