Search Documents

Sort by

  • SME
    Acid dissolution of iron-bearing zinc concentrates - A first step towards residue-free zinc refining?

    By T. van Sandwijk, G. Van Weert, E. Molleman

    This paper reports on test work that explored the dissolution/precipitation reaction: ZnS + 2HCl - ZnC12 + H2S, which is part of a process used in the production of pure ZnS. The research focused on t

    Jan 1, 1999

  • AIME
    Acid Drainage from Coal Mines

    By S. A. Braley

    THE first commercial production of bituminous coal in the United States was in 1820, and formation of acid in the areas from which the coal was removed began at that time. Thus it is 130 years since t

    Jan 8, 1951

  • AUSIMM
    Acid Drainage From Derelict Coal Mines in an Urban û Rural Environment of New South Wales ù Holding a Tiger by the Tail

    The New South Wales Department of Mineral Resources has, since 1974, administered the Derelict Mines Rehabilitation Program (DMRP) to reduce the environmental impacts of abandoned and orphan mine site

    Jan 1, 2003

  • TMS
    Acid Extraction of AI, Ti, and Fe Salts from Fly Ash, Red Mud, and Aluminosilicate Minerals

    By Charles A. Sorrell

    Two red muds, two fly ashes, and several aluminosilicate minerals were subjected to direct treatment with concentrated H2SO4 at temperatures of 175°C and below. X-ray analysis showed that virtually al

    Jan 1, 1982

  • TMS
    Acid Ferric Sulfate Leaching of Attritor-Ground Chalcopyrite Concentrates

    By L. W. Beckstead

    The use of acid ferric sulfate solution as a lixiviant for chalcopyrite concentrates has been of little interest from a practical standpoint due to the formation of a tenacious layer of elemental sulf

    Jan 1, 1976

  • AUSIMM
    Acid Generating Potential of Waste Rock and Coal Ash in New Zealand Coal Mines

    By A H. Clemens, P Lindsay

    Acid producing potential static tests have been undertaken on sample lithologies from New Zealand coal mines, to rank the lithogies into acid producing waste rock and stable non-acid producing waste r

    Jan 1, 1999

  • AUSIMM
    Acid Generation Behaviour of Chalcopyrite and Pyrite Under Column Leach Conditions

    By A R. Gerson

    Pyrite, chalcopyrite and mixed sulfide samples, with and without quartz (5 wt per cent S), were subjected to column leaching to mimic natural weathering (cyclic wetting and drying). The pH and SO4 2-

    Jan 1, 2003

  • CIM
    Acid Generation by In-Situ Sulfur Biooxidation for Copper Heap Leaching

    By P. G. West-Sells

    At Barrick's Zaldivar Copper Mine in Chile, the addition of sulfuric acid to the ore going to heap leaching is a major expense. A process in which a portion of this acid is replaced by elemental

    Jan 1, 2007

  • SME
    Acid Leach Pond Closure via Demonstrated Natural Attenuation

    By Jeffrey Anderson, Cindi Byrns, Andy Davis

    A closure plan was developed for the Intera Pond Facility, a former acid leaching collection pond at the BHP Robinson Mining Operations. To properly close the Intera Pond Facility, an engineering plan

    Jan 1, 2000

  • AIME
    Acid Leaching

    SULFURIC ACID U.S. 4,070,260 - Sulfuric acid leaching of willemite, hemimorphite, or other zinc silicate ore. Ore is leached with at least a stoichiometric amount of a IN to 6N sulfuric acid soluti

    Jan 1, 1979

  • AIME
    Acid Leaching (bbfeb177-b792-4a33-acbf-c1ebfb416f7a)

    US 4,132,758-Leaching of copper sulfide ore using nitrogen dioxide as the oxidant A slurry of ore in sulfuric acid is contacted with a nitrogen dioxide-containing gas at a temperature below 11 5" C an

    Jan 1, 1980

  • AIME
    Acid Leaching - Other

    US 4,189,461-Hydrometallurgical extraction of values from a sulfide ore of copper, silver, nickel, cobalt, molybdenum or zinc Ore is leached in a first stage with an aqueous nitric acid leach liquor a

    Jan 1, 1982

  • AIME
    Acid Leaching - Sulfuric Acid

    US 4,192,851-Recovery of elemental sulfur and the metal values from a complex sulfide ore containing two or more of the metals zinc, lead, copper, silver, gold and/or other metals. A mixture of ore an

    Jan 1, 1982

  • TMS
    Acid Leaching Mechanism And Kinetics Of Selected Secondary Materials For Alumina Recover

    By S. Vukcocic

    A long term research project is in progress to establish the parameters of an acid leach process to recover alumina 'froui' high-iron and/or low-iron white bauxites, kaolinite, coal. ash and

    Jan 1, 1992

  • AUSIMM
    Acid leaching of chromite-bearing nickeliferous laterite from Rockhampton, Queensland

    Mineralogical analysis of a nickeliferous laterite from the Rockhampton region shows that the nickel is largely associated with the manganese wad and opaline silica. The laterite also contains an appr

    Jan 1, 1986

  • IOM3
    Acid leaching of glauconitic sandstone

    By T. Sharma, T. C. Rao

    Laboratory studies have been carried out on acid leaching as a possible route for the extraction of potassium from glauconitic sandstone. Leaching efficiencies with sulphuric, hydrochloric and nitric

    Jan 12, 1992

  • SAIMM
    Acid Leaching Of Heavy Metals From Bentonite Clay, Used In The Cleaning Of Acid Mine Drainage ? Synopsis

    By F. Enslin

    Heavy metals and sulphates in acid mine drainage (AMD) can beadsorbed onto bentonite clay, leaving clean water and a heavy metal loaded clay precipitate as products. Due to the toxicity of heavy metal

    Jan 1, 2010

  • SME
    Acid Leaching Of Uranium From Some South Dakota Lignites

    By Shiou-Chuan Sun

    This paper is to be presented at the Annual Meeting of the American Institute of Mining, Metallurgical and Petroleum Engineers, New York, New York, February 18-22, 1962. Permission is hereby given to

    Jan 1, 1962

  • TMS
    Acid Leaching Zinc And Indium With Reduction Ferric Simultaneously From Marmatite And High-Iron Neutral Leaching Residue

    By Chang Wei, Fan Zhang, Zhigan Deng, Minting Li, Cunxiong Li, Gang Fan, Xingbin Li

    Marmatite is an important resource of zinc, which exist in forms of high iron and high indium. In order to recycle the valuable metal from these ores, the testwork of simultaneous leaching on neutral

    Jan 1, 2016

  • NIOSH
    Acid Mine Drainage - Formation Of Acid Mine Drainage (AMD)

    By Ronald D. Hill, Elmore C. Grim

    The removal of overburden often exposes pyritic materials (iron disulfide). As shown in equations 1 and 2, the oxidation of this material results in the production of ferrous iron and sulfuric acid. T

    Jan 1, 1974