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  • CIM
    Recovery of Nickel from Lime Treatment Sludge by Leaching and Ozonation

    By F. Barriga-Ordonez, J. A. Finch, L. Calzado, S. R. (Ram) Rao

    Sludge, formed by lime treatment of acidic drainage and stored in tailing ponds of the Sudbury region, contains 5-7% Ni, mostly in a mix of hydroxides with Fe (~ 10%), Mg (~ 10%) and Cu (-0.5%), and C

    Jan 1, 2005

  • TMS
    Recovery of Nickel from Spent Electroless Nickel Plating Solution by Solvent Extraction

    By Mikiya Tanaka, Mikio Kobayashi, Mansour A. S. A1Ghamdi, Kenji Tatsumi, Yukinori Saiki, Hirotaka Senba

    "In order to recover nickel ion in a spent electroless nickel - phosphorus alloy plating bath and, at the same time, to remove impurities such as iron and zinc, the applicability of solvent extraction

    Jan 1, 2000

  • TMS
    Recovery of Nickel-Cobalt Alloy from Superalloy Scrap

    By J. L. Holman

    The Bureau of Mines is investigating recovery of Ni, Co, Cr, and other metals from mixed contaminated supera110y scrap. The scrap is melt-refined and cast into anodes for electrodeposition of recyclab

    Jan 1, 1987

  • CIM
    Recovery of Nickel-Containing Coatings with Hydro-Biotechnological Methods

    By H. Pempel, J. Markowski, P. Ay

    "Metal-coated thermoplastic parts find more and more functional and aesthetic applications in the interior and exterior of cars. The vapor-deposited or electroplated coatings are usually composed of a

    Jan 1, 2017

  • SME
    Recovery Of Non-Ferrous Metals By Means Of Permanent Magnets ? 1. Introduction

    By David B. Spencer

    This paper describes a process for separating non-ferrous metals such as aluminum, copper and zinc, from other residential and industrial waste by means of permanent magnets. Although the separator ma

    Jan 1, 1975

  • TMS
    Recovery of Non-Ferrous Metals from Spent Catalysts

    By Clyde S. Brooks

    This paper undertakes to assess what opportunities exist for the economical recovery of non-ferrous metals from spent catalysts. The most promising recovery appears to lie with metals such as Co, Mo,

    Jan 1, 2000

  • SME
    Recovery Of Non-Magnetic Minerals With A Gravity-Magnetic Separator

    By E. Martinez

    A heavy mineral sand sample was tested containing 13% heavy mineral consisting of rutile, zircon, and ilmenite. Eleven tests were run at a mill site with a Mineral Deposit Limited MG 4 spiral to deter

    Jan 1, 1992

  • AUSIMM
    Recovery of Old Mine Workings in Weak Ground

    By McCarthy P. L

    With production at Olympic Dam scheduled to commence in June 1988, it has been necessary to install a complete underground ore handling system capable of removing two million tonnes of material a

    Jan 1, 1988

  • CIM
    Recovery of Osmium and Rhenium from the Copper Ores of Kazakhstan

    By Z. S. Abisheva

    The Zhezkazgan copper sulfide ore deposit in Kazakhstan contains both rhenium and the rare osmium isotope "osmium-187" (187Os) in the high isotopic purity of 99.4 ± 0.2%. This isotope is believed to h

    Jan 1, 2007

  • IMPC
    Recovery Of Osmium From The Wastewater Of Copper Production

    Results of the study of chloride ion concentration effect to osmium-187 sorption from wastewater of copper smelter with use of foreign anionites of different basicity and structure are presented in th

    Sep 1, 2012

  • SME
    Recovery Of Oxidized Coal Fines In Tailing Inpoundments By Alkyolamide - Oil Flotation ? Introduction

    By Felicia F. Peng

    One of the serious environmental problems related with the extraction of coal for carbon and energy resources is that upon preparation of coal a large quantity of fine coal has been discarded and/or l

    Jan 1, 1982

  • IOM3
    Recovery of palladium from an exhausted catalyst by chlorination: effect of carbon content and thermal treatment

    By M. C. Ruiz, M. E. Godoy, J. B. Rivarola, M. W. Ojeda

    The amount of Pd recovered from an exhausted olefin hydrogenation catalyst was found to depend on mixing technique, particle size, carbon percentage, chlorine flow, reaction time and temperature. Pd e

    Jun 21, 1905

  • TMS
    Recovery of Palladium from Spent Catalysts—A Critical State-of-the-Art Review

    By Paula Ana Paiva

    The high economic value and unique technological properties of the platinum-group metals (PGMs), plus their growing scarcity in the Earth’s crust, justify the crucial importance of developing recyclin

  • TMS
    Recovery of Pd from Waste Solution Containing Pd Catalyst Used in Copper Non-Electric Plating

    By Junji Shibata

    Through-hole copper plating is performed to make a multi-layer printed circuit board. The through hole plating is first carried out by Pd catalyst treatment, followed by copper non-electric plating. T

    Jan 1, 2003

  • AUSIMM
    Recovery of Pentlandite and Chalcopyrite from Tailings by Bi-Cyclone Powerful Flotation Column

    Recovery of Pentlandite and Chalcopyrite from Tailings by Bi-Cyclone Powerful Flotation Column

    Sep 13, 2010

  • AIME
    Recovery Of PGM From Automobile Catalytic Converters

    By John A. Bonucci

    AMAX Base Metals R&D, Inc. has developed technology for extracting and recovering platinum and palladium from spent automobile exhaust emission control catalyst. Our most promising route is a chloride

    Jan 1, 1984

  • SME
    Recovery Of Phosphate From Florida Beneficiation Slimes II. Dispersion As The First Step

    By P. Zhang

    Phosphate mining in Florida generates approximately 100,000 tons/day of phosphatic clays (slime). This waste slime not only creates one of the most difficult disposal problems in the mining industry,

    Jan 1, 1998

  • SME
    Recovery Of Phosphate From Florida Beneficiation Slimes III. Small Hydrocyclone As The First Step

    By P. Zhang

    Previous studies have shown that separation of clay minerals from non-clay minerals is the key to economic recovery of the phosphate from the waste phosphatic clays (slime) which represent about 20- 3

    Jan 1, 1998

  • SME
    Recovery Of Phosphate From Florida Operations Slimes

    By C. E. Jordan

    The Tuscaloosa Metallurgy Research Center of the Bureau of Mines, U.S. Department of the Interior, is investigating the recovery of phosphate from beneficiation slime, as part of the Bureau's eff

    Jan 1, 1978

  • SME
    Recovery of Phosphate Minerals from Silicate and Carbonate Ores Using Selective Flocculation

    By S. A. Beeson, C. Poole

    This paper describes the development of a novel selective flocculation technique for recovering phosphate values from ores containing silicate or carbonate gangue minerals. Data from initial flocc

    Jan 1, 1999