High-Performance Copper Sulphide Collector: Enhance Mineral Recovery with Advanced Dithiophosphate Technology

Discover our leading dithiophosphate-based collector, engineered for superior performance in copper sulfide flotation. As a premier manufacturer and supplier in China, we provide solutions that significantly boost recovery rates and concentrate grades in your mining operations.

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Key Advantages for Your Operations

Enhanced Concentrate Grade

Leverage our dithiophosphate collector to achieve higher concentrate grades. Its targeted action minimizes the entrainment of unwanted minerals, ensuring your valuable products meet stringent purity requirements.

Optimized Resource Recovery

As a dedicated supplier, we understand the importance of maximizing yield. This collector is proven to improve recovery rates for copper, gold, and silver, directly translating to better resource utilization and profitability.

Cost-Effective Solution

Benefit from competitive pricing for our high-quality flotation reagent. By optimizing performance and potentially reducing the need for auxiliary chemicals, our collector offers a strong return on investment for your mining needs.

Diverse Application in Mineral Processing

Copper Sulfide Ore Flotation

Our collector is a prime choice for efficiently floating copper sulfides, offering excellent selectivity even in the presence of challenging gangue minerals like iron and zinc sulfides.

Precious Metal Recovery

Enhance the recovery of valuable precious metals such as gold and silver, which often co-exist with copper sulfide deposits. This makes our product an all-around solution for complex ore bodies.

Zinc Sulfide Flotation

The selective nature of this dithiophosphate makes it suitable for flotation of zinc sulfides, especially when activated by copper, offering a competitive advantage in multi-metal recovery.

Mixed Sulfide-Oxide Ore Processing

Effectively floats both oxide and sulfide copper minerals, providing a comprehensive solution for processing complex ores that contain both mineral forms.