Integrated Gold CIP and Sand Aggregates Plant with High-Efficiency Dewatering in China

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Боловсруулах арга

  • Run-of-Mine ore is processed through a scrubbing & washing plant to disintegrate clay and soft weathered materials.
  • Atrommel screen or vibrating screen with high-pressure water sprays separates the raw feed into two main streams:
    • Oversize (+2mm): Primarily consisting of coarse quartz and feldspar particles, directed to the Sand & Aggregates circuit.
    • Undersize (-2mm): Fine slurry containing liberated gold and clay, directed to the Gold CIP circuit.
  • The oversize material from the initial screening is further crushed (if necessary) and classified by size using vibrating screens.
  • Products are washed and stockpiled as commercial construction sandбаconcrete aggregates.
  • Comprehensive Resource Utilization: Maximizes economic return by co-producing gold and high-value construction materials from a single ore source, eliminating traditional tailings ponds.
  • Advanced Technology Integration: The application of the High-Frequency Dewatering Screen is pivotal, enabling dry stacking and high-rate water recovery, which is crucial for sustainable mining in water-scarce regions.
  • Proven EPC Expertise: Successfully delivered a complex, integrated processing plant on a turnkey basis, handling two distinct product lines within one facility.
  • The fine slurry is conditioned with lime and cyanide in an agitation tank.
  • It then flows into a series of CIP (Carbon-In-Pulp) tanks where activated carbon adsorbs the dissolved gold.
  • Loaded carbon is advanced to the elution and electrowinning system for gold recovery, producing gold doré bars.
  • The barren pulp (tailings) from the CIP circuit reports to the dewatering section.
  • The CIP tailings slurry and the wash water from the sand plant are combined and fed to a High-Frequency Dewatering Screen.
  • The High-Frequency Dewatering Screen performs a critical function:
    • Efficiently captures fine solid particles (primarily silt and crushed rock flour) from the slurry.
    • Produces a low-moisture, stackable “filter cake” for dry stack tailings disposal, which is environmentally superior and saves water.
    • The clarified process water passes through the screen and is collected in a recycling pond.
  • Awater circulation system pumps the recycled water back to the scrubbing and screening stages, achieving over 85% water recycling rate.
  • Dramatically reduced freshwater consumption and environmental footprint.
  • Created a new revenue stream from sand and aggregates, significantly improving project economics.
  • Dry stack tailings management enhances safety and facilitates site rehabilitation.

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