Mineral Processing Circuit of Marigold Mine

Processing and Recovery Methods

The Marigold Mine employs a Run-of-Mine (ROM) heap leaching process combined with Carbon Adsorption/Desorption/Recovery (ADR) and electrowinning to produce a final doré product. The oxide ore is processed entirely via heap leaching, a cost-effective method for gold recovery.

1. Ore Stacking on Leach Pad

– Ore Handling: ROM ore is hauled by trucks and stacked in 6.1 m to 12.2 m lifts on the leach pad.

– pH Control: Pebble lime is added to haulage trucks from a silo to maintain optimal pH before dumping.

– Leach Pad Preparation: Fresh and spent ore are ripped and cross-ripped to enhance permeability.

– Solution Application:

– Drip tubing and impact sprinklers distribute barren solution at 0.122 to 0.143 L/min/m².

– Header and sub-header lines ensure uniform solution distribution.

2. Leaching Solution Distribution

– Pond System:

– Two barren ponds, four pregnant ponds, and one stormwater/overflow pond.

– Ancillary Systems: Sodium cyanide (NaCN) addition (two locations), sodium hydroxide (NaOH) for pH adjustment, and antiscalant injection.

– Leach Pad Expansion:

– Originally constructed in 1990, expanded to 20 cells (with permitting for an additional cell).

– Active Leaching Area: ~0.5 million m² at any given time.

– Solution Pumping:

– Two barren solution distribution systems (total capacity: 43.5 m³/min).

– One lean solution system (max flow: 5.7 m³/min), recycled from low-grade pregnant solution.

– Total flow to pad: 49.2 m³/min.

3. Pregnant Solution Processing

– Carbon Adsorption:

– Pregnant solution is pumped to five parallel carbon column trains (each with five columns).

– Total flow rate: 37.9 m³/min (handled by six vertical turbine pumps).

– Gold Recovery Efficiency (2017): 95.4% from carbon columns.

– Solution Recycling:

– Discharge solution reports to barren ponds for reconditioning (NaCN/NaOH addition) before recirculation.

4. Carbon Processing (Strip Circuit)

– Carbon Elution:

– Loaded carbon is stripped in two vessels (2-ton and 3-ton capacity).

– Stripping Conditions:

– pH 13 (adjusted with NaOH).

– Temperature 141°C (heated via boiler and heat exchangers).

– Solution flow rate: 114–151 L/min.

– Gold Recovery Efficiency (2017): 95.6% from strip circuit.

– Electrowinning:

– Pregnant eluant passes through two parallel 2.1 m³ electrowinning cells.

– A third cell is used for cathode replating.

– Barren solution is recycled until stripping is complete (target: <17.1 g/t gold).

5. Refining

– Retorting & Smelting:

– Electrowinning sludge is retorted (mercury removal) and smelted in a propane-fired furnace.

– Flux is added to produce final doré bars.

– Carbon Reactivation:

– Stripped carbon is screened, acid-washed, and thermally reactivated before reuse.

6. Ventilation & Emissions Control

– Mercury Scrubbing:

– Exhaust gases from stripping, electrowinning, retort, and smelting pass through:

– Deep bed scrubber (sulfur-impregnated carbon) for mercury capture.

– Wet scrubber (water mist) for additional mercury condensation.

Key Equipment & Capacities

– Carbon Columns:

– Existing (2017): 20 columns (five trains).

– Post-2018 Expansion: 30 columns (additional two trains).

– Pumping Systems:

– Barren solution pumps upgraded to 597 kW motors (increasing flow from 43.5 to 53.0 m³/min).

– Pregnant solution pumps expanded to match flow rates.

– Pond Volumes:

– Pregnant ponds: 137,059 m³ (post-expansion).

– Barren ponds: 40,648 m³.

Recovery Rates & Performance

– Heap Leach Recovery (1990–2017): 70.3% (90–120-day leach cycles).

– Carbon Column Recovery (2017): 95.4%.

– Strip Circuit Recovery (2017): 95.6%.

Innovations & Challenges

– 2018 Expansion Projects:

– Upgraded pumping capacity to 53.0 m³/min (eliminating lean solution system).

– Added two carbon column trains to increase throughput.

– Challenges:

– Managing gold-in-solution inventory in the pad.

– Optimizing reagent consumption (NaCN: 0.17 kg/t ore; lime: 0.68 kg/t ore).

Throughput & Capacity

– Solution Flow Rates:

– Pre-2018: 37.9 m³/min (pregnant), 49.2 m³/min (total to pad).

– Post-2018: 53.0 m³/min (matched pregnant/barren flows).

– Power Consumption: 2.3 million kWh/month (2017 average).

Reagent Consumption (2017 Averages)

| Reagent | Consumption (kg/t ore) |

|——————|———————–|

| Sodium Cyanide | 0.17 |

| Lime | 0.68 |

| Caustic Soda | 0.01 |

| Activated Carbon | 0.01 |

This summary provides a comprehensive technical breakdown of the Marigold Mine’s processing circuit, emphasizing operational parameters, recovery efficiencies, and planned optimizations. Let me know if you need further details on any section.

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