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Overview Of Galvanic Stripping Of Organic Solvents In Waste Materials TreatmentBy L. M. . Chia
The successful treatment of waste materials to recover metals with acceptable purity is often hampered by the presence of undesirable impurities. The problem is further complicated by the need to ins
Jan 1, 1994
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Overview of Industrial Energy Training and SoftwareBy Cynthia Belt
"Before energy can be saved in the materials industry, the process must be understood. At the same time, baby boomers are starting to retire. New people are entering the field without experience and t
Jan 1, 2013
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Overview of NSR Intermediate Strategic Expansion PlanBy Osamu Iida
Since 'start-up of the larger Mitsubishi Continuous Copper Smelting Process in 1991, furnace relining campaign was gradually prolonged to once every 2 years according to deregulation of governmen
Jan 1, 2001
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Overview of Refractory RecyclingBy Robert T. Oxnard
"EXECUTIVE SUMMARYThe history of Refractory Recycling indicates there was little recycling until the 1950s. Energy incentives were the primary reason for the beginnings of a recycling effort by the re
Jan 1, 2000
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Overview of Removal Methods for Co2 and Other Greenhouse Gas and Details of the Method Using Nonthermal PlasmaBy Marcela Morvová, Mário Janda, Morva Imrich
"The possibilities of greenhouse gas mitigation using various methods are brought out. The special case of utilization of mixture of CO2 with other greenhouse gases in a synergetic way inside non-ther
Jan 1, 2010
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Overview Of The Advanced Materials For Energy Conversion?III, Symposium In Honor Of Drs. Gary Sandrock, Louis Schlapbach, And Seijirau Suda For Lifetime Achievements In Metal Hydride Research And Development - IntroductionBy Dhanesh Chandra
In this symposium, research in the area of energy conversion is presented. This symposium has special significance, as we honor three prominent scientists from hydrogen storage research and developme
Jan 1, 2006
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Overview on Application of Platinum Mineralogy to Mineral Exploration and ProcessingBy L. J. Cabri
The level of mineral exploration activity for platinum in recent years, especially in North America, has ranged widely. Exploration programs have been based on a variety of ore deposit models and depo
Jan 1, 1988
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Oxidation And Decarburization In TRIP SteelsBy T. L. Baum
External oxidation during in-line heat treatment of TRIP steels can cause problems for the subsequent coating process. This research aims to elucidate the kinetic rates of internal oxidation, external
Jan 1, 2006
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Oxidation and Ignition Characteristics of Nickel ConcentratesBy J. J. Talja
An investigation of oxidation of various nickel concentrates was carried out using differential scanning calorimetry (DSC). The aim of this study was to determine the ignition temperature and investig
Jan 1, 1994
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Oxidation Behavior of Al3Ti IntermetallicsBy R. G. Reddy
The oxidation kinetics of A13Ti intermetallics have been studied at the temperature range of 850°C to 100O0C in pure dry oxygen. The oxygen diffusion rates were investigated using TGA method. Paraboli
Jan 1, 1997
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Oxidation Behavior of Aluminium 6061-Hematite Particulate MMCs at Elevated TemperatureBy S. C. Sharma, M. Krishna, N. Sanmukha
"The oxidation behavior of an aluminium composite with 0, 2, 4, and 6% by weight of hematite at 200 to 500 °C has been investigated. Within the experimental temperature ranges a parabolic weight gain
Jan 1, 2000
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Oxidation Behavior of Molten Cu-Be AlloysBy Chikabumi Yamauchi, Mitsuru Tanahashi, Jutaro Miura, Takaharu Iwadachi, Toshiharu Fujisawa
"Tue oxidation behavior of molten Cu-Be alloys was investigated by exposing· the molten Cu-Be alloys to various Ar-O2 atmospheres to control the oxygen partial pressure, PO2 = 10 ~105 Pa at 1423 K. Th
Jan 1, 2000
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Oxidation Behavior of TiA13By Xuerong Wen
The oxidation behavior of TiAl3 intermetallics was investigated as a hnction of time at 1273K in pure dry oxygen. The oxidation experiments were carried out using TGA method. The oxidation scales were
Jan 1, 1998
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Oxidation Character Of Carbon Composite Bricks Used In Blast FurnaceBy Cong Wang, Kexin Jiao, Yongan Zhao, Haibin Zuo, Jianliang Zhang
The carbon composite brick is a new refractory used in blast furnace hearth and bottom. It caused wide attention due to its high thermal conductivity and low erosion by molten iron. In this paper, che
Jan 1, 2015
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Oxidation Kinetics of Fe-Cr and Fe-V Liquid Alloys under Controlled Oxygen PressuresBy Seshadri Seetharaman, Nurni N. Viswanathan, Haijuan Wang
"In order to make the stainless steel making process efficient and environment friendly, it is essential to minimize the loss of chromium to the slag phase. With a view to investigate the advantages o
Jan 1, 2010
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Oxidation Leaching of Copper Concentrates for Production of Electrolytic CopperBy B. M. Fisher
A process for making electrolytic copper of high quality from copper flotation concentrates is described. The concentrates are first slurried and then subjected to a high-temperature, high-pressure, o
Jan 1, 1976
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Oxidation Mechanism of Arsenopyrite in Acidic Ferric Sulphate Media in the Absence and Presence of Bacteria T. FerrooxidansBy Y. Z. Zhang
Electrochemical oxidation of arsenopyrite in ferric sulphate media in the absence and presence of bacteria T jerrooxidans has been investigated for the purpose of understanding the dissolution chemist
Jan 1, 1996
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Oxidation Of Chalcopyrite By 'In-Situ' Electrogenerated FeIII And CuII Using An Ion Exchange MembraneBy S Ivanaj
Oxidation of chalcopyrite from a copper concentrate in an electrochemical cell having separate-anodic and cathodic compartments was studied by potentiodynamic, potentiostatic and galvanostatic experim
Jan 1, 1995
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Oxidation of Chalcopyrite Under Simulated Conditions of Deep Solution MiningBy Jeffrey W. Braithwaite
The laboratory characterization of the oxidation of chalcopyrite under conditions of deep solution mining is presented in this paper. A salient feature of this system is the pH buffering effect result
Jan 1, 1976
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Oxidation Of Copper At Different TemperatureBy Gabriel Plascencia
Copper was oxidized in the temperature range from 300 to 1000 GC under different pressures of oxygen. In the range from 300 to 500°C, copper oxidizes following the logarithmic rate law; while in the r
Jan 1, 2003