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  • TMS
    Leaching of Lead from Solder Material used in Electrical and Electronic Equipment

    By Vinay Kumar, Jae-Chun Lee, Rakesh Kumar, Manis Kumar Jha, Archana Kumari, Pankaj Choubey

    Present work is a part of developing novel recycling technique for waste printed circuit boards (PCBs) i.e. the liberation of metals from PCBs by organic swelling followed by the treatment of resin to

    Jan 1, 2011

  • TMS
    Leaching Of Metal Nickel In Copper Sulfate Solutions In The Presence Of Oxygen And Chloride-Ion

    By M. I. Kalashnikova

    The leaching of metal nickel in copper sulfate solutions is investigated. It is established, that irre-spective of presence or absence of chloride-ion and oxidizer (oxygen) in system process can be di

    Jan 1, 2006

  • TMS
    Leaching Of Petroleum Catalysts With Cyanide For Palladium Recovery

    By P. L. Sibrell

    The U.S. Bureau of Mines has tested cyanide leaching for recovery of palladium (Pd) from spent petroleum processing catalysts. Three different catalyst samples were supplied by a spent-catalyst proce

    Jan 1, 1995

  • TMS
    Leaching Of Precious Metal Ores Using Thiosulfate

    By Jack S. McPartland

    Historically, research on thiosulfate leaching of precious metals ores has been focused on processing of difficult to treat ores. Thiosulfate leaching of ores and concentrates containing sulfide miner

    Jan 1, 1999

  • TMS
    Leaching Of Vanadium From The Roasted Vanadium Slag With High Calcium Content By Direct Roasting And Soda Leaching

    By Hai-Peng Guo, Lu Jiang, Xiao-Man Yan, Bing Xie, Hong-Yi Li

    Traditional, calcium compounds cannot be used in vanadium extraction processing due to the limitation of sodium roasting technology, which results in unsatisfied dephosphorization for vanadium-contain

    Jan 1, 2015

  • TMS
    Leaching Studies for Metals Recovery from Waste Printed Wiring Boards

    By Alex Luyima, Honglan Shi, Lifeng Zhang, Yongqing Jiang

    "Leaching process has been suggested to recover most metals from waste PWBs. In this study, the leaching behavior of most metals present in waste PWBs is evaluated before and thermal treatment. Differ

    Jan 1, 2012

  • TMS
    Leaching Studies for the Recovery of Metals from the Waste Printed Circuit Boards (PCBs)

    By Manis Kumar Jha

    Leaching studies were carried out for the recovery/ recycling of metals from PCBs containing 17.05% Cu, 0.74% Ni, 1.74% Fe, 4.35% Pb and 8.32% Sn using various acids such as H2SO4, HCl and HNO3. While

    Jan 1, 2010

  • TMS
    Leaching Study of a Zinc Concentrate Ore by Factorial Design

    By Luísa Maria Abrantes

    Environmental control is becoming more and more stringent. As conventional processes for zinc production are pollutant routes, alternative methods have become an important subject of research. In this

    Jan 1, 2001

  • TMS
    Leaching Sulfur from Pressure Acid Leaching Residue of Zinc Concentrate: Parameter Optimization Using Response Surface Methodology

    By Peng Peng, Ouo Cheng, Guodong Lai, Lijuan Chu, Zebiao Zhang

    "The pressure acid leaching residue of zinc concentrate contains a large quantity of sulfur. The present study attempts to leach sulfur using a mixture of ammonium sulfide and water solution at 25°C.

    Jan 1, 2012

  • TMS
    Leaching Toxicity of PB and BA Containing in Cathode Ray Tube Glasses by SEP-TCLP

    By Fu-Shen Zhang, Mengjun Chen, Jianxin Zhu

    "In the present study, different types of cathode ray tube (CRT) glasses were examined by sequential extraction combined with TCLP to provide possible explanations for how Pb and Ba leach out from the

    Jan 1, 2011

  • TMS
    Lead and Zinc Mineralization at Story Creek, Colville Mining District, Alaska

    By C. A. Summers

    The U.S. Bureau of Mines applied process mineralogy to investigate a lead and zinc deposit located near Story Creek, Colville Mining District, Alaska. Mineralization is hosted by the Kayak Shale in ve

    Jan 1, 1991

  • TMS
    Lead and Zinc: A Study of Toxicological Contrasts and Shared Regulatory Concerns

    By C. J. Boreiko

    Traditional patterns of lead and zinc utilization are being evaluated in accordance with new paradigms that seek to ensure the long-term compatibility of global industrial activity with precepts of su

    Jan 1, 2000

  • TMS
    Lead Anodes Performance in Nickel Electrowinning

    By Matthew Tunnicliffe, Akram Alfantazi, Paul Nesbitt, Farzad Mohammadi

    "Lead and its alloys are proper candidates for anodes in electrowinning processes mainly because they are insoluble in the leach solutions and relatively cheap. However, the annual cost of corrosion p

    Jan 1, 2012

  • TMS
    Lead Batteries, Power and Protection for the 90's

    By Michael G. Mayer

    Since its invention in 1859 various designs of lead batteries have evolved to meet commercial needs for traction applications and standby power. In recent years major developments have taken place in

    Jan 1, 1990

  • TMS
    Lead in the 1990s: Continuing Growth or Beginning of the End?

    By Jeffrey L. Zelms

    Environmental issues and how they are addressed -- or not addressed -- by the lead industry in the 1990s will determine the eventual fate of lead mining in both the U.S. and worldwide. Clearly, govern

    Jan 1, 1990

  • TMS
    Lead Ions And Sphalerite Recovery In Copper Rougher Flotation

    By C. Sui

    A common objective in many Cu/Zn concentrators is to reduce the loss of Zn to the Cu-concentrate. One suspected source of the problem is accidental activation of sphalerite by heavy metal ions such as

    Jan 1, 1999

  • TMS
    Lead Product Development in the Next Millennium

    By R. D. Prengaman

    Lead usage in paint, anti-knock gasoline additives, pipes, seals, and solder has declined markedly over the past 30 years. Products utilizing the unique properties of lead and its ability to be recycl

    Jan 1, 2000

  • TMS
    Lead Recycling From Battery Scrap And Other Raw Materials In Metaleurop's Lead Smelting Plan In Oker

    By Gernot Schenker

    With the shut-down in the mid-1970s of the last shaft furnaces in the Harz Smelter Plant the long tradition of the Primary Lead Smelter in Oker came to an end. A continuation of the concern was nevert

    Jan 1, 1990

  • TMS
    Lead Recycling Process for Selective Recovery of Precious Metals From Argentopyrite Concentrates

    By J. R. Parga

    A shortage of landfill space and growing environmental concerns in Mexico are renewing interest in the recyclability of scrap from automobiles. This work describes a pyroumetallurgical process for the

    Jan 1, 1996

  • TMS
    Lead Recycling Utilising Short Rotary Furnaces

    By H. Forrest

    Lead smelting at Cookson Industrial Materials was formerly carried out using a combination of Blast and Reverberatory Furnaces. In the late 70' s these furnaces were replaced by two 20 tonne capa

    Jan 1, 1990