Search Documents

  • SME
    Recovery Of Phosphate Values From Benefication Wastes

    By N. Abdel-Khalek, A. Youssef

    The tailings from beneficiation of Florida phosphate ore contain considerable phosphate values. These tailings are currently discharged into large disposal areas. More than three million tons of P2O5

    Jan 1, 2002

  • SME
    Recovery Of Phosphate Values From Slimes

    By C. M. Rastle

    Resource Technology Associates (RTA) has developed a flocculation-flotation process that increases phosphate recoveries from current operating plants. A major advantage of the process is the ability t

    Jan 1, 1988

  • IOM3
    Recovery of phosphate values from, and flocculation of, phosphatic clay waste from Abu-Tartur, Egypt

    By M. K. Abd El-Rahman

    A complete chemical analysis of the waste showed that it contains 15.64% P2O5; X-ray diffraction analysis revealed that it is composed mainly of francolite, calcite, pyrite, quartz and dolomite. The p

    Jun 21, 1905

  • SME
    Recovery Of Phosphates By In Situ Fluid Mining

    By Sylvain J. Pirson

    A fluid mining process has been developed by the writer whereby phosphate deposits are leached in place through the injection of a weak and recoverable acid solution much in the same manner as in the

    Jan 1, 1959

  • TMS
    Recovery of Phosphorous and Rare Earth Elements from an Apatite Concentrate

    By Mahmood Alemrajabi

    When LKAB processes their iron ores in northern Sweden, they generate apatite as a by-product. The apatite has been recovered by flotation and the concentrate contains about 0.4 wt% rare earth element

  • SME
    Recovery of Pillars Between Blasthole Shrinkage and Sublevel Stopes at the Pea Ridge Mine

    By James C. Irvine

    Pea Ridge Iron Ore Co., previously Meramec Mining Co., a joint venture by Bethlehem Steel Corp. and St. Joe Minerals Corp., mines and pelletizes iron ore at the Pea Ridge mine. The Pea Ridge property,

    Jan 1, 1982

  • TMS
    Recovery Of Platinum And Palladium From Spent Automobile Catalytic Converters By Leaching With, Solutions Containing Halogen Salts, Ammonium And Oxidants

    By Xinghui Meng

    The recovery of platinum and palladium from automotive catalysts has been investigated by leaching in iodide solutions with oxidants including oxygen and iodine in an autoclave. An ammonium salt was p

    Jan 1, 1995

  • TMS
    Recovery Of Platinum Group Metals From Automobile Catalysts--Pilot Plant Operation

    By R. J. Kuczynski

    The U.S. Bureau of Mines Reno Research Center operated a batch pilot plant to demonstrate high-temperature cyanide leaching for recovering platinum group metals (PGM) from automobile catalysts. Approx

    Jan 1, 1995

  • TMS
    Recovery Of Platinum Group Metals From Automobile Catalytic Converters - A Review

    By Rajesh Kumar Mishra

    About 500,000 troy ounces of Platinum Group Metals (PGM) will be available for recycling each year from spent automobile catalytic converters in North America alone. Platinum Group Metals? from spent

    Jan 1, 1989

  • CIM
    Recovery of Platinum Group Metals Using Perovskite-Type Oxide

    By Masashige Makifuchi, Hiroki Kumakura, Kota Nagai, Takahiro Kikuchi

    "A large amount of platinum group metals (PGM) are used in automobile catalyst. It is important to recover the metals from wasted catalyst. Nomura and Kageyama (2013) suggested recovery process that P

    Jan 1, 2016

  • CIM
    Recovery of Platinum Group Minerals from Grinding Circuits: A Protocol for Prediction

    By N. Mejia, Z. Xiao, D. Fragomini, A. R. Laplante

    "The adaptation to platinum-group minerals (PGMs) of a protocol developed to predict gold recovery by gravity is presented. The protocol is based on three different data sets: ore characterization of

    Jan 1, 2004

  • TMS
    Recovery of Polypropylene from Lead-Acid Battery Scrap

    By A. Siegmund, Gerhard Martin

    The recycling of metal containing scrap is a common practice in the industry and has a long tradition. . In rec~nt years, this philosophy has been transferred to organic materials, in particular to th

    Jan 1, 2000

  • TMS
    Recovery Of Polypropylene From Spent Lead Acid Batteries

    By Michael E. Stout

    The recovery of the constituent components of spent lead acid batteries was pioneered in the early 1970's by M.A. Industries, Inc. MA's main reason for research and development in this area

    Jan 1, 1995

  • CIM
    Recovery of Precious Metals by Means of Adsorption Using Persimmon Tannin Gels

    By K. Ohto, B. B. Acihikari, H. Kawakita, M. Gurung, S. Alam

    Two kinds of adsorbents were prepared from persimmon tannin extract to investigate their adsorption behavior of metal ions from hydrochloric acid solution; one was prepared by treating with concentrat

    Jan 1, 2011

  • TMS
    Recovery of Precious Metals from Chloride Media Using Microalgae Waste from Biofuel Extraction

    By Kinya Atsumi, Kanjana Khunathai, Hisaya Kato, Hidetka Kawakita, Keisuke Ohto, Katsutoshi Inoue

    "Crosslinked microalgae were prepared from the residue generated in the production of biofuel, by crosslinking-condensation in concentrated sulfuric acid. These microalgae were tested for adsorption o

    Jan 1, 2011

  • AUSIMM
    Recovery of Precious Metals from Chloride Solution by Magnetite

    Recovery of Precious Metals from Chloride Solution by Magnetite The development of environmental-friendly lixiviants as alternatives to cyanide and the increasing recycling activities to recover prec

    Sep 13, 2010

  • TMS
    Recovery of Precious Metals from Cyanide Solutions Using Ion-Exchange Resins

    By C. R. Palmer

    The Bureau of Mines investigated the use of ion-exchange technology for the recovery of precious metals from cyanide leach and spent electrolytic solutions. This research included adsorption of gold a

    Jan 1, 1988

  • IMPC
    Recovery of Precious Metals from Wastewater by Neutralization and Reduction

    By K. Takahashi

    Generally speaking, wastewater coming from the metallurgical process for recovering precious metal contains precious metals such as gold (Au), platinum (Pt), palladium (Pd), Silver (Ag), etc., which c

    Jan 1, 2014

  • SAIMM
    Recovery of precious metals using sulfur-impregnated carbonaceous adsorbent, T. Wajima

    By T. Wajima

    Recovery of precious metals from hydrochloric solution using sulfur-impregnated carbonaceous adsorbent was examined. Sulfur-impregnated adsorbent with adsorption abilities of precious metals can be pr

    Jan 1, 2020

  • IMPC
    Recovery of Pt, Pd and Au from a cyanide solution through a carbon adsorption and elution process

    By Andries Van Wyk, Steven Bradshaw, Guven Akdogan, Jacques Eksteen, Cornelius Snyders, Cleophace Mpinga

    "In order to exploit lower grade and complex platinum group metal resources, cheaper and more efficient alternatives to the conventional mill-float-smelt-refine route are being sought, particularly fo

    Jan 1, 2014