Difficulty: Easy
Correct Answer: Froth floatation
Explanation:
Introduction / Context:Coal beneficiation separates valuable coal from mineral matter. The choice of separator depends strongly on particle size. Fine particles become difficult to treat by gravity alone due to low settling velocities.
Given Data / Assumptions:
Concept / Approach:Froth flotation exploits differences in surface hydrophobicity. Fine coal is naturally hydrophobic (or can be made so with collectors) and attaches to air bubbles, rising to the froth, while hydrophilic mineral matter stays in the slurry. This makes flotation ideal for ultrafines where gravity methods fail.
Step-by-Step Solution:
Identify particle size regime: fine to ultrafine.Choose a surface-based separation (flotation) rather than density-based jigs or spirals.Apply flotation reagents and air dispersion to recover clean coal in froth.Verification / Alternative check:Plant practices commonly route −0.5 mm fraction to flotation cells or columns; coarser fractions go to jigs, spirals, or dense medium cyclones.
Why Other Options Are Wrong:
Common Pitfalls:Insufficient reagent conditioning or poor air dispersion reduces recovery; thick froths may entrap ash unless froth washing or column flotation is used.
Final Answer:Froth floatation
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