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RI 8644 - Underground Gob Gas Drainage During Longwall MiningBy Steven J. Schatzel, Joseph Cervik, Gerald L. Finfinger
Gas drainage through surface bore¬holes has been the conventional means of methane control for U.S. longwall gobs. However, these vertical boreholes are becoming so costly, and the surface rights so d
Jan 1, 1982
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RI 8191 Dust-Control Studies Using Scale Models of Coal Mine Entries and Mining MachinesBy John A. Breslin
Three scale models of coal mine entries and mining machines were constructed by the Bureau of Mines to study the effects of ventilation parameters on dust concentrations where mining personnel would b
Jan 1, 1976
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RI 8048 Evaluation of an 8-Foot-Diameter Flexible Liner Installation in the Burgin Mine, Eureka, UtahBy W. S. Anderson
The use of flexible liners for support of underground openings has been investigated by the Bureau of Mines. This report presents installation procedures and instrumentation results of a full-scale fl
Jan 1, 1975
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RI 8795 - Problems Facing Coal Mining and Gas Production in the Hartshorne Coalbeds of the Western Arkoma Basin, OKBy J. H. Perry, D. W. Houseknecth, C. A. Kertis, A. T. Iannacchione
Major problems facing the development of coal and gas resources of the Hartshorne Coalbeds include the complex distribution of minable and unminable coal, high methane content and bed pressure, faulti
Jan 1, 1983
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RI 9462 - A Method To Eliminate Explosion Hazards in Auger Highwall MiningBy James P. Ulery, Jon C. Volkwein
The U.S. Bureau of Mines investigated a method of using inert gas to prevent the formation of explosive gas mixtures in auger highwall mining of coal. A combination of gasoline and diesel engine exhau
Jan 1, 1993
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Gas Migration Characteristics Of CoalbedsBy J. D. Hadden
The Bureau of Mines conducted drilling studies in the Pocahontas No. 3, the Pittsburgh, and a western coalbed to establish the gas migration characteristics for each. Gas pressures in the Pittsburgh c
Jan 1, 1969
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Electrical Ground Rod CorrosionBy Bruce T. Olenchuk, Wils L. Cooley
Electrical grounding is essential for the safe operation of power systems. A low-impedance path to ground is necessary to prevent the possibility of dangerously high potentials in human work areas. If
Jan 1, 1979
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RI 6150 Fuel-Oil Injection In An Experimental Blast FurnaceBy P. L. Woolf
Oil was successfully injected into the tuyeres of the Bureau of Mines experimental blast furnace. Determinations were made for the minimum oil addition necessary to permit the maximum available blast
Jan 1, 1963
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Off-Highway Haulage Truck Overload Detection ? ObjectiveImprove surface mine haul-age truck safety and efficiency by providing a means for sensing the weight and distribution of the truck's load. Approach The safety hazards and the economic im
Jan 1, 1984
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Responders To Underground Mine FiresBy Ronald S. Conti
Fire is a major concern for those who work in underground mines. A mine fire can occur at anytime and often results in a partial or total evacuation of mine personnel and could result in the loss of
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RI 9649 - Prediction of Longwall Methane Emissions: An Evaluation of the Influence of Mining Practices on Emissions and Methane Control SystemsBy Fred Garcia, William P. Diamond
As part of its mine safety and health research program, the National Institute for Occupational Safety and Health, Pittsburgh Research Laboratory, has been investigating the geologic and mining factor
Jan 10, 1999
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RI 8403 Flue Gas Desulfurization by the Modified Citrate ProcessBy R. H. Lien
The Bureau of Mines, U.S. Department of the Interior, has developed a flue gas desulfurization process as part of its goal of minimizing the undesirable environmental impacts associated with energy an
Jan 1, 1979
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Limestone Mining: Is It Noisy Or Not? (53f3d494-b0a3-454a-a96c-0f6abecff3d5)By D. R. Babich, E. R. Bauer
US. National Institute for Occupational .Safety and Health (NIOSH) researchers are conducting a Cross-sectional survey of equipment noise and worker noise exposures in the mining industry. Surface and
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RI 8880 - Simulation of Methane Flows in Noncoal MinesBy Andrew B. Cecala, Edward D. Thimons
The Bureau of Mines has successfully tested a method to simulate methane (CH~) flows from face areas through the returns of noncoal mines. This technique' involves releasing a small quantity of t
Jan 1, 1984
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Appendix A. - Program Listing Of Head Loss Calculation Using The USBM MethodBy R. V. Ramani, R. Stefanko, G. W. Luxbacher
CALCULATION OF MINE HEAD LOSSES FROM ALTIMETER SURVEY DATA USBM PENNSYLVANIA STATE UNIVERSITY - MINERAL ENGINEERING DEPARTMENT USBM USBM USBM THIS PROGRAM CALCULATES PRESSURE LOSSES USING THE
Jan 1, 1977
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RI 8930 - Hydrogen Chloride Sparging Crystallization of the Chloride Salts of Cobalt, Manganese, and NickelBy D. E. Shanks
The Bureau of Mines investigated the effects of HCI concentration and solution temperature on the solubility and crystal form of the chlorides of Co, Mn, and Ni when sparged with HCI gas at temperatur
Jan 1, 1985
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A Hydrogen Powered Mine Vehicle - ObjectiveDevelop a safe, nonpolluting power source for underground mining equipment. Approach The Bureau of Mines and EIM-CO Mining Machinery International entered into a cost-shared project to develop
Jan 1, 1986
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Safe Recovery Of Sealed Mines - ObjectiveProvide an accurate, reliable means for determining when a sealed mine or mine section can be safely reopened after a fire. Approach The Bureau of Mines performed a research investigation that
Jan 1, 1988
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Interaction Of Radio Transmissions On Mine Monitoring And Control SystemsBy Larry G. Stolarczyk
This report deals with the creation of an efficient method to determine if command, control, communication and monitoring (3cm) equipment in coal, metal and non-metal mines is susceptible to Radio Fre
Jan 5, 1986
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RI 4877 Flammability Of Amyl NitriteBy M. G. Zabetakis
Amyl nitrite (C5H11NO2) is a pale-yellow liquid with an ethereal fruity odor and a pungent aromatic taste. Its use in first-aid treatment of cyanide poisoning has been suggested by Chen and his cowork
Jan 1, 1952