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Excellent agreement in terms of mass transfer was obtained between the two methods.
The lowest heat transfer was obtained for TiO2-water in view of the fact that TiO2 has the lowest value of thermal conductivity compared to Cu and Al2O3.
Furthermore, advection-enhanced mass transfer was obtained when the 3DEM-PbO2 REM is operated in an electrochemical filtration reactor (EFR), relative to a traditional batch reactor (BR).
The results show that The lower heat transfer was obtained for Al2O3 due to domination of conduction mode of heat transfer since it has the lower value of thermal conductivity compared to SiO2.
It was found that different arrangements by different angles and density inversion affected founding best state of heat transfer in each case and general enhancement of heat transfer was obtained by adding volume fractions of nanoparticles, so average Nusselt number increased and an optimum design was also found.
A positive BRET signal for energy transfer was obtained (Fig. 4).
Similar(51)
Results illustrated that the maximum rate of heat transfer is obtained at platelet shape.
The most stable adsorption configuration, adsorption energy, and charge transfer are obtained.
With uniform heat flux, closed-form solutions for fully developed flow and heat transfer are obtained.
Better performances and highest effect of nanoparticle concentration on the heat transfer are obtained at the minichannels entrance.
Fickian diffusivities for multi-component mass transfer are obtained via Maxwell Stefan theory with thermodynamic corrections.
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