Minerals Engineering · 2014 · 76 citations · 11 references
Mineral PhysicEngineeringLiquid-liquid FlowFluid MechanicsChemistryHydrocyclone OverflowChemical EngineeringFluid PropertiesBarite SuspensionSolids ClassificationMicrofluidicsHigh Pressure HydrocycloneMaterials ScienceHydromechanicsSubmicron RangeMicrostructureMm HydrocycloneSurface ScienceChemical Kinetics
A 10 mm hydrocyclone was operated using a barite suspension with a maximum particle size of dmax = 7 μm. The test rig was equipped with a piston diaphragm pump for pressures up to 60 bar. At 40 bar and 20 °C, cut sizes d50 were obtained down to 0.7 μm; increasing the temperature to 50 °C resulted in d50 values down to 0.5 μm for a throughput of 0.6 m3/h. Another experiment was conducted at 40 bar using a batch hydrocyclone technology. Only the overflow was recirculated to the feed box, whereas the underflow was discharged via a collection box. Increasing the number of recirculations increased the separation of fines in the submicron range. The results showed that after 20 min particles with dmax = 1 μm were obtained in the hydrocyclone overflow. After 120 min, the particles size distribution had a dmax = 0.5 μm and a mean size of d50 = 0.2 μm. This procedure requires high energy consumption and is thus suitable only for fractionating small quantities of particles in the submicron range.
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CFD simulation and experimental validation studies on hydrocyclone
K. Bhaskar, Y. Rama Murthy, Martin Raju et al. · Minerals Engineering · 2006 · 195 citations
R.A. Williams · Minerals Engineering · 1993 · 115 citations