Skip to main content
Conference Proceedings

13th Congress The Council of Mining and Metallurgical Institutions, Singapore, 6 Volumes

Conference Proceedings

13th Congress The Council of Mining and Metallurgical Institutions, Singapore, 6 Volumes

PDF Add to cart

High Pulp Density Hydraulic Fills

Hydraulic fill using surface sand deposits or cycloned tailings has been used in underground mining for at least fifty years. Current technology requires a permeable fill and high cement additions for strong fill._x000D_
Shortages in quantities of acceptable fill with finely ground ore may require rockfill or aggregate to be introduced as a supplement and these usually incur additional distribution costs. Alternative approaches to the problem are now being developed whereby the pulp density of the fill is raised so that it is delivered either as a dense slurry or as a paste. These regimes of fill behaviour are defined together with the plant and pumping techniques required to prepare and deliver the materials. Test techniques to define the different regimes of behaviour are identified and the variation in material properties for fills with varying pulp densities are outlined. The results indicate that high pulp density fills are stronger and have less permeability restrictions than conventional fills and that aggregate can be carried with the pulp. Thus the disadvantage of finer materials can be turned into an economic advantage. Criteria are developed for defining the type of operation suited to this Technology.
Return to parent product
  • High Pulp Density Hydraulic Fills
    PDF
    This product is exclusive to Digital library subscription
  • High Pulp Density Hydraulic Fills
    PDF
    Normal price $22.00
    Member price from $0.00
    Add to cart

    Fees above are GST inclusive

PD Hours
Approved activity
  • Published: 1985
  • PDF Size: 0.277 Mb.
  • Unique ID: P198601044

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.