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Distribution Of Minor Elements In Sulfide Smelting (Keynote) (93c08c12-8ada-44e4-8791-ef3b5ef893df)By Kimio Ilagaki
The distribution ratios of Ag, Pb, As, Sb and Bi for the Cu2S-FeS or Ni3S2-FeS matte I FeOx-SiOl, FeOx-Si02-CaO or FeOx-CaO slag equilibration in a MgO crucible were determined experimentally at 1523
Jan 1, 2003
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Distribution of P2O5 between Solid Solution and Liquid Phases in CaO-SiO2-Fe2O3 System Containing Na2O or B2O3By Senlin Xie, Wanlin Wang, Lejun Zhou
"The innovative development of multiphase slag in hot-metal treatment has attracted considerable attention due to the reduction of CaO consumption and minimal environmental emission. In order to impro
Jan 1, 2014
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Distribution of Platinum-Group Elements in an Ultramafic Complex Near Rainbow Mountain, East-Central Alaska RangeBy James C. Barker
Near Rainbow Mountain in the east-central Alaska Range an ultramafic complex forms a sill-like intrusion composed of dismembered bodies exposed along the south side of the Denali Fault and Broxson Gul
Jan 1, 1987
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Distribution Of Precious Metals (Au, Pt, Pd, Rh And Ru) Between Copper Matte And Iron- Silicate Slag At 1573 KBy Hector M. Henao
There is an increasing trend in the copper smelters to recycle electronic materials, which contain relatively high concentration of precious metals. As a consequence, the amount of precious metals los
Jan 1, 2006
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Distribution of Selenium and Tellurium Between Matte and Slag in Nickel Sulfide SmeltingBy N. Choi
The distribution behavior of selenium and tellurium in nickel sulfide smelting was investigated in the temperature range of 1250-1300 °C under an inert gas atmosphere and various oxygen partial pressu
Jan 1, 1996
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Distribution of Various Structural Species in Alkali Borate MeltsBy Zhijing Zhang
A thermodynamic structure model for alkali borate melts is developed to describe the distribution of structural groups in the alkali borate melts as a function of compositions. Fractions of threefold
Jan 1, 2001
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Doe Run Company's Resource Recovery FