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  • AIME
    Zinc Metallurgy in 1930

    By J. A. SINGMASTERN

    THE New Jersey Zinc Co.'s vertical retort plants are believed to have been in continuous operation through the whole year. At Palmerton metal purer than that made from the same ore in the old pla

    Jan 1, 1931

  • AIME
    Zinc Mining and Concentrating at Rosebery

    Spencer Gulf takes off from the Great Australian Bight cutting a 200 mile deep wedge of water into the South Australia coastline. A pale winter sun shines yellowly on the choppy surface of this body o

    Jan 10, 1964

  • AIME
    Zinc Mining At Franklin, N. J.

    By C. M. Haight

    The mines of the New Jersey Zinc Co. in New Jersey, are situated in the northern part of Sussex County, at Franklin, formerly Franklin Furnace, and also at Ogdensburg. The mine at Ogdensburg is still

    Jan 10, 1917

  • AIME
    Zinc Mining At Franklin, N. J. (d7da5827-2874-4f19-9aa1-f9d3852e763a)

    ROBERT PEELE, New York, N. Y. (written discussion *).-This excellent paper is one of a number of recent detailed descriptions of the, methods and plant in use at prominent mines of the country. The pu

    Jan 1, 1918

  • AUSIMM
    Zinc Mining in Permafrost at Polaris

    Cominco Ltd's Polaris Mine in Canada's High Arctic has been successfully mining zinc ore in permafrost since 1981. Mining methods using frozen backfill have been the key to success. The mi

    Jan 1, 1993

  • AIME
    Zinc Ore Reduction

    By Arthur A. Center

    WAR demand- motivated developments in the zinc industry during 1942. Stocks of Prime Western were built up and High-Grade remained tight. The Prince The Prime Western stocks are expected to be cut do

    Jan 1, 1943

  • IMPC
    Zinc Oxide Flotatoin Process Using CPS Technique

    By J. Tian

    "BHP Billiton carried out a pre-feasibility study on the LanPing zinc deposit to evaluate the possibility to jointly develop the zinc deposit into a large-scale zinc project with their Chinese partner

    Jan 1, 2003

  • TMS
    Zinc Oxide from Recycling Processes as a Source for Electrolytic Galvanising

    By Jürgen Antrekowitsch

    Typical zinc oxides recovered from wastes like steel mill dusts and neutral leaching residues are of a low quality because of impurities like fluorine, chlorine, lead and others. Therefore, they are n

    Jan 1, 2008

  • AIME
    Zinc Oxide in Iron-Ores, and the Effect of Zinc in the Iron Blast-Furnace

    By John J. Porter

    UNUSUAL problems have arisen at certain iron blast-furnaces in Virginia through the fact that the ore-supplies, derived from the Oriskany formation, contain from a trace up to 1 per cent. of zinc oxid

    Sep 1, 1907

  • SME
    Zinc Oxide Precipitation from Solutions Containing High Concentrations of Chloride Ions

    By R. E. Johnson, M. Schipper-Zablotskaja, B. R. Palmer, van Sandwijk A.

    A procedure has been developed for the removal of zinc from acid solutions containing aluminum, silicon, calcium, magnesium, sodium, potassium and manganese ions and high concentrations of chloride io

    Jan 1, 1993

  • TMS
    Zinc Oxide Preparation Using Rotary Hearth Furnace Secondary Dust

    By Huanyu Zhang, Zhancheng Guo, Liqiang Fan, Huiqing Tang

    "In this study, a simple process has been developed for zinc oxide recovery from RHF (rotary hearth furnace) secondary dust. The results have shown that a high dissolution efficiency of soluble zinc w

    Jan 1, 2014

  • CIM
    Zinc Plant Expansion by Outotec Direct Leaching Process

    By K. Svens, M. Lahtinen, L. Lehtinen

    "Outotec's direct leaching process is an atmospheric leaching process for sulphidiczinc concentrates. The direct leaching process, based on special leaching reactors developed by Outokumpu and le

    Jan 1, 2008

  • TMS
    Zinc Production - A Survey of Existing Smelters and Refineries

    By J. Peter, S. E. James, J. L. Watson

    A survey of operating zinc smelters and refineries throughout the world has been done in conjunction with the Lead-Zinc 2000 Symposium. This survey follows the examples set by the Japanese Mining Indu

    Jan 1, 2000

  • AUSIMM
    Zinc Recovery From Commercial EAF Dust by the Iron-Reduction Distillation Process

    By A Kyllo a, D R. Swinbourne

    Electric arc furnace (EAF) dusts contain significant quantities of zinc, found almost entirely as either zinc oxide or zinc ferrite. The dust has been classified as a hazardous waste due to the relati

    Jan 1, 2000

  • TMS
    Zinc Recovery from EAF Dust Through Thermal Reduction

    By D. Mishra

    Electric arc furnace dust (EAFD) generated during the recycling of steel- scrap is classified as a hazardous waste for landfilling. This is because it contains leachable heavy metals such as zinc, lea

    Jan 1, 2002

  • SAIMM
    Zinc Recovery From Wastes Using Spent Acid From Scrapped Lead Acid Batteries

    By Zdenek Kunicky

    Kovohute Pribram is a plant recycling lead wastes, lead acid batteries in particular. Relevant new recycling technologies are being gradually developed. Outdated technology of smelting lead plates has

    Jan 1, 2008

  • TMS
    Zinc Recovery From Zinc Oxide Flue Dust During The Neutral Leaching Process By Ultrasound

    By Xuemei Zheng, Aiyuan Ma, Jing Li, Jinhui Peng, Shaohua Yin, Libo Zhang

    Zinc recovery from zinc oxide flue dust (ZOFD) by ultrasound enhanced neutral leaching process was investigated. In this study, the effects of leaching temperature, liquid/solid ratio, leaching time a

    Jan 1, 2015

  • TMS
    Zinc Recycling Through The Modified Zincex Process

    By G. Diáz

    A basic technology coping with a wide range of secondary zinc sources has been developed. The process combines an electrowinning stage, a solvent-extraction unit and a leaching procedure. The acidity

    Jan 1, 1995

  • TMS
    Zinc Recycling via the Imperial Smelting Technology - Latest Developments and Possibilities

    By W. -D. Schneider, B. Schwab

    Like all metals, zinc can be recycled theoretically without end. To demonstrate environmentally friendly use of zinc, it is necessary to increase the recycling rate. In this regard, the Imperial Smelt

    Jan 1, 2000

  • AIME
    Zinc Refinery Site Selection

    Paper withdrawn from publication September 8,1977, after book was printed. Pages 258.272 are therefore omitted.

    Jan 1, 1977