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  • SME
    Effect Of Partial Removal Of Xanthate Collector On Size Of Material Floated

    By Robert A. Blake

    Introduction Sulfide copper, zinc and iron concentrates are recovered in the 5000 ton per day flotation plant operated by Cities Service Company at Copperhill, Tennessee. The heavy-sulphide ore is fi

    Jan 1, 1971

  • NIOSH
    OFR-6-72 Design And Development Of Horizontal Borehole Packers For Use In Coal Beds

    A new horizontal borehole packer for use in coal beds has been developed. This packer utilizes a principal of operation which has not previously been used. The resulting packer is less costly to purch

    Jan 1, 1971

  • CIM
    Process Control in the Mineral Industry

    By N. R. Thornton

    This paper discusses the rapid growth in the application of instrumentation for metallurgical process control. It covers such methods as ultrasonics, pulp density measurements, on-stream X-ray analysi

    Jan 1, 1971

  • CIM
    Selection of Electrostatic Precipitators to Meet New Pollution Codes

    By J. H. McKibbon

    This paper outlines the basic steps in the sizing of electrostatic precipitators according to the Deutsch equation. Design parameters that do not appear in the equation are also described.

    Jan 1, 1971

  • SME
    Attapulgite Clays For Future Industrial Mineral Markets

    By C. Y. Haas

    Of all the industrial clay minerals, attapulgite probably enjoys the widest variety of applications. A review published over three years ago by Haden and Schwint (18) cited some 80 individual uses, a

    Jan 1, 1971

  • NIOSH
    OFR-9(2)-72 Coal Mine Rescue And Survival System - Volume II - Communications/Location Subsystem

    The design, specification, and performance evaluation of the Communications and Location portions of a Coal Mine Rescue and Survival System are described. The work was performed as part of a nine mont

    Jan 1, 1971

  • NIOSH
    IC 8518 Analyses Of Natural Gases, 1970 ? Introduction

    By L. E. Cardwell

    This publication contains routine analyses and related source data for 377 natural gas samples from 19 States and two foreign countries. Of this total, 373 samples were collected during calendar year

    Jan 1, 1971

  • NIOSH
    OFR-11-72 A Current Appraisal Of Underground Coal Gasification - I. Summary - A. Purpose And Scope

    The Bureau of Mines in the Department of the Interior is increasingly concerned with the safety and health of personnel engaged in coal-mining operations, particularly below ground. The Bureau is also

    Jan 1, 1971

  • NIOSH
    IC 8525 Petroleum And Oil-Shale Research Of The Bureau Of Mines, Fiscal Year 1969

    By Bill Linville

    During fiscal year 1969, the Bureau of Mines was engaged in 66 projects to improve methods for producing and utilizing petroleum. Programs directed toward the continued conservation of this natural re

    Jan 1, 1971

  • NIOSH
    IC 8526 Review Of Bureau Of Mines Energy Program, 1970 ? Introduction

    By Bill Linville

    Producing oil, gas, and coal in sufficient amounts to satisfy U.S. demands for fuels, electrical power, and chemicals promises to be one of the country's major challenges during the 1970's.

    Jan 1, 1971

  • NIOSH
    OFR-4(2)-72 Industrial Engineering Study Of Hazards Associated With Underground Coal Mine Production - Volume II - Data And Charts ? I. Introduction

    Presented in this volume are the basic mining techniques and production operations associated with underground bituminous coal mining. Chapter 2, "Multiflow Process Charts", presents, in sketch fo

    Jan 1, 1971

  • NIOSH
    OFR-11-71 Designing And Planning Open Pit Mining Operations With Computer Simulation Solutions ? Summary

    By Y. L. Su

    Deterministic and stochastic simulation were combined to develop a computer model of an open pit mining system using bucket wheel excavators and related materials handling equipment. The model is clos

    Jan 1, 1971

  • NIOSH
    IC 8531 Strippable Reserves Of Bituminous Coal And Lignite In The United States

