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  • TMS
    Recovery Of Iron From Hematite-Rich Diasporic-Type Bauxite Ore

    By Lin Yang, Yuanbo Zhang, Zhuoxuan Li, Guanghui Li, Jinghua Zeng, Tao Jiang

    A technique has been proposed for recovering iron from hematite-rich diasporic-type bauxite ore in this study. Direct reduction roasting followed by low intensity wet magnetic separation process was c

    Jan 1, 2015

  • SAIMM
    Recovery of Iron from Iron Ore Slimes by Selective Flocculation

    By R. Kumar, N. R. Mandre

    "The beneficiation of iron ore slimes by selective flocculation was studied. Polyacrylamide (PAM) and guar gum were used as flocculant, along with sodium hexametaphosphate (SHMP) as a dispersant. The

    Jan 1, 2017

  • SME
    Recovery Of Iron From Pyrite Cinder By The MTU-Pelletech Process

    By M. Adnan Göksel

    Pyrite cinder is generated by roasting pyrite for sulfur dioxide production. It contains up to 62% iron, but also may contain other hazardous or toxic materials such as Zn, Pb, As, T1, Cd, Cu, Sn and

    Jan 1, 1984

  • IMPC
    Recovery of Iron from Refractory Iron Ore Using Suspension Magnetization Roasting Followed By Magnetic Separation

    By Y. S. Sun, P. Gao

    "In this investigation, a pilot-scale suspension magnetization roasting reactor was introduced and used to enhance magnetic properties of an iron ore. Consequently, the effects of roasting temperature

    Jan 1, 2018

  • IMPC
    Recovery of Iron from Tailings with Fluidized Magnetization Roasting Followed By Magnetic Sepatation

    By Yuexin Han, Jie Liu, Shuai Yuan, Yanjun Li

    "In order to improve recovery efficiency of iron minerals from iron ore tailings and to reduce its connected environmental pollution, this article investigated the reducing roasting of iron ore tailin

    Jan 1, 2018

  • CIM
    Recovery of Iron from Waste Slag of Pyrite Processing Using Reduction-Roasting Magnetic Separation Method

    By A. McLean, Q. R. Yang, Y. D. Yang, G. F. Zhang, P. Wu

    A considerable amount of waste slag from the pyrite roasting process is discharged every year. Recovery of iron from the waste slag is of great interest for comprehensive use of mineral resource, redu

    Jan 1, 2011

  • AUSIMM
    Recovery of Iron Ore Fines and Ultrafines from Tailings by Using Wet High-intensity Magnetic Separation – JONES WHIMS

    By M Gerards, M Steinberg, T Graham

    The quality and quantity of Australia’s secondary deposits, which include tailings streams and tailings dams, are higher than most countries’ primary deposits. In addition, these secondary deposits ha

    Jul 13, 2015

  • CIM
    Recovery of Iron Ore Ultra-Fines from Tailings by Using Wet High Intensity Magnetic Separation – Jones ® WHIMS

    By Y. Wong

    The quality and quantity of secondary deposits, which include tailings streams and tailings dams, are increasing around the globe. The tailings are already mined, available and liberated to such an ex

    Jan 1, 2016

  • SME
    Recovery of Iron Values from Discarded Iron Ore Slimes Mining, Metallurgy and Exploration

    By Nikhil Dhawan, Veeranjaneyulu Rayapudi, Singh Rahulkumar Sunil

    The ever-increasing demand for steel and the subsequent depletion of high-grade ores requires the massive utilization of low-grade iron ores. In the present study, an iron ore slime sample containing

  • SME
    Recovery of Iron Values from Discarded Iron Ore Slimes Mining, Metallurgy and Exploration (94b04126-17ba-4f24-986e-8db48c1a0ace)

    By Nikhil Dhawan, Veeranjaneyulu Rayapudi, Singh Rahulkumar Sunil

    The ever-increasing demand for steel and the subsequent depletion of high-grade ores requires the massive utilization of low-grade iron ores. In the present study, an iron ore slime sample containing

  • AUSIMM
    Recovery of Iron Values From Tailing Dumps Adopting Hydrocyclone and Magnetic Separation Techniques

    By P S. R Reddy, V N. Misra

    The iron ore deposits in India are rich in iron content but usually contains high alumina and silica. The current industrial practice results three products namely lump, fines and slimes. The lump and

    Jan 1, 2002

  • CIM
    Recovery of Lanthanides from Apatite Phosphogypsum

    By Cz. Mora, A. Pawelczyk, D. Hreniak, P. Nowak, A. Dyonizy, S. Strek, W. Strek, K. Grabas, A. Ostrowski

    Globalization and a growing demand for limited raw material resources have forced changes in the approach to the supply chain. This is particularly true in the case of rare earths, which are regarded

    Jan 1, 2014

  • SME
    Recovery Of Lead From Lead Blast Furnace Slags

    By J. L. Watson

    n the U.S., lead has been produced via blast furnace processing for over a century, and the slags from that pyro-metallurgical process have been accumulating on industrial sites over that extended per

    Jan 1, 1995

  • TMS
    Recovery of Lead from Process Solutions

    By M. K. Mohan

    Lead recovery from process solutions contributes not only to the conservation of resources but also clean environment. Zeolites are natural aluminosilicates, which finds applications as catalysts and

    Jan 1, 1999

  • TMS
    Recovery of Lead, Silver and Gold From Zinc Process Residues by a Sulfidization-Flotation Method

    By J. Rastas

    The recovery of lead, silver and gold from existing and potential zinc process residues using a sulfidization-flotation method was investigated on a laboratory scale. The following residues were teste

    Jan 1, 1990

  • TMS
    Recovery of Lithium from Brine with MnO2 Nanowire Ion Sieve Composite

    By Rajashekhar Marti, York R. Smith

    Lithium is anticipated to be a key, strategic material in the clean technology economy. The majority of lithium reserves are contained in continental brines and sea water (>60%). Currently the most ec

    Mar 1, 2018

  • SAIMM
    Recovery of lithium from spodumene by chlorination roasting, P.F.A. Braga, S.C.A. França, C.P. Pinto, and G.D. Rosales

    By G. D. Rosales, P. F. A. Braga, S. C. A. França, C. P. Pinto

    The growing market demand for lithium is mainly due to its use in the manufacture of batteries for electric or hybrid vehicles and portable equipment (smartphones, tablets, power tools, notebooks, etc

    Jan 1, 2020

  • TMS
    Recovery of Lithium from the Great Salt Lake Brine

    By Rajashekhar Marthi

    Lithium is a key component for future electric vehicle batteries and energy storage. The future availability of lithium to meet the growing demands remains in question. Around 60% of lithium resources

  • SME
    Recovery of low grade scheelite by spherical agglomeration

    By T. Gouri Charan, G. V. Rao

    A spherical agglomeration process for the separation of scheelite fines of less than 30 µm in very low concentration of 0.04% WO3 in a binary mixture with quartz fines of less than 30 pm has been desc

    Jan 1, 1991

  • CIM
    Recovery of Low-Grade Waste Heat from Smelter Process Water Streams Using Heat Pumps

    By G. M. Ross, I. M. Ross, J. A. Scott

    "The otherwise waste heat in many water streams in the mining industry can be used to provide space heating of adjacent infrastructure including laboratories, workshops, and offices. This can be achie

    Jan 1, 2016