Which Gravity Circuits Maximize Chrome Recovery and Grade?
Maximizing chrome recovery and grade in gravity circuits typically involves designing efficient flowsheets and optimizing equipment configurations to separate chromite (Cr₂O₃) effectively from gangue materials. Here are some key gravity circuits commonly used:
1. Koncentratory spiralne
- Jak to działa: Spiral concentrators use centrifugal forces and gravity to concentrate heavy chromite particles while removing lighter gangue minerals.
- Zalety: High separation efficiency for fine chromite particles (typically -1 mm to +0.037 mm).
- Optimization Tips:
- Proper feed size distribution: Remove ultrafines (<37 microns) through screening or hydrocyclones beforehand because ultrafine particles reduce efficiency.
- Monitor spiral angles and feed pulp density (30–40% solids by weight).
- Consider multi-pass spirals with rougher, cleaner, and scavenger stages to maximize recovery.
2. Stoły wstrząsowe
- Jak to działa: Shaking tables rely on differential density and particle motion to segregate chromite from gangue minerals.
- Zalety: Exceptional separation for finer fractions of chromite (-1 mm).
- Optimization Tips:
- Use proper table tilt angles and feed rates.
- Ensure uniform feed across the table surface for consistent separation.
- Adjust wash water flow to improve concentrate grade.
3. Hydrocyclones
- Jak to działa: Hydrocyclones separate particles based on size and density through centrifugal classification.
- Zalety: Used for pre-concentration to remove ultrafines (-37 microns) and improve downstream circuit performance.
- Optimization Tips:
- Maintain appropriate feed pressure and cyclone diameter.
- Split the flow into coarse and fine fractions for subsequent gravity processing.
4. Separacja w ośrodku gęstym (DMS)
- Jak to działa: DMS uses a dense medium (typically magnetite or ferrosilicon slurry) to separate chromite particles based on density differences.
- Zalety: Highly effective for coarser chromite particles (generally >1 mm).
- Optimization Tips:
- Keep the dense medium balanced in terms of density and viscosity.
- Optimize feed rate and particle size for efficient separation.
5. Humphrey Spirals
- A specialized spiral concentrator with multiple stages for finer chromite recovery.
- More efficient for finer fractions and typically used in cleaner circuits.
Best Practices for Gravity Circuit Design
- Stage Processing: Integrate rougher, cleaner, and scavenger units to maximize recovery and grade.
- Uwolnienie mineralne: Ensure chromite liberation through proper comminution (grinding and crushing prior to gravity separation).
- Przygotowanie paszy: Eliminate slimes and ultrafines using hydrocyclones or classifiers to improve chromite separation efficiency.
- Downstream Integration: Combine gravity separation with magnetic separation (wet high-gradient magnetic separators) for maximum chromite recovery from tailings.
Recommended Chrome Recovery Flow Sheet
A typical chrome recovery setup might include:
- Crushing and Screening — To prepare feed.
- Desliming (hydrocyclones) — To remove ultrafines.
- Spiral Concentrators — For initial rougher separation.
- Shaking Table or Cleaner Spirals — For higher grade concentrates.
- Magnetic Separation — To recover additional chromite particles.
By tailoring the circuit and focusing on equipment optimization, you can recover high-grade chrome efficiently while minimizing losses in tailings.
Firma Prominer (Szanghaj) Mining Technology Co., Ltd. specjalizuje się w dostarczaniu kompleksowych rozwiązań w zakresie przeróbki minerałów i zaawansowanych materiałów na całym świecie. Nasze główne obszary działania obejmują: przeróbka złota, wzbogacanie rud litu, minerały przemysłowe. Specjalizujemy się w produkcji materiałów anodowych i przeróbce grafitu.
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