    The strippable reserves of bituminous coal and lignite in the United States were calculated in accordance with the prevailing conditions of seam thickness and depth of overburden in each of the severa

    Jan 1, 1971

  • NIOSH
    OFR-4(1)-72 Industrial Engineering Study Of Hazards Associated With Underground Coal Mine Production - Volume I - Analysis Of Underground Hazards And Fatal Accidents

    In 1970, the U. S. Bureau of Mines contracted with Theodore Barry and Associates, a management consulting firm, to perform a one-year industrial engineering study of working-face hazards in undergroun

    Jan 1, 1971

  • NIOSH
    OFR-7-72 Economic Aspects of Surface Subsidence Resulting From Underground Mineral Exploitation

    By Jan Zwarcendyk

    This study is primarily directed toward providing an understanding of the economic complexities associated with subsidence damage on the surface resulting from underground mining. Some of the pertinen

    Jan 1, 1971

  • NIOSH
    IC 8501 Availability Of Uranium At Various Prices From Resources In The United States

    By Carl L. Bieniewski

    In a Bureau of Mines supply evaluation, the known uranium resources in the United States are estimated to have a total recoverable uranium oxide (U3O8) content of 3,132,400 tons at prices up to $69.32

    Jan 1, 1971

  • NIOSH
    Coal Composition, Coal Plasticity, And Coke Strength

    By W. R. K. Wu

    Results of linear correlations of two to four variables by the least-squares method are presented. The variables include 63 parameters representing coal composition, coal plasticity, and coke strength

    Jan 1, 1971

  • NIOSH
    Computer Simulation Of Particulate Systems

    By Lindsay D. Norman

    Computer models for simulating the construction and for calculating the properties of particulate solids in two- and three-dimensional systems (coverings of circles and packings of spheres, respective

    Jan 1, 1971

  • NIOSH
    OFR-15-72 Solid Sap - A Static Analysis Program For Three Dimensional Solid Structures

    By Edward L. Wilson

    A general computer program is given for the linear elastic static analysis of complex structural systems. These elements have special advantages for the analysis of massive underground structures such

    Jan 1, 1971

  • NIOSH
    RI 7477 Determining Seepage Characteristics Of Mill-Tailings Dams By The Finite-Element Method

    By C. Daniel Kealy

    Finite-element,, mathematical models that solve LaPlace's and Richard's equations numerically were used to locate the phreatic surface within tailings pond embankments and to define the subs

    Jan 1, 1971

Unexpected error retrieving advertisement for PageView: Home_Index, Key: SidebarTop Name : System.InvalidOperationException Message: Timeout expired. The timeout period elapsed prior to obtaining a connection from the pool. This may have occurred because all pooled connections were in use and max pool size was reached. Stack : at Microsoft.Data.Common.ADP.ExceptionWithStackTrace(Exception e) --- End of stack trace from previous location --- at Microsoft.EntityFrameworkCore.Storage.RelationalConnection.OpenInternalAsync(Boolean errorsExpected, CancellationToken cancellationToken) at Microsoft.EntityFrameworkCore.Storage.RelationalConnection.OpenInternalAsync(Boolean errorsExpected, CancellationToken cancellationToken) at Microsoft.EntityFrameworkCore.Storage.RelationalConnection.OpenAsync(CancellationToken cancellationToken, Boolean errorsExpected) at Microsoft.EntityFrameworkCore.Storage.RelationalCommand.ExecuteReaderAsync(RelationalCommandParameterObject parameterObject, CancellationToken cancellationToken) at Microsoft.EntityFrameworkCore.Query.Internal.SingleQueryingEnumerable`1.AsyncEnumerator.InitializeReaderAsync(AsyncEnumerator enumerator, CancellationToken cancellationToken) at Microsoft.EntityFrameworkCore.SqlServer.Storage.Internal.SqlServerExecutionStrategy.ExecuteAsync[TState,TResult](TState state, Func`4 operation, Func`4 verifySucceeded, CancellationToken cancellationToken) at Microsoft.EntityFrameworkCore.Query.Internal.SingleQueryingEnumerable`1.AsyncEnumerator.MoveNextAsync() at Microsoft.EntityFrameworkCore.Query.ShapedQueryCompilingExpressionVisitor.SingleOrDefaultAsync[TSource](IAsyncEnumerable`1 asyncEnumerable, CancellationToken cancellationToken) at Microsoft.EntityFrameworkCore.Query.ShapedQueryCompilingExpressionVisitor.SingleOrDefaultAsync[TSource](IAsyncEnumerable`1 asyncEnumerable, CancellationToken cancellationToken) at OneMine.Advertisements.Data.Queries.AdvertisementQueries.GetActiveAdvertisementByNameKeyAsync[T](Guid siteId, String pageViewName, String placementKey, CancellationToken cancellationToken) in D:\a\1\s\Lib\Data\Advertisements\Data\Queries\AdvertisementQueries.cs:line 43 at OneMine.Web.ViewComponents.ZoneTagViewComponent.InvokeAsync(String pageViewName, String placementKey) in D:\a\1\s\Web\ViewComponents\ZoneTagViewComponent.cs:line 84

