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In-Pit Crushing and Conveying System and Dexin Pit Copper Haulage Optimisation for Ore TransportThe output of Dexin Pit Copper is up to 33 million tonnes a year and the final depth is more than 500 m. As a cost reduction measure, the in-pit crushing and conveying system has was introduced to del
Jan 1, 2003
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In-Pit Crushing And Conveying SystemsBy J. Korak
Belt conveyor systems, long the standard transportation technique in soft-rock open-pit applications, are encountering growing interest in the hard-rock open-pit sector as economic factors force compa
Jan 1, 1985
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In-Pit Crushing and Conveying: Fitting a Square Peg in a Round Open PitBy Robert J. McCarthy
Many technologies have been adopted over the last half century for the haulage of material from open pit mining operations. Some of the technologies utilized include rail, off-highway trucks, conveyor
May 1, 2011
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In-pit Dust Control at Mt. Whaleback, Newman, W.A.By Loo R
The Paper discusses the size and extent of in-pit dust suppression problems created by iron ore mining in the Pilbara region of Western Australia. Dust problems associated with drilling, loading, h
Jan 1, 1979
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In-pit In Situ Recovery – a New Approach That May Allow for Increased Value Extraction before Pit ClosureBy D J. Robinson, L L. Kuhar
"Regardless of orebody value, at some stage, the pit will reach a depth where the reward for mining wider and/or deeper is not justified by the anticipated returns. ‘Last-blast’ strategies may help to
Nov 15, 2016
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In-pit Tailings Disposal at Langer Heinrich – Tailings Storage Facilities in a Unique Hydrogeological SettingBy D Luppnow, C Hore
In-pit tailings storage can provide many advantages when compared to typical above-ground tailings storage facilities (TSFs). As regulations become more restrictive and existing mines expand into new
Jul 27, 2015
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In-Pit Tailings – World’s Best Practice for Long-Term Management of TailingsBy G M. Mudd
Mine tailings represent one of the two largest sources of mine waste from the minerals industries (the other being waste rock). Given the problems of declining ore grades and growing production, taili
Aug 8, 2011
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In-Place Leaching -Miami Mine -Miami, ArizonaBy James B. Fletcher
The Miami mine is located near the town of Miami, Gila County, Arizona. The Miami mine started mining in 1910 and finished in July, 1959. The orebody was divided and mined as follows: Tons High Grade
Jan 1, 1971
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In-Place Leaching at Miami Mine, Miami, ArizonaBy James B. Fletcher
Leaching of the block caved mine from 1941 through 1970 is described, and the improvements made are listed. Detailed is the increased knowledge of leaching gained through this operation, including met
Jan 1, 1972
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In-Place Leaching Of Primary Sulfide Ores: Laboratory Leaching Data And Kinetics ModelBy M. E. Wadsworth, A. E. Lewis, R. L. Braun
Experimental results obtained in laboratory leaching studies of primary copper sulfide ore in sulfuric acid systems pressurized with oxygen are interpreted by a computerized geometric model involving
Jan 1, 1974
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In-Plant Demolition of 900 Cubic Yard Machine BaseBy Ed Jr Smith, Calvin J. Konya
The purpose of this paper is to describe the case history of a blasting project conducted jointly by Precision Blasting Services and Cherokee Explosives. It is the intent of the authors to show how bl
Jan 1, 1986
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In-Plant Evaluation of Reagents for Flotation Of Sulfide OresBy G. Granger, D. Malhotra
The paper briefly reviews the criteria employed in the selection of chemical reagents for testing and discusses the steps involved in laboratory and plant evaluation of these reagents. An example of s
Jan 1, 1986
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In-Plant Hydrogeochemical Mapping: A Tool to Localise Potential Deleterious Reactions Due to Water Quality in a ProcessBy Mohamed Ourriban, Stéphanie Somot, Éric Proulx, Jean-Sébastien Marois, Marjolaine Drouin, Paul Blatter, Ahmed Bouajila, Claude Gagnon
"The mining industry has to face increasing restrictions concerning the use of fresh water in Québec and throughout the world. Increasing recirculated water usage could lead to a better control of the
Jan 1, 2012
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In-Plant Recycling Of Stainless And Specialty Steel Wastes - ObjectiveTo reuse chromium, nickel, and molybdenum now lost in stainless and specialty steel-making wastes, and simultaneously to overcome the current environmental problem resulting from landfilling these was
Jan 1, 1981
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In-Plant Testing Of Microbubble Column FlotationIn order to overcome some of the deficiencies associated with conventional fine coal cleaning methods, a novel process known as microbubble column flotation (MICROCEL?) was developed at Virginia Tech.
Jan 1, 1991
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In-Process Conveying Of Kaolin ClaysBy Bernard A. Kilgore
Kaolin is a hydrated aluminum silicate mined primarily in middle Georgia along the "fall line", the location of the coast line in prehistoric times. It is used extensively as a filler for paper, insec
Jan 1, 1983
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In-Process Separation of Mill Scale from Oil at Steel Hot Rolling MillsBy Naiyang Ma
"High oil concentration is one of the major barriers for recycling of mill scale of steel hot rolling mills. It is of vital importance to find cost-effective technologies of reducing oil concentratio
Jan 1, 2012
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In-pulp technologyFor many of us, formal academic education slows abruptly when we leave a tertiary institute of learning. We start applying and connecting newly acquired knowledge with the practicalities of a career,
Jan 1, 1992
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In-seam Drilling Technologies for Underground Coal MinesBy Hatherly P, Dunn P
There are- several in-seam coal research projects currently under investigation by the Cooperative Research Centre for Mining Technology and Equipment (CMTE). The overall aim of the projects is to pro
Jan 1, 1998
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In-Seam Seismic Detection Of Faults In Coal MinesBy Charles C. Mosher
An in-mine seismic technique for detecting faults has been tested in a Western U.S. coal mine. This technique has been used extensively in the U. K. to help guide longwall mining operations. Explosive
Jan 1, 1983