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Behavior of Nitrogen Oxides in the Product Gases from Explosive DetonationsBy James Rowland, Marcia Harris, Richard Mainiero, Michael Sapko
All explosive materials produce a cloud of reaction products, the most toxic of which is nitrogen dioxide (NO2). In the study reported here, 4.5-kg (10-lb) charges of blasting agent confined in either
Jan 1, 2006
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Underground Applications Using the New EZDrifter Dual Delay Detonator SystemBy Pierre L. Labelle
Non electric Dual Delay initiators have revolutionized many aspects of underground mining. The units are used in all types of underground blasting operations. Some operations, due to the complexity an
Jan 1, 1994
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Blasting Effects on the Grindability of RocksBy C. Pelley, S. Kelebek, P. D. Katsabanish, M. Pollanen
A series of small scale tests have been conducted to evaluate the effect of blasting on the grinding resistance of rocks. The samples consisted of homogeneous blocks of granodiorite and limestone whil
Jan 1, 2004
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Journal: Haz Mat 101, PART 1 - Hazardous Materials Shipping Papers and Emergency Response Information for Public Highway TransportationBy Tom Snyder, John Brulia
Part I is the first of a series of articles by the authors on hazardous materials (HM) transportation safety and compliance for shippers and carriers who offer and transport commercial explosives in c
Jan 1, 2014
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The Effect of Fragmentation on Loader Productivity (95e8fe1a-7252-44f9-b557-30f0369d4449)By Michael D. McGill, Jeff Freadrich
There are many factors which affect the productivity of a front end loader. One of the most obvious is the characteristics of the material being mined. Characteristics such as size distribution, swell
Jan 1, 1994
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Crater Blasting Techniques and Designs in Compacted SoilsBy Patrick D. McLaughlin
Crater blasting techniques have had relatively little application in the surface mining industry. This is not surprising, considering the geometry required to efficiently use cratering. The more widel
Jan 1, 1992
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Alternatives to Shovel/Truck Pre-Stripping: Three Case StudiesBy Richard R. Marston, Scott Herr, Steve Pries, Donald L. Jr Ewart
The purpose of this paper is to identify and examine alternative methods (other than shovel/truck stripping) of effecting the pre-stripping of consolidated overburden, in conjunction with dragline str
Jan 1, 1992
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The Environmental Disturbance from Special Effects Blasting in Open WaterBy C. Adcock, R. Farnfield, G. Adderley
The use of explosives to create special effects in the film industry is a well-known past time. A recent production required simulation of a large scale water splash from the effect of a statue fallin
Jan 1, 2010
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3000t Controlled Chamber Standing ShotBy He Guangyi
Combining living examples, the paper introduces the controlled chamber standing shot of more than 3000t explosives initiated at one time with Nonel under complicated circumstances and the experience o
Jan 1, 1998
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A Computer Model for Explosively Induced Rock Fragmentation During Mining OperationsBy J W. Simmons, T H. Antoun
"Rock fragmentation is an important component of explosive mining and excavation techniques andis the culmination of a damage accumulation process dominated by crack propagation. During the past 20 ye
Jan 1, 1995
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Applications of Metrics to Blast DesignsBy Thomas Hans Kleine
In general the software required by a blast designer includes tools that graphically present blast designs (surface & underground), can analyze a design or predict its result, and can assess blasting
Jan 1, 1995
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The Importance and Advantages of Accurate Calculation, Evaluation and Control of Dragline MethodologiesBy K B. Holm
This paper deals with the advances made at Syferfontein Colliery in the calculation and control of dragline methodology. The high capital outlay and operating cost of a dragline necessitates strict co
Jan 1, 1994
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Professional Steps in the Blasting ProcessBy Mark William Withey
"Blasting safety in surface mining is a necessary industrial goal. Proper techniques and disciplinesexercised during the blasting process enhance the probability of achieving that goal.The blasting pr
Jan 1, 1995
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How Electronics Initiation has Changed the Rules of Blast DesignBy Thierry Bernard
For many years now electronic initiation has brought the time parameter to the centre of blast designs forever. Although this parameter existed before the era of electronic detonators, Blasting engine
Jan 1, 2005
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Paper or Electronic Records – Ways to Improve Blast Documentation and RecordkeepingBy Travis A. Davidson, Ralph E. Burnham, Cathy Aimone-Martin, J. Kelly Ratliff
Blasters face a long list of tasks to execute daily—from vehicle inspections to blast design and layout, hole loading and tie-in, securing the site, and finally, safely executing the blast. Good pract
Jan 21, 2025
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Drill Monitoring and GPS Developments and their Impact on the Drill to Mill ProcessBy John Vynne
Too often, a mine’s operations, including drilling, blasting, loading, hauling, crushing, processing, etc., are considered independent steps, rather then a continuous process. In fact, these are inter
Jan 1, 2001
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Ontario Hydra T.G.S. Chimney Demolition Thunder Bay, Ontario, CanadaBy Ray Jambakhsh, Gabrielle Bourget
In the summer of 1998, Ontario Hydro awarded a contract to demolish an obsolete and inefficient chimney by blasting. The Ontario Hydro Thunder Bay Thermal Generating Station (T.G.S.), is a fully opera
Jan 1, 2000
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Modeling of Special Blast Geometries from Open Pit to UndergroundBy Dale S. Preece, Stephen H. Chung
Explosives energy can be used effectively in breaking and displacing large volumes of rock in mining and quarrying industries in both open pit and underground. The blast result, however, may not be ec
Jan 1, 2005
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Environmentally Motivated Tracking of Geologic Layer Movement During Bench Blasting Using Discrete Element MethodsBy Dale S. Preece
The blast-induced movement and final location of geologic layers that may cause environmental problems can be predicted using discrete element methods. This prediction capability can be used by mine o
Jan 1, 1994
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New Drill Bit Technology - The Rock Reamer Drill BitBy Roger "Dean" Skaggs
Mechanical rock drilling is about 150 years old, and the fundamental principles of augering, penetration and dragging, pressure and rotation, and percussion have not appreciably changed. Surface minin
Jan 1, 1997