Skip to main content
Conference Proceedings

Gravity Gold 2010 Conference

Conference Proceedings

Gravity Gold 2010 Conference

PDF Add to cart

Modelling the Effect of Gravity Gold Recovery on Leaching Performance

A model has been developed as part of the AMIRA P420 Gold Processing Technology Project to simulate the recovery of gold by centrifugal gravity devices. The model (which is available online) uses the simulation methodology developed by Laplante et al (1995) to predict gravity recoverable gold (GRG) recovery under varying operating conditions and circuit configurations. In addition to predicting GRG recovery, the model also predicts the GRG content and size distribution of the cyclone overflow and underflow._x000D_
The predicted overflow GRG content and size distribution can be used as inputs for a leaching model in which size dependent leaching rates are applied for each size class of GRG and non-gravity recoverable gold (non-GRG) in the cyclone overflow, allowing size-by-size leach recoveries to be determined for GRG and non-GRG._x000D_
The application of the gravity model and leaching model are demonstrated using a case study._x000D_
The simulated gravity recovery and leaching performance showed excellent agreement with the measured values._x000D_
The developed models can be used to assess the sensitivity of gravity gold and leach recoveries to varying feed GRG content, GRG size distribution, gravity circuit feed rate, classifier performance and leach residence time._x000D_
The described methods can be used to optimise new and existing gravity and leaching circuits.
Return to parent product
  • Modelling the Effect of Gravity Gold Recovery on Leaching Performance
    PDF
    This product is exclusive to Digital library subscription
  • Modelling the Effect of Gravity Gold Recovery on Leaching Performance
    PDF
    Normal price $22.00
    Member price from $0.00
    Add to cart

    Fees above are GST inclusive

PD Hours
Approved activity
  • Published: 2010
  • PDF Size: 0.288 Mb.
  • Unique ID: P201008021

Our site uses cookies

We use these to improve your browser experience. By continuing to use the website you agree to the use of cookies.