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Performance has been analyzed and discussed with respect to separation functions and characteristic parameters like cut size, separation sharpness, separation stage utilization, and product quality, quantified by cumulative product purities of over- and underflow as well as specific energy consumption.
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Results show that the cut size, sharpness of separation and the bottom and top size selectivity increments are influenced strongly by the stationary guide vane configuration.
The studies revealed that with an increase in feed flow rate and decrease in spigot diameter the cyclone sharpness of separation improves.
The sharpness of separation in a gas-liquid chromatographic column is effected by longitudinal molecular diffusion, slowness to reach absorption equilibrium, and by flow irregularities in channels and across the column.
The different travelling time of particles via the upper and lower plates indicates the double layer spreading plate can improve the material dispersion and the simulated Tromp curves of the single and double spreading plates also show the cut size and the imperfection are decreased while the sharpness of separation is increased for the turbo air classifier with the double layer spreading plate.
Compared to single layer spreading plate, the cut size can be decreased up to 25.24% and the sharpness of separation can be increased up to 52.47% for double layer spreading plate, and the imperfection of Tromp curve for double layer spreading plate is smaller that means it closer to the ideal classification curve.
It was pointed out that when the feed coal size is below 15 mm, the size effect on sharpness in separation becomes significant and the E values decrease faster.
It is necessary for the synthesis of the process separating a raw material into multicomponent products to consider the degrees of separation sharpness and the stream division ratios as design variables in addition to the separation sequence.
High separation sharpness of hydrocyclones has attracted much interest with its classification becoming increasingly popular.
According to the fitted regression model, the predicted results of separation sharpness is found to be in satisfactory agreement with the observed data, and an optimal configuration is proposed for the vortex finder to achieve a higher separation sharpness.
A high separation sharpness can be achieved by an appropriate range of the diameter and vortex finder length.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com