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  • AIME
    Rare Earths and Indian Gems Discussed by Tyler and Ball

    By AIME AIME

    TWO papers, "Calcium, Strontium, and Barium Metals," by Charles Hardy and Paul M. Tyler, and "The Mining of Gems and Ornamental Stones by American Indians," by Sydney H. Ball, were presented before th

    Jan 1, 1933

  • CIM
    Rare Earths and Other Mineral Raw Materials: The Many Faces of Criticality

    By R. G. Eggert

    "A critical element, as the term has come to be used, provides essential properties to a modern engineered material and is subject to supply risk. The rare-earth elements became perhaps the most promi

    Jan 1, 2016

  • TMS
    Rare Earths And Rechargeables - The Role Of Ree's In Reversible Metal Hydrides

    By G. D. Sandrock

    The science and technology of roan temperature rechargeable metal hydrides began about 1969 with the discoveries that the intermetallic Compounds LaNi5 and TiFe could be, conveniently hydrided and deh

    Jan 1, 1992

  • SME
    Rare Earths And The Mountain Pass, California Operations

    By Warren N. Warhol

    The mutual growth of the rare earth industry and the Mountain Pass Operations was no coincidence. It was the commercial availability of rare earths on a scale first made possible by the capacity of th

    Jan 1, 1980

  • CIM
    Rare Earths and the Potential for Rare-earth Deposits in Canada

    By J. L. Jambor, T. C. Birkett, W. D. Sinclair

    Abstract -The rare-earth elements (REE) form a significant part of the group of so-called "high­ technology" metals whose glamour has attracted both the scientific community and the mining industry. D

    Jan 1, 1992

  • AIME
    Rare Earths And Thorium

    By Spencer S. Shannon

    The lanthanide elements from lanthanum (atomic number 57) to lutetium (71) plus yttrium (39) are called the rare-earth elements; scandium (21) is chemically similar to yttrium and the lanthanides, but

    Jan 1, 1983

  • SME
    Rare Earths From Lighter Flints To X-Rays ? Discovery

    By Thomas A. Wilson

    Mountain Pass, California is located 96 km southwest of Las Vegas, Nevada, and has an exposed surface orebody within view of Interstate Highway 15. Mineral prospecting in this region dates back to abo

    Jan 1, 1982

  • TMS
    Rare Earths In High And Low Temperature Corrosion Protection

    By Neil E. Ryan

    Because of their chemical reactivity and affinity for oxygen, rare-earth elements are difficult to extract, and due to their close chemical similarity, it is an exacting task to separate one from the

    Jan 1, 1992

  • SME
    Rare Earths in Review - A Decade of Decline & Deception

    "How Wall Street Darling Molycorp Undermined the U.S. Economy, Degraded our National Security and Distorted the Global Economic Balance and How These Falsehoods Continue to be Promoted Even Today INTR

    Jan 1, 2017

  • SME
    Rare Earths Not Rare Anymore

    By F. G. Heivilin

    We are no longer short of viable Rare Earth deposits. As little as 2 years ago China mined and produced 97% ofthe world?s rare earths. Only a few deposits were in an advanced stage of exploration and

    Feb 27, 2013

  • AUSIMM
    Rare Earths Production and Marketing Opportunities

    The rare earths market is relatively small and slow growing. Three applications using mainly cerics rare earths : catalysts, glass-ceramics and metallurgy are volume market. Inside this slow movin

    Jan 1, 1986

  • AUSIMM
    Rare Earths Production in Australia ù Lost or Future Opportunities?

    By J Chegwidden

    Rare earths are a critical minor constituent of many advanced materials that are essential inputs to the manufacture of items such as mobile telephones, computers, televisions and autocatalysts. Altho

    Jan 1, 2001

  • SME
    Rare Earths Recovery and Gypsum Upgrade from Florida Phosphogypsum

    By Z. Jin, D. DePaoli, P. Zhang

    "Phosphogypsum is a byproduct created during the production of industrial wet-process phosphoric acid. This study focused on recovering rare earth elements (REEs) from a Florida phosphogypsum sample a

    Jan 1, 2017

  • IMPC
    Rare Earths Recovery From Black-Shale Ores

    By T. Surkova

    For the moment reserves of high-grade ores are practically depleted requiring ever-increased involvement of low assay raw materials, such as black-shale ores, in industrial operations. Black-shale ore

    Sep 1, 2012

  • SME
    Rare Earths, The Lanthanides, Yttrium and Scandium

    By J. B. Hedrick

    In 2004, rare earths were not mined in the United States. The major supplier, Molycorp, continued to maintain a large stockpile of rare-earth concentrates and compounds. Major uses for these com

    Jan 1, 2005

  • SME
    Rare Earths, The Lanthanides, Yttrium And Scandium - A Look At 2008 Activity

    By J. B. Hedrick

    Rare earths were not mined in the United States in 2008. However, processing of intermediate rare-earth concentrates continued throughout the year at the Mountain Pass Mine in California. Consumption

    Jan 1, 2009

  • SME
    Rare Earths: A Magnet Producer?s Perspective - Introduction

    By S. Constantinides

    Over the past 100 years we have witnessed a revolution in permanent magnetic materials. Prior to 1932 electrical machinery depended upon steels for both the soft and the permanent magnet structures.

    Jan 1, 2011

  • SME
    Rare earths: Their mining, processing, and growing industrial usage

    By K. Nuttall, S. Vijayan, A. J. Meinyk, R. D. Singh

    For conventional applications, there is limited demand for rare earth elements as well as yttrium and scandium. But the emergence of new high technology applications such as supermagnets, lasers, and

    Jan 1, 1989

  • AUSIMM
    Rare Element Distribution and Mineralization in the Pilanesberg Alkaline Complex

    The results of a systematic geochemical survey of rare elements are applied to elucidate genetic relations in a suite of rocks and to predict the probability of mineralization. The geology, radioa

    Jan 1, 1986

  • CIM
    Rare element granitic pegmatites in the Abitibi Greenstone Belt: A case study of the Preissac-Lacorne Batholith

    By T. Mulja, Michel Boily, Anthony E. Williams-Jones, Pierre Pilote

    "The Preissac-Lacorne batholith is composed of suites of early metaluminous calc-alkalic gabbroic to granodioritic intrusives, three late peraluminous monzogranite plutons and numerous Li, Be and Ta-b

    Jan 1, 1990