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The increase in bed height increases the mass transfer zone.
An increase in bed height resulted in improved sorption performance.
Further increase in bed height doesn't considerably affect the capture efficiency.
Results show that minimum fluidization velocity is not affected by the change in bed height.
Increase in bed height of adsorption columns leads to longer breakthrough point as well as the exhaustion time of adsorbent.
The increase in bed height and initial metal ion concentration increased the adsorption capacity of lead (II).
Similar(41)
The observations of substantial increases in underflow solids fluxes and substantial reductions in bed heights and solids residence times were only achieved when the underflow solids volume fraction was less than or comparable with the solids volume fraction within the aggregates.
It was also observed that, the sorption capacity and breakthrough time increased with an increase in the bed height as shown in Table 5.
The coal loading was 3.3 kg and resulted in a bed height of 520 mm.
In contrast to bed height results, both exhaustion time and adsorption capacity of nitrate anion decreased with the increasing flow rate.
In this work bed height, bed size and fluidization conditions have been varied and a correlating equation: is suggested as applying over the range Comparison is made with mass transfer data of several other authors, revealing considerable variance.
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