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2010 Vittorio de Nora Award Winner: Designing Crushing and Grinding Circuits for Improved Energy EfficiencyBy Zeljka Pokrajcic
Crushing and grinding, or comminution, circuits are the most energy intensive process of a mineral processing plant. Comminution involves the physical size reduction of an orebody to a particle size s
Jan 1, 2010
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Analysis of Light Hydrocarbon Gases in the Pyrolysis and Combustion Processes of Waste TiresBy Joner O. Alves
The disposal of scrap tires has been a serious environmental problem. The treatment of this waste by pyrolysis and combustion has advantages since the landfill space is dwindling and the production of
Jan 1, 2010
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Towards Sustainable Material Usage: Investigating Limits to Secondary Aluminum SinksBy Gabrielle Gaustad
For aluminum, substitution of primary with secondary resources decreases energy consumption; this energy advantage creates a strong economic incentive to recycle. Several authors have raised concerns
Jan 1, 2010
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Higher education: the quest for the sustainable campusBy Leith Sharp
I was confronted with a profound dilemma as an undergraduate engineering student at the University of New South Wales in Australia in 1992. I had been taught that our planetary life-support systems we
Jan 1, 2010
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A Comparative Electrochemical Study of Arsenic Removal from Organic and Inorganic Sources using Various Sacrificial ElectrodesBy Jewel Andrew Gomes
Arsenic is considered as one of the toxic materials being controlled by Environmental Protection Agencies in several developed and developing countries. It is found in the nature as constituents of th
Jan 1, 2010
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Lighweight Materials for the Automotive: Environmental Impact Analysis of the Use of CompositesBy Karel Van Acker
The automotive is a sector where energy consumption during the use phase prevails over the production and the end-of-life phase. Therefore, a lot of research and innovations at replacing classical ste
Jan 1, 2010
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Thermal Analysis of Curaua Fiber Reinforced Polyester Matrix CompositesBy Ailton da Silva Ferreira
Thermoset polymers, like the polyester, become harder with increasing temperature owing to molecular crosslink formation, which is a thermal benefit for composite matrix applications. Natural lignocel
Jan 1, 2010
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Solid Oxide Membrane (SOM) Technology For Cost Effective And Environmentally Sound Production Of Metals And Alloys From Their Oxide SourceBy A. Krishnan
Keywords: Tantalum extraction, SOM Technology, inert anode, membrane stability The Solid Oxide Oxygen Ion conducting Membrane (SOM) technology offers great potential for environment friendly and en
Jan 1, 2005
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A Collaborative Tool for Waste Management in the IndustryBy M. S. Borges
The need for the waste management industry to reach environmental patterns, technological innovation, and a technological demand of the productive sector is covered by this study. The environmental ca
Jan 1, 2010
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A Laboratory Investigation of the Reduction of the Iron Carbonate Bearing Ore to Iron Nugget by Means of the ITmk3 Ironmaking TechnologyBy N. V. . Panishev
The Bakal (South Ural, Russia) deposit of iron ore bearing iron carbonate (siderite) with the capacity of more than 1 billion tones belongs to the MMK. This ore cannot be fully processed via blast fur
Jan 1, 2010
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Preparation Of MgO With Low CaO Content And High Specific Surface Area From Low-Grade DolomiteBy Xiang-yang Zhou
Keywords: Low-Grade Dolomite, Low CaO Content, High Specific Surface Area, MgO. A low energy consumption preparation technology of magnesium oxide with low calcium oxide content and high specific s
Jan 1, 2005
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European Recycling Platform ? Experiences from a New VentureBy Hans Korfmacher
Product take-back regulations implemented in Europe have presented significant challenges to the consumer electronic product and battery industries. Initially companies established single compliance o
Jan 1, 2010
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Screening-level Environmental Burden Assessments for Metals Use in Electronics: A Case Study on the U.S. Printed Wiring Board IndustryBy Carl W. Lam
The increased obsolescence rate of electronic products has made it evermore pertinent to understand the potential environmental impact of materials choices to help guide electronic waste (e-waste) man
Jan 1, 2010
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Pressure Leaching of Enargite-Pyrite ConcentratesBy María Cristina Ruiz
Enargite rich copper concentrates can not be treated by conventional smelting/converting technology and thus nonconventional methods such as leaching must be used. Since enargite (Cu3AsS4) is a hard t
Jan 1, 2010
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A Recovery Technology of Ag from Composite Ag-Cu Electronic WastesBy Jinhui Li
Silver is a very important metal used in a wide range of applications. It is necessary to recovery of Ag from electronic wastes for increasing of Ag price and circumstance protection. For separating a
Jan 1, 2009
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Leaching Studies for the Recovery of Metals from the Waste Printed Circuit Boards (PCBs)By Manis Kumar Jha
Leaching studies were carried out for the recovery/ recycling of metals from PCBs containing 17.05% Cu, 0.74% Ni, 1.74% Fe, 4.35% Pb and 8.32% Sn using various acids such as H2SO4, HCl and HNO3. While
Jan 1, 2010
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Bubble Attachment Time Measurements For Select Rare-Earth Phosphate Minerals In Oleate SolutionsBy W. M. Cross
Bubble attachment time measurements for the rare-earth phosphate minerals monazite and xenotime were made as a function of oleate concentration, sodium fluoride addition, and temperature. Results indi
Jan 1, 1989
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The Effect of Carburizing on the Fatigue Life of 4130 SteelBy R. Fragoudakis
AISI 4130 steel is a medium carbon Cr-Mo steel used in automotive, aeronautic and other general-purpose industries. In this study, 4130 steel fatigue specimens were carburized at 927oC to enhance the
Jan 1, 2010
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Engagement is an Essential Skill in the 21st CenturyBy Dirk van Zyl
As part of the North American regional activities during the Mining, Minerals and Sustainable Development Project (MMSD) one project focused on the development of sustainability evaluations at the ope
Jan 1, 2010
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Improving Energy Efficiency in a Modern Aluminum Casting OperationBy Mark Osborne, Ray D. Peterson, C. Edward Eckert
"The theoretical melting energy requirement for a typical hypoeutectic aluminum-silicon alloy is approximately 520 BTU/lb. It has been demonstrated, however, that even a state of the art secondary pro
Jan 1, 2009