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  • TMS
    Mixing Cell Models for the Separation and Recovery of Metals. Flow with Multiple Reactions in Porous Media. (5ddece34-708d-4dba-bf5b-3e6707d142ec)

    By KNona C. Liddell

    "Many metal recovery processes involve heterogeneous reactions in porous media accompanied by fluid flow and mass transfer. Modeling such systems is difficult because of the number of rate processes i

    Jan 1, 1996

  • TMS
    Mixing Cell Models For The Separation And Recovery Of Metals. Flow With, Multiple Reactions In Porous Media.

    By KNona Liddell

    Many metal recovery processes Involve heterogeneous reactions In porous media accompanied by fluid flow and mass transfer. Modeling such systems Is difficult because of the number of rate processes In

    Jan 1, 1996

  • SME
    Mixing of Rotary Kiln Fines with Fine-Grained Acid-Producing Rock

    By Kim A. Lapakko, David A. Antonson, Jon R. Wagner

    This study examined the potential of mixing rotary kiln fines (RK fines), a waste product generated when limestone is converted to lime (CaO), with acid producing mine waste to provide 1) short-term m

    Jan 1, 2000

  • CIM
    Mixing Optimization Enables Increased SX Mixer / Settler Production Capacity

    By N. Dobrin, R. Sheinman, Y. V. Kokotov, L. N. Braginsky

    Increasing the production of a Mixer-Settler unit requires either increasing flow rates or increasing extractant concentration. The mixers still have to ensure complete emulsification and to maintain

    Jan 1, 2014

  • TMS
    Mixing Phenomena Pertinent to Ferroalloy Refining Using a Water Model

    "Mixing phenomena in a bottom blown air-stirred one-seventh water model of CLU (Creusot-Loire Uddeholm) reactor was studie9-using three different configurations of straight circular nozzles fitted axi

    Jan 1, 1997

  • DFI
    Mixing Proportion Design and Construction Management for Application of Cement Deep Mixing Method to Construction Project on Controlled Final Landfill Site in Japan

    By Yoshinori Kurumada, Masaya Watanabe, Kenji Sasa

    "The Port of Yokohama is strengthening its international competitiveness as a strategic container port in order to respond appropriately to global exchange and shipping demands. Thus, the Minami Honmo

    Jan 1, 2015

  • TMS
    Mixture Design Applied to the Electrochemical Reduction of CaW04 to W

    By Metehan Erdogan, Orhan Gökçe Göksu, Ishak Karakaya

    "An experiment (mixture) design was created to optimize the process parameters of the electrochemical reduction of CaW04 to W in molten CaCl2-NaCl eutectic mixture. Temperature, applied voltage and th

    Jan 1, 2012

  • SME
    Mixtures Of Radon And Thoron Daughters In Underground Atmospheres: Measurement Procedures, A Portable [A]-Spectrometer, A Semi-Automatic Spark Counter For Reading-Track-Etch Films From Personal Dosimeters

    By D. W. Carson, R. J. Trembley

    Thoron daughter WL's measured by alpha-spectroscopy and the Kusnetz method are about one-half those of radon daughter WL's in a uranium mine in Canada.1 A diffusion model can account for the

    Jan 1, 1981

  • AUSIMM
    ML and AI for resource estimation – what could possibly go wrong? Nothing! Everything!

    By M J. Nimmo

    extremely powerful tools for building predictive and generative models. ML can be used for building highly accurate regression and classification models. But without careful data science and statistic

    May 24, 2023

  • NIOSH
    MLA 10-89 - Mineral Resources Of The Arc Dome Study Area, Nye County, Nevada

    By Fredrick L. Johnson

    In 1984, at the request of the U.S. Forest Service, the U.5, Bureau of Mines began a study of the 94,370-acre Arc Dome study area (4-667) in order to appraise its mineral resources, The Bureau of Mine

    Jan 1, 1989

  • NIOSH
    MLA 11-91 - Mineral Resource Appraisal Of The Diamond Peak Study Area, Butte, Clark, And Lemhi Counties, Idaho

