Determination of the just suspended speed for solid particle in torus reactor

Author:

Alouache Ali1,Selatnia Ammar12,Lefkir Abdelouhab3,Halet Farid14,Sayah Houssem Eddine4,Nadjemi Boubekeur1

Affiliation:

1. Department of Chemistry, Laboratory of Study and Development of Techniques of Treatment and Water Treatment and Environmental Management L.E.D.T.E.G.E, E.N.S Kouba, Algiers, Algeria

2. Department of Chemical Engineering, National Polytechnic School E.N.P, Algiers, Algeria

3. LTPiTE Laboratory, National School of Public Works (ENSTP), Algiers, Algeria

4. Faculty of Engineering Sciences, M'Hamed Bougara University of Boumerdes U.M.B.B, Algeria

Abstract

Abstract With the considerable use of pipelines and reactors in the engineering industry, determining the deposition velocity enabling hydraulic transport is of utmost importance. This has been investigated throughout the years, scrupulously in several types of reactors used in water treatment and solid transport. The primary focus has been extended to torus reactors, due to their significant advantage in chemical, biochemical and mixing processes. In the present work, we have studied the solid-liquid suspension in a torus reactor. We elaborated an experimental method based on visual assessment SBAM (Steady Bed Angle Method), which enabled us to analytically determine the just suspended speed ‘Njs’ at which no solid remains stationary at the bed and further parametrically study the effect of several parameters including solid loadings, particle sizes and densities. The just suspended speed values obtained experimentally have been compared to a modified Zwietering's correlation.

Publisher

IWA Publishing

Subject

Water Science and Technology,Environmental Engineering

Reference34 articles.

1. Biosorption of Cr (VI) from aqueous solutions by dead biomass of Pleurotus mutilus in torus reactor;Mannina,2017

2. Determination of the minimum agitation speed to attain the just dispersed state pn solid-liquid and liquid-liquid reactors provided with multiplr impellers;Chemical Engineering Science,1992

3. Complete suspension of particles in mechanically agitated vessels;Chemical Engineering Science,1977

4. Mixing characteristics in the torus reactor;Chemical Engineering Technology,1992

5. Particle suspension in top-covered unbaffled tanks;Chemical Engineering Science,2010

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