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  • AUSIMM
    Laboratory evaluation of ventilation effects on the self-heatingincubation behaviour of high volatile bituminous coals

    By B Beamish

    The concept of a ‘critical velocity zone’ in the longwall goaf environment for the development of a spontaneous combustion event has been supported by numerical modelling. However, there is no experim

    Oct 12, 2022

  • AUSIMM
    Phosphorus Phase Analysis of Medium-Low-Grade Rare-Earths-Bearing Phosphate Ores

    Phosphorus Phase Analysis of Medium-Low-Grade Rare-Earths-Bearing Phosphate Ores

    Sep 13, 2010

  • AUSIMM
    Use of alternative drilling technologies during diamond drilling activities at Ernest Henry Mine – a fractured aquifer case study

    By E Philippa, J Vitanza, C Hawtin, B Miller

    B Miller , E Philippa , C Hawtin and J Vitanza

    Mar 22, 2022

  • AUSIMM
    Silver and Tin Distribution between Copper Matte and Fayalite Slag

    By D R. Swinbourne, T Lehner

    Study of the distribution of minor elements between copper matte andfayalite slag is important in determining appropriate methods tomaximise the recovery of valuable metals and the rejection of harmfu

    Jan 1, 1999

  • AUSIMM
    World-Class IOCG Deposits and Potential Deposits in South Australia

    By P S. Heithersay, M McGeough

    The discovery of Olympic Dam in 1975 and, more recently, Prominent Hill in 2001 and Carrapateena in 2005 demonstrates the potential for world-class IOCG deposits in South Australia. Potential for furt

    Jan 1, 2007

  • AUSIMM
    The Resource Management Act 1991, Where to From Now?

    By J Morton

    The Resource Management Act 1991 represented an innovative and unique piece of planning and environmental legislation when it was introduced. Since the Act was passed into law in 1991 it has been subj

    Jan 1, 2004

  • AUSIMM
    A New Look at Kalgoorlie Golden Mile Geology

    The Kalgoorlie Golden Mile is proposed as an Archaean volcanogenic-type deposit, modified and redistributed along later-developed structures. Rich pyritctelluride and Green Leader gold mineralization

    Jan 1, 1974

  • AUSIMM
    WaihiÆs 2020 Vision: Part C: How Did We Get There - The Process

    By S M. Stewart

    Building and Maintaining Community Relationships   In mining terms, the town of Waihi is distinctive with the Martha mine situated right in the heart of the town. MarthaÆs central location and ot

    Jan 1, 2006

  • AUSIMM
    Exploration Value Drivers and Methodologies

    By P Guj, J A. Bell

    The valuation of early-stage exploration projects requires a valuer to take into account a large number of uncertain value drivers, the interplay among which may be non-linear. This paper examines som

    May 24, 2012

  • AUSIMM
    Wireless System for Monitoring Cave-back Propagation

    By S Steffen, S Talu, J Poulsen, G Watt, A van As, J S. Ooi

    The economic success of cave mining projects is significantly influenced by the secondary fragmentation size distribution of the caved orebody and making the fragmented ore available for extraction. I

    May 9, 2016

  • AUSIMM
    Maghemite - A Source of Heavy Medium for Coal Washeries

    Maghemite - A Source of Heavy Medium for Coal Washeries Use of magnetite as heavy medium in coal preparation plants has been increasing steadily in recent years. It might be in short supply in some a

    Sep 13, 2010

  • AUSIMM
    Orebody Modelling and Mining Method Selection at the Callie Underground Mine

    By A R. Proudman, A H. Purvis

    The Granites Gold Mine Callie gold deposit is located 550 km northwest of Alice Springs in the Tanami Desert. Gold mineralisation occurs due to a complex interplay of geological factors which include

    Jan 1, 1998

  • AUSIMM
    Ventilation Surveys and Model Building - A ConsultantÆs Opinion

    By J Rowland

    "This paper was primarily put together in order to demonstrate what are believed to be acceptablestandards, in relation to ventilation surveys and the subsequent model assembly process. Thiswas brough

    Jun 1, 2012

  • AUSIMM
    Update on Precious Metals in Deep Geothermal Waters of the Taupo Volcanic Zone (TVZ)

    By K L. Brown

    Sampling and analyses of deep waters from Wairakei and Rotokawa geothermal systems indicate a wide range of precious metal concentrations (<0.1 to 23 ppb Au; 6 to 2400 ppb Ag), suggesting that east

    Jan 1, 2006

  • AUSIMM
    Targeting dilatancy in upstream construction

    By A Simmons, J Chan, A Li, Q Gu, D M. Brett

    The paper presents an example of field density achievements using thin layer deposition and solar drying and compares this with compaction data from laboratory testing and field trials of mechanical d

    Jul 1, 2021

  • AUSIMM
    Laboratory Experiments to Quantify the Pull-Out Strength of Single Strand Cable Bolts for Large Boreholes

    In high stress mining environments, production drill rigs are often employed for rapid drilling of boreholes for systematic cable bolting. One outcome of this drilling method is the need for larger bo

    Nov 25, 2010

  • AUSIMM
    She'll be Right Mate - Culture and Safety

    By N S Melkoumian

    While improvements in occupational health and safety (OHS) in the mining industry have decreased fatalities and accidents, little attention has been paid to the cultural confound of 'safety'

    Dec 6, 2010

  • AUSIMM
    Effect of MgO concentration on phase evolution during steelmaking slag cooling process

    By H F. Yu, S Ueda, J Diao, W F. Gu, Y Sasaki, H Qin

    The main reason for the underutilisation of steelmaking slags is their instability, which is influenced by their complex phase structure. Recycling and sustainable steelmaking slag face challenges due

    Jun 19, 2024

  • AUSIMM
    A New Source of Gallium - Geothermal Muds

    The demand for gallium has increased significantly over the last few decades due to the expanding use of Ga compounds in the electronics industry. Because it is widely dispersed and rarely found natur

    Jan 1, 1994

  • AUSIMM
    Volcanogenic Massive Sulfide Deposits in New Zealand

    By R L. Brathwaite

    In New Zealand, volcanogenic massive sulfide (VMS) deposits are found in three main geological environments associated with: 1.   ophiolitic basalts of Oligocene age in Northland and East Ca

    Jan 1, 2005