    By Lucia Kuizon

    In 1986 and 1987, at the request of the U.S. Forest Service, the U.S. Bureau of Mines studied the Diamond Peak area comprising 183,000 acres in the Challis and Targhee National Forests in order to eva

    Jan 1, 1991

  • NIOSH
    MLA 128-82 - Mineral Investigation Of The Fox Mountain Rare II Area (No. 5120), Santa Barbara County, California - Summary

    By Robin B. McCulloch

    No producing mines are in the study area. Sample results indicate the only resources in the study area are low grade phosphate deposits associated with Cuyama Phosphate Mine (fig. 1). Within the study

    Jan 1, 1982

  • NIOSH
    MLA 13-85 - Mineral Resources Of The Greenwater Valley Wilderness Study Area (BLM No. CDCA-148), Inyo County, California

    By Richard L. Rains

    During this study in 1983, the U.S. Bureau of Mines examined one mine and five prospects in the Greenwater Valley Wilderness Study Area (WSA). No mineral resources were identified within the WSA. Prin

    Jan 1, 1985

  • NIOSH
    MLA 13-92 - Mineral Resources Of The West-Central Arizona And Southeastern California Detachment Terrane

    By Terry J. Kreidler

    In recent years, west-central Arizona and adjacent California have become the focus of geologic and exploration attention because of its excellent exposure of detachment-fault terrane. Detachment faul

    Jan 1, 1992

  • NIOSH
    MLA 13-93 - Mineral Resource Investigation Of The Lime Creek Study Area, Camas And Elmore Counties, Idaho

    By Thomas J. Peters

    The Lime Creek study area lies 100 air km east of Boise, and 70 air km northeast of Mountain Home, Idaho. The eastern boundary of the 28,000-hectare, east-west-elongate study area lies 0.2 km west of

    Jan 1, 1993

  • NIOSH
    MLA 14-85 - Mineral Resources Of The Owlshead Mountains Wilderness Study Area (BLM No. CDCA-156), San Bernardino County, California

    By Arel B. McMahan

    The U.S. Bureau of Mines investigated mines, prospects, and mineralized areas in the Owlshead Mountains Wilderness Study Area (WSA) in 1982. Within the WSA, subeconomic manganese, iron, zinc, and lead

    Jan 1, 1985

  • NIOSH
    MLA 14-93 - Identified Mineral Resources Of The Needles 1°X 2° Map Quadrangle, California

    By Terry R. Neumann

    This document, prepared for the U.S. Bureau of Mines Regional Mineral Assessment Program, presents data pertinent to the mineral resource assessment of the Needles 1° x 2° map quadrangle (excluding th

    Jan 1, 1993

  • NIOSH
    MLA 15-83 - Mineral Investigation Of The Sheep Divide Rare II Area (No. 6602), Wallowa County, Oregon

    By Harry W. Campbell

    U.S. Bureau of Mines investigation; identified no mineral resources or evidence of mining activity in the Sheep Divide RARE II area. A deposit 10 mi (16 km) southwest of the area contains copper and s

    Jan 1, 1983

  • NIOSH
    MLA 15-87 - Mineral Resources Of The Twin Peaks Study Area, Lassen County, California And Washoe County, Nevada

    By Michael S. Miller

    In 1985, at the request of the Bureau of Land Management, the Bureau of Mines studied a 50,57U-acre portion of the 90,345-acre Twin Peaks Wilderness Study Area (CA-020-619A) in order to evaluate its i

    Jan 1, 1986

  • NIOSH
    MLA 15-88 - Mineral Resources Of The Henrys Lake Wilderness Study Area, Fremont County, Idaho

    By Thomas J. Peters

    In 1987, at the request of the U.S. Bureau of Land Management, the Bureau of Mines studied the 350-acre Henry?s Lake Wilderness Study Area (ID-035-077) in order to evaluate its identified mineral reso

    Jan 1, 1988