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  • SAIMM
    Zimbabwe Alloys: The First Fifty Years Of Operation, Challenges, And Opportunities

    By M. Machikicho, N. R. Shoko, J. Chirasha

    Keywords: Pyrometallurgy, furnace, ferrochromium, alloys, Zimbabwe Zimbabwe Alloys was founded in 1949 by a consortium led by the John Brown Group. It was the first ferrochrome plant in Africa.

    Jan 1, 2006

  • SAIMM
    Zimbabwe’s coloured gemstone endowments – A regional geological overview

    By B. P. von der Heyden, T. Blenkinsop, A. Mamuse

    Zimbabwe hosts a varied array of coloured gemstones. With the exception of emerald deposits and several world-class pegmatites, few of the gemstone occurrences have received detailed attention from th

    Feb 12, 2024

  • AIME
    Zinc - Adherence of Electrodeposited Zinc to Aluminum Cathode (Metals Technology. Oct. 1938)

    By H. R. Hanley, C. Y. Clayton

    One of the most important contributions to the art of electrolytic zinc production has been the aluminum cathode. This has been used in all major production since its commercial developmerit in 1916.

    Jan 1, 1944

  • AIME
    Zinc - Deaeration in Manufacture of Zinc Retorts

    By M. M. Neale

    The pottery department has been aptly described as the "heart of the zinc plant," md every operator of a horizontal-retort plant is acquainted with the fact that good retort practice is the keystone o

    Jan 1, 1944

  • AIME
    Zinc - Design and Operation of the Bunker Hill Slag-treatment Plant

    By H. E. Lee, P. C. Feddersen, D. R. Gittinger, G. W. Dunn, J. B. Schuettenhelm

    The new Bunker Hill slag-treatment plant, designed ior, a capacity of 300 to 400 tons of hot slag per day, was "blown in" April 5, 1943. In the ensuing I5-months period, 157,530 tons of slag was proce

    Jan 1, 1944

  • AIME
    Zinc - Direct Production of Metallic Zinc from Lead Blast-furnace Slag

    By W. T. Isbell, Carleton C. Long

    Zinc recovery from lead blast-furnace slags has heretofore been an indirect process, involving, first, the fuming off and collecting of an impure zinc oxide, and second, the reduction of the zinc port

    Jan 1, 1944

  • AIME
    Zinc - Electrolytic Zinc at Corpus Christi, Texas

    By George H. Cunningham, Allen C. Jephson

    The plant for production of electrolytic zinc recently erected by the American Smelting and Rcfining Co. is situated along Nueces Bay, on the Gulf Coast, some 5 miles west by rail and highway from the

    Jan 1, 1944

  • AUSIMM
    Zinc - Environment Constraints and Opportunities fof a Base Metal

    Plenary Address Zinc is a trace element in all igneous rocks and its background geological occurrence roughly follows iron but at much lower concentration. Living matter reflects this abundance and

    Jan 1, 1993

  • AIME
    Zinc - New Electrolytic Zinc Plant of the American Zinc Company of Illinois (Metals Technology, Aug. 1942)

    By L. P. Davidson

    The new electrolytic zinc plant of the American Zinc Company of Illinois commenced operation in April 1941. The simple flowsheet using the standard current density and the economic reasons that dictat

    Jan 1, 1944

  • AIME
    Zinc - Pneumatic Conveying at Giesche Spolka Akcyjna, Poland (Metals Technology, Feb. 1939).

    By Roy E. Thomas

    Soon after the Waelz p1an.t for the fire concentration of low-grade zinc ores was put into operation in the early part of 1929 at Katowice, it was found that the conveyor equipment for transporting th

    Jan 1, 1944

  • AIME
    Zinc - Production of Electrothermic Zinc at Josephtown Smelter

    By George F. Weaton, Carleton C. Long, H. I. Najarian

    Partial descriptions of the operation of the St. Joseph Lead Company's Joseph-town smelter have been published. In, 1936 the electrothermic production of zinc oxide was described;' in 1939 a

    Jan 1, 1944

  • AIME
    Zinc - Relative Rates of Reactions Involved in Reduction of Zinc Ores (Metals Technology, Apr. 1941.) (With discussion)

    By E. C. Truesdale, W. K. Waring

    The Research,Division of The New Jersey Zinc Company (of Pa.) has conducted, over a period of years, numerous tests of the reducibility of various zinc ores and the reactivity of various kids of coal,

    Jan 1, 1944

  • AIME
    Zinc - Weaton-Najarian Vacuum Condenser

    By H. I. Najarian

    This paper is a companion piece to the description of the electrothermic process that begins on page 141. It will be confined to a brief story of the development. of the Weaton-Najarian vacuum condens

    Jan 1, 1944

  • AIME
    Zinc - World Survey of Electrolytic Zinc, 1936-1943

    By Arthur A. Center

    World production of electrolytic zinc has shown an increase for each year since 1932. Production up to 1936 was summarized in my earlier paper [Trans. A.I.M.E. (1936) 121, 453-4641, a

    Jan 1, 1944

  • SME
    Zinc Alloys Replace Bronze in Mining Equipment Bushings and Bearings

    By Tony S. Calayag

    Throughout the mining industry today, new bearing materials - ZA* high-performance zinc-aluminum alloys - are reducing costs of maintaining and rebuilding a wide range of equipment. As replacements fo

    Jan 7, 1983

  • CIM
    Zinc and brass in ancient India

    By P. T. Craddock, H. V. Paliwal, L. K. Gurjar

    The Indian cultural heritage of mining, smelting and the use of minerals and metals dates back to ancient times. Although the exact date of the commencement of such activities in India is not certain,

    Jan 1, 1999

  • AIME
    Zinc And Cadmium

    By W. M. Peirce, E. A. Anderson

    A FEW metals have been known since the dawn of history. Many have been prepared in quantity only within the present century. Zinc falls into an intermediate category, although there is some evidence o

    Jan 1, 1953

  • SME
    Zinc and Copper Recovery from Smelter Waste Stream Case Study

    By Songlin Ye, Frank Su

    "Recycling valuable metals from waste streams has become increasingly important to the mining and smelting industry in China due to resource depletion and environmental concerns. Predicated on multipl

    Jan 1, 2017

  • TMS
    Zinc and Lead Recovery from Model Ash Compounds

    By Katsuyasu Sugawara, Takuo Sugawara, Shin-ji Abe, Tadakazu Kagami

    "In order to clarify the mechanism and to obtain the fundamental data for heavy metal recovery from an incinerator ash by chlorination, pure chemical reagents, zinc oxide and lead oxide or the fly ash

    Jan 1, 2000

  • CIM
    Zinc and Lead Uses: Technical and Market Trends

    By F. E. Goodwin

    Since the last CIM Zinc and Lead Conference ten years ago, significant technical and market forces have influenced how these metals are used, and the geographic distribution of their uses. Unprecedent

    Jan 1, 2008