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Description:
As a high-performance mineral processing reagent, the 2# flotation collector is specifically developed for separating complex polymetallic sulfide ores through flotation. It is characterized by a distinct yellow transparent liquid form and features an advanced molecular design that boosts selectivity and adaptability. Outstanding results are achieved with this product in floating lead-zinc ores, copper-lead-zinc ores, and various polymetallic sulfides. The unique molecular configuration facilitates effective recognition and selective adhesion to target mineral surfaces, thereby substantially raising the recovery rate and grade of valuable minerals.
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Item |
Index |
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Appearance |
Yellow transparent liquid |
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pH Value |
10.0 - 13.0 |
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Specific Gravity (25°C) |
1.140 - 1.180 g/cm³ |
Performance & Applications:
Exhibiting superior selective collection capabilities for sulfide minerals such as lead and zinc, the 2# collector's molecular structure contains numerous active groups that establish stable coordination complexes with metal ions on mineral surfaces. This leads to a marked improvement in the efficiency and strength of mineral-bubble attachment. The reagent maintains peak collection performance within its pH range, ideal for processing polymetallic ores with complex compositions.
Thanks to its selective adsorption traits, this product effectively restrains impurity minerals like pyrite, lowering the flotation rate of impurities and diminishing harmful element levels in the concentrate. It also performs well under high pulp densities, sustaining superb dispersion and collection efficiency.
With integrated intelligent foam modulation, the 2# collector optimizes foam structure automatically according to pulp properties, yielding a stable and tough froth layer. This ensures adequate ore-bearing capacity and prevents launder overflow from too much frothing, making it highly suitable for ores containing high slime.
Advantages:
Enhanced selective collection for polymetallic sulfide ores such as lead-zinc, boosting recovery rates compared to traditional reagents.
Remarkable impurity suppression significantly improves concentrate grade and quality.
A broad pH operating range assures robust adaptability and straightforward process control.