Unexpected error retrieving advertisement for PageView: Home_Index, Key: SidebarBottom Name : System.InvalidOperationException Message: Timeout expired. The timeout period elapsed prior to obtaining a connection from the pool. This may have occurred because all pooled connections were in use and max pool size was reached. Stack : at Microsoft.Data.Common.ADP.ExceptionWithStackTrace(Exception e) --- End of stack trace from previous location --- at Microsoft.EntityFrameworkCore.Storage.RelationalConnection.OpenInternalAsync(Boolean errorsExpected, CancellationToken cancellationToken) at Microsoft.EntityFrameworkCore.Storage.RelationalConnection.OpenInternalAsync(Boolean errorsExpected, CancellationToken cancellationToken) at Microsoft.EntityFrameworkCore.Storage.RelationalConnection.OpenAsync(CancellationToken cancellationToken, Boolean errorsExpected) at Microsoft.EntityFrameworkCore.Storage.RelationalCommand.ExecuteReaderAsync(RelationalCommandParameterObject parameterObject, CancellationToken cancellationToken) at Microsoft.EntityFrameworkCore.Query.Internal.SingleQueryingEnumerable`1.AsyncEnumerator.InitializeReaderAsync(AsyncEnumerator enumerator, CancellationToken cancellationToken) at Microsoft.EntityFrameworkCore.SqlServer.Storage.Internal.SqlServerExecutionStrategy.ExecuteAsync[TState,TResult](TState state, Func`4 operation, Func`4 verifySucceeded, CancellationToken cancellationToken) at Microsoft.EntityFrameworkCore.Query.Internal.SingleQueryingEnumerable`1.AsyncEnumerator.MoveNextAsync() at Microsoft.EntityFrameworkCore.Query.ShapedQueryCompilingExpressionVisitor.SingleOrDefaultAsync[TSource](IAsyncEnumerable`1 asyncEnumerable, CancellationToken cancellationToken) at Microsoft.EntityFrameworkCore.Query.ShapedQueryCompilingExpressionVisitor.SingleOrDefaultAsync[TSource](IAsyncEnumerable`1 asyncEnumerable, CancellationToken cancellationToken) at OneMine.Advertisements.Data.Queries.AdvertisementQueries.GetActiveAdvertisementByNameKeyAsync[T](Guid siteId, String pageViewName, String placementKey, CancellationToken cancellationToken) in D:\a\1\s\Lib\Data\Advertisements\Data\Queries\AdvertisementQueries.cs:line 43 at OneMine.Web.ViewComponents.ZoneTagViewComponent.InvokeAsync(String pageViewName, String placementKey) in D:\a\1\s\Web\ViewComponents\ZoneTagViewComponent.cs:line 84