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Waste Heat Recovery from Industrial Smelting Exhaust GasBy Geir Wedde, Anders Sorhuus
"Vast quantities of energy are released as heat to the environment from industrial operations. Many countries target waste heat recovery to mitigate CO2 emission. Exhaust gases from industries such as
Jan 1, 2012
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Waste Heat Recovery in the Aluminum Melting FurnacesBy John Norton
"This presentation will cover the physical properties of waste heat recovery. It is a two part presentation. The first deals with actually recovering the heat with new state of the art heat exchangers
Jan 1, 2011
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Waste Heat Recovery Opportunities in a Magnesium Silicothermic Reduction PlantBy James C. Sever
"With the advent of high energy costs and increasing concern for the environment leading to the incorporation the C02 life cycle as a criteria for the material used in a finished product, it is benefi
Jan 1, 2013
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Waste Heat Recovery Possibilities In Sinter Plants And Adopting Hot Water Generation At BhilaiBy T. S. Reddy
Research and Development Centre for Iron and Steel (RDCIS) a unit of Steel Authority of India Limited (SAIL) is continuously engaged in reduction of energy consumption at SAIL plants by implementing i
Sep 1, 2012
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Waste Heat Recovery Trial from Aluminum Reduction Cell Exhaust GasesBy Reza Kamali, Mohsen Bashiri, Hadi Fanisalek
"Half of the input energy to aluminum reduction cell will be lost as waste heat which could be studied for possible recovery. Since price of energy is increasing and the main production cost in primar
Jan 1, 2011
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Waste Heat Recovery: Opportunities And ChallengesBy Ilona Johnson
United States metals and non-metallic minerals manufacturing consume about 5,000 trillion Btu annually. Various studies estimate that as much as 20 to 50 percent of this energy is lost as excess or wa
Jan 1, 2008
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Waste Heat Reduction and Recovery Options for Metals IndustryBy Arvind Thekdi, Cynthia Belt2
"Waste heat from industrial operations in metals industry represents 20% to 50% of the total energy used in most manufacturing plants. Reduction and recovery of waste heat offers the most attractive a
Jan 1, 2011
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Waste Heat Utilization to Increase Energy Efficiency in the Metals IndustryBy Jim Sarvinis, Rory Hynes, Elizabet Cruz, Kerry McKenna, Maytinee Vatanakul
"Energy efficiency improvements achieved using heat recovery processes offer benefits to both the business case and environmental impact of metallurgical facilities. Global demand drives the developme
Jan 1, 2011
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Waste Isolation In Salt CavitiesBy Larry Sevenker
On the basis of favorable salt characteristics, primarily compressive strength and impermeability, solution-mined cavities can provide structurally stable isolation chambers for waste. Solution mining
Jan 1, 1981
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Waste Management and Energy Savings through Extraction of Valuable Metals: Copper, Nickel and Cobalt from Sulphidic Tailings of Golgohar Iron Mine, IranBy M. Askari, A. Ahmadi
"This study was conducted to establish the possible application of bioleaching in the pilot scale to recover valuable metals from the sulfidic tailings of Golgohar Iron Mine (Kerman, Iran). Using biol
Jan 1, 2017
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Waste management in Estonian oil shale industryBy M. Lohk, Y. -. R. Pastarus
Oil shale industry of Estonia provides a significant contribution to the country’s economy, but causes a large number of different problems. In spite of high economical parameters of the current under
Jan 1, 2011
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Waste management: A materials management/product stewardship approachBy Redhead Robert J.
"In 1991, the Canadian Council of Ministers for the Environment (CCME) charged its Waste Management Task Group with developing a nationally coordinated strategy to measure, monitor, and achieve the ob
Jan 1, 1996
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Waste Material Resources In VirginiaBy Palmer C. Sweet
Mining-related wastes, which are increasing, are being utilized more and more as valuable resources in Virginia. The Environmental Protection Agency (EPA) divides mining-related wastes into two catego
Jan 1, 1995
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Waste Minimization Activities In The Materials Fabrication Division At Lawrence Livermore National LaboratoryBy J. W. Dini
Introduction The mission of the Materials Fabrication Division (MFD) is to provide fabrication services and technology in support of all programs at Lawrence Livermore National Laboratory (LLNL). MFD
Jan 1, 1992
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Waste Minimization And Resource Recovery Using Centrifugation And Thermal DesorptionBy Bradford H. Miller
Separation and Recovery Systems, Inc. (SRS) provides on-site waste minimization and resource recovery using its state-of-the-art MX-1500 centrifuge and MX-2000 thermal desorber. The MX-1500 can proces
Jan 1, 1994
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Waste Not, Want Not – Delving Deeper into the Simbili Iron Ore Deposit using HyLogging™ Scanning TechnologyBy E R. Ramanaidou, M A. Wells
Reflectance spectroscopy is now an established technique for mineral exploration and ore characterisation. The efficacy of the technique as a tool to characterise the main iron ore and gangue mineralo
Jul 13, 2015
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Waste Not, Want Not – Rethinking the Tailings and Mine Waste IssueBy S Joyce, Z Agioutantis, D van Zyl, D Shields
Over the past 15 years, the mining industry has begun to incorporate the concepts of sustainable development and sustainable mining practice across the life cycle of mineral operations. This requires
Jul 27, 2015
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Waste Processing and Recycling: Some Case StudiesBy V. I. Lakshmanan
Recycling helps to save energy and is good for the environment. It is also important for preserving the limited natural resources. In addition, recycling creates economic benefits and frees up space a
Jan 1, 2011
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Waste Processing of MgO Baghouse Dust using Plasma TechnologyBy S. W. White
Plasma arc technology is increasingly being used to process a number of waste materials. In present research, plasma technology is being investigated to treat waste magnesium baghouse dust, which is a
Jan 1, 1999
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Waste Recycle in the Catalytic Waste ConverterBy T C. Hughes, R Hughes
Ausmelt has developed and commercialised high temperature reactor technology that has been applied to waste processing in the form of a catalytic waste converter (CWC). Ausmelt Technology uses a top s
Jan 1, 2000