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  • AUSIMM
    Developing a æNew and InnovativeÆ Process Flow Sheet - Traps for all Players of all Ages

    By J Canterford

    There is an apparent push to develop and commercialise "new and innovative" process flow sheets. A not-too-difficult reality check clearly demonstrates that the success rate of this push is not partic

    Jul 15, 2013

  • AUSIMM
    GekkoÆs Gravity, Flotation and Intensive Leaching (GFIL) Process for Gold Recovery Improves Environmental and Cost Outcomes

    By T Hughes

    Upward pressure on all mining operations is coming from the triple bottom line. To some extent this is being offset by the rise in mineral prices, but this may or may not continue. The other serious i

    Jan 1, 2007

  • AUSIMM
    The Mineral Potential of Northland

    The Northland region of New Zealand has a complex geological history which has long been the subject of considerable controversy. Small mineral deposits have been discovered in the past, and some have

    Jan 1, 1987

  • AUSIMM
    Metallogeny and Related Tectonic Settings in China

    By F Pirajno

    "An EXTENDED ABSTRACT is available for download. A full-length paper was not prepared for this presentation. China’s mineral deposits are the result of metallogenic processes associated with the geody

    Mar 18, 2015

  • AUSIMM
    Preparation of Iron Oxide Feed Stock for Pig Iron/Sponge Iron Production - Role of NMDC

    By Sahoo K. C

    Traditionally, the blast furnace (BF) has maintained a dominant position as the primary source of iron units. Notwithstanding the efficient nature of the process in respect of its material and energ

    Jan 1, 1999

  • AUSIMM
    A Simple On-Stream Xanthate Monitor

    On-stream determination of xanthate concentrations can be made by photometric measurements at 313 nm.A simple double-beam instrument was developed for this purpose. A mercury lamp is used as the light

    Jan 1, 1973

  • AUSIMM
    Coal Mining Disasters in New South Wales and Queensland Between 1920-1979 - A Technical Appraisal

    The disasters between 1920 and 1979 in coal mines in Queensland and New South Wales due to underground fire, gas or coal dust explosion or to gas or coal outbursts, have been assessed. The evidence re

    Jan 1, 1982

  • AUSIMM
    Aqueous Oxidation of Arsenopyrite in Acid

    By Linge HG, Fernandez PG, Hughes HC

    Aqueous oxidation is a possible alternative to roasting for the processing of gold bearing arsenopyrite (FeAsS) concentrates. The reaction has been studied by voltammetry and this has shown, for th

    Jan 1, 1989

  • AUSIMM
    The Mineral Composition of Ore from the Hill 50 Gold Mine, Western Australia

    Ore from the Hill 50 Gold Mine, consists essentially of pyrrhotite, with minor amounts of pyrite, chalcopyrite, galena and gold, replacing "jaspilite." The gold is associated with the sulphi

    Jan 1, 1955

  • AUSIMM
    Rutile Beach Sand from Hard Rock

    Rutile Beach Sand from Hard Rock

    Sep 13, 2010

  • AUSIMM
    Geometallurgy - What do you Really Need to Know from Exploration through to Production?

    By K Ehrig

    You are a geologist, geometallurgist, or metallurgist/process engineer and are fortunate enough to work for an organisation who asks you to design/execute a geometallurgy program. What seems like a si

    Jul 15, 2013

  • AUSIMM
    Production of Cobalt Oxide, Cobalt Sulphate and Electrolytic Cobalt

    In, one stage of the purification sequence of the zinc sulphate electrolyte used at Risdon, cobalt is, precipitated as cobalt nitroso-,B-naphtholate, which is separated from the solution by filtration

    Jan 1, 1949

  • AUSIMM
    The System Silver-Gold: The Reproducibility of Silver Activity Measurements Using the Solid Ionic Conductor, Silver-B-Alumina

    By Browner R, Lincoln F. J

    The activity of silver in solid gold-silver alloys (electrum) has been measured with an electrochemical concentration cell based on the super ionic conductor silver-i3-alumina in the temperature range

    Jan 1, 1983

  • AUSIMM
    Presidential Address, 1954

    Delivered at the University of Sydney, on June 4th, 1954.THE TORCH WE HOLDLast year Our Institute celebrated its Diamond Jubilee, coincident with the holding of the Fifth Empire Mining and Metallurigc

    Jan 1, 1954

  • AUSIMM
    Structural Controls on the Localisation of Low-sulfidation Epithermal Mineralisation in West Java, Indonesia

    By J Widjaja, E Hermawan, M Muharam, L Damanik

    "An EXTENDED ABSTRACT is available for download. A full-length paper was not prepared for this presentation. The island of Java lies within the Sunda-Banda magmatic arc, which is characterised by mult

    Mar 18, 2015

  • AUSIMM
    Gas Well Testing in the Roma Area

    Gas well tests were performed on 17 wells in the Roma area. The procedure used in the test programme incorporates an initial isochronal test followed by what is described as the "two flow drawdow

    Jan 1, 1968

  • AUSIMM
    Laboratory Flotation of Endeavour Inlet, N.Z. Antimony Ore

    Antimony ore samples (mean assay 18·7 per cent antimony) from Endeavour Inlet, Marlborough Sounds New Zealand, were tested for upgrading by flotation to a saleable product (60 per cent antimony).

    Jan 1, 1977

  • AUSIMM
    Variation of the Activity Coefficients of SnO and FeO Tin Smelting Slags

    A slag-metal equilibrium study of the system SnO-FeO-(Si02+Al2O3)/Sn-Fe was carried out at 1250°C. The distribution coefficient, k =(Sn/Fe)metal X (Fe/Sn)slag was found to range from 246 for an i

    Jan 1, 1974

  • AUSIMM
    Barrow Island Development Drilling-The Application of Experience, Equipment and Techniques to Achieve Maximum Economy

    The commercial development of the shallow (2200 ft2 400 ft) Windalia sand reservoir at Barrow Island provided the opportunity to conduct an intensive drilling programme using equipment and techniques

    Jan 1, 1968

  • AUSIMM
    Oxygen Isotope Zonation at the Golden Cross Low-Sulfidation Epithermal Gold Deposit, New Zealand

    By M P. Simpson

    Forty one whole rock samples from the Gold Cross low-sulfidation epithermal Au-Ag deposit have d18O values that range from 4.4 to 9.3 per mil, with an average value of 7.0 per mil. Unaltered and weakl

    Jan 1, 2001