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  • TMS
    Recovery of Un leached Gold Values from CIL TailingS

    By R. E. Brewer

    Pilot scale flotation tests were conducted with a l?ft-diam column at the Barrick Resources (USA) Mercur mine, Tooele County, UT, to scavenge unleached (0.01 to 0.018 oz/st) gold values from the taili

    Jan 1, 1989

  • TMS
    Recovery Of Uranium Using Continuous Countercurrent Ion Exchange,(CCIX)

    By Joseph C. Milbourne

    Tetra Technologies CCIX? (continuous countercurrent ion exchange) system has been involved in a wide range of uranium concentration, separation and purification applications over the past 40 years. Ur

    Jan 1, 1995

  • TMS
    Recovery of Valuable Metals from High-Content Arsenic Containing Copper Smelting Dust

    By Dachun Liu, Xuepeng Li

    Smelting-acid leaching process is a way to treat high-content arsenic containing copper dust. However, smelting makes a low recovery of valuable metals and acid-leaching produces large amounts of arse

    Mar 1, 2017

  • TMS
    Recovery of Valuable Metals from Lead Flue Dust by a Intergrated Process

    By Chao Li, Lim Hongxu, Yuyue Wang, Xie Yang

    "A intergrated process of sulfuric acid leaching, sodium chloride leaching, lead chloride crystallization, lead hydroxide synthesis and roasting was carried out for the recovery of lead, cadmium, copp

    Jan 1, 2014

  • TMS
    Recovery of valuable metals from spent lithium ion batteries by solvent extraction

    By Shun Myung Shin, Dong Hyo Yang

    Cobalt is recovered from square type of spent lithium ion batteries (LIBs) containing 5~20 % Co, 5~7 % Li, 5~10 % Ni, 15% organic chemicals, and 7% plastics together with Cu, Al, Fe, and Mn. The waste

    Jan 1, 2008

  • TMS
    Recovery of Valuable Metals from Waste Printed Circuit Boards by Using Iodine-Iodide Leaching and Precipitation

    By Kazutoshi Haga, Atsushi Shibayama, Altansukh Batnasan

    This study presents a viable approach for recovery of precious metals such as gold (Au), silver (Ag), palladium (Pd), and base metals, including copper (Cu), nickel (Ni), cobalt (Co), lead (Pb) and zi

    Mar 1, 2018

  • TMS
    Recovery Of Vanadium From A High Ca/V Ratio Vanadium Slag Using Sodium Roasting And Ammonia Leaching

    By Xue Sun, Dengfu Chen, Yuting Chen, Mujun Long, Song Xu, Helin Fan

    In order to seek an effective extraction process for vanadium, the recovery of vanadium from a high Ca/V ratio vanadium slag was studied by sodium roasting and ammonia leaching. In the present paper,

    Jan 1, 2014

  • TMS
    Recovery of Vanadium, Molybdenum, Nickel and Cobalt from Spent Catalysts: A New Processing Plant in China

    By M. -V. Wang

    Hydrotreating and hydrorefining (HT and HDS) spent catalysts contain molybdenum, vanadium, nickel or cobalt at concentration levels that can make metals recovery economically viable. Quanzhou Jing-Tai

    Jan 1, 2000

  • TMS
    Recovery Of Yttrium And Neodymium From Copper Pregnant Leach Solutions By Solvent Extraction

    By J. Brent Hiskey, Rebecca Grace Copp

    The solvent extraction of yttrium and neodymium from copper pregnant leach solutions (PLS) using Primene JM-T, a primary aliphatic amine, has been studied. Effect of contact time, pH, sulfate concentr

    Jan 1, 2016

  • TMS
    Recovery of Zinc and Cadmium from Lead Smelter Furnace Dusts at Met-Mex Penoles by a Solvent Extraction Process

    By I. Sofia Fernandez del Rio

    This paper describes a process for the treatment of the dusts generated during the operation of blast and reverberatory furnaces in the lead smelter, to remove zinc, cadmium, arsenic and halides from

    Jan 1, 2000

  • TMS
    Recovery Of Zinc And Manganese From Bunker Hill Water Treatment Plant Sludge: Part II-Eletrowinning Process Development

    By Matthew C. Binsfield

    The simultaneous electro winning of zinc and manganese from waste water treatment plant sludge was studied as a part of the overall research program, which was conducted to develop the methods for rem

    Jan 1, 1996

  • TMS
    Recovery of Zinc from EAF Dust – Pilot Experiences at MEFOS

    By Guozhu Ye, Eric’ Burstrom

    "Despite of numerous solutions for recovery of zinc from EAF dust have been suggested and tested in laboratory scale over the last three decades, Waelz kiln process is still the most dominating proces

    Jan 1, 2008

  • TMS
    Recovery Of Zinc From Ironmaking Dusts By NaOH Leaching

    By Milan Lj. Stamatovic

    The hydrometallurgical recovery of zinc from recycled blast furnace dust from a steel plant (Smederevo Metallurgical Company, Yugoslavia) was investigated. The dust contained 22% Fe, 17% Zn and 0.2% P

    Jan 1, 1994

  • TMS
    Recovery Of Zinc From Residues By Sx-Galvanic Stripping Process

    By M. S. Moats

    The treatment of oxidized residues of zinc with high iron content continues to present a technical challenge in both the steel and zinc industries. Two main problems are commonly identified and includ

    Jan 1, 1995

  • TMS
    Recovery of Zinc from Steel Plant Dust

    By Milan Lj. Stamatovic

    The hydrometallurgical recovery of zinc from recycled blast furnace dust from a steel plant (Smederevo Metallurgical Company - Yugoslavia) was investigated. The dust contained 22% Fe, 17% Zn and 0.2%

    Jan 1, 1993

  • TMS
    Recovery of Zinc from Zinc Ash and Flue Dust by Pyrometallurgical Processing

    By M. A. Barakat

    Large amounts of zinc ash and flue dust containing more than 80 % zinc are accumulated during galvanization processes at the surface of molten zinc bath and in the chimney respectively. Pyrometallurgi

    Jan 1, 2000

  • TMS
    Recovery Of Zinc Metal From Furnace Gases

    By M. I. Hoschke

    The viability of pyrometallurgically treating zinc containing materials is enhanced by recovering zinc metal rather than oxide from furnace gases. During the history of zinc production, there has b

    Jan 1, 1994

  • TMS
    Recovery of Zinc Oxide from Secondary Raw Materials: New Developments of the Waelz Process

    By B. Garcia-Egocheaga, J. Rutten, N. Goicoechea, U. Meurer, Mager K., W. Saage, Simonettim F.

    Because of the increasing use of zinc as an active and passive anticorrosion agent for steel, leading to constantly growing return rates of galvanized steel components, especially through the automoti

    Jan 1, 2000

  • TMS
    Recovery Of Zinc(II) From Spent Hydrochloric Acid Solutions From Zinc Hot-Dip Galvanizing Plants

    By Magdalena Regel-Rosocka

    Extraction of zinc(II) from hydrochloric acid solutions is discussed. The literature on the extraction of zinc(II) in the presence of iron(III) and iron(II) with various basic and solvating reagents h

    Jan 1, 2003

  • TMS
    Recovery Of Zinc, Copper And Nickel From Industrial Effluents Generated By The Electroplating Units Using The "3PE" Technology

    By P. Aguirre

    Recovery of zinc, copper and nickel from electroplating waste solutions was achieved 'by using a Pulsated Percolated Porous Electrode "3PE" reactor on a pilot plant scale. Intensity - potential c

    Feb 13, 2014