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With increasing particle diameter, the bed stability decreases while the maximum solids capacity increases.
By increasing the gas injection velocity, both the bed stability and the maximum solids capacity increase.
With increasing solids density, the bed stability considerably decreases, while the maximum solids capacity increases.
Once bed stability is accomplished, a further increase of the gas injection velocity does not affect the maximum solids capacity.
For semi-stable and stable flow regimes the effect of the above process conditions on the maximum solids capacity was investigated.
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Different materials with solids density between 950 1800 kg/m3 and particle diameters of 1 2 mm, at varying gas injection velocities from 55 to 110 m/s are tested between minimum and maximum solids capacities.
Low cost of carbon dioxide, low temperature requirement, high solid capacity, and no toxin formation makes it an attractive process.
This is because it determines the mass of carbon that can be contained in a filter of given solid capacity and the amount of treated liquid that can be retained by the filter cake (Okieimen et al. 2007).
Here, we find that the solids heat capacity C s, wind entrainment coefficient k w, heat capacity of dry air C a and no-wind entrainment coefficient k s (in descending order) have largest effect on the variation in model outputs.
The results show that the solids suspension capacity of the solutions is enhanced by the presence of polymer: the addition of guar gum decreases the minimum annular velocity needed to achieve a homogeneous axial solids distribution in the annular region.
Similar relationships are seen in the gas mass fraction n0 and solids heat capacity C s inputs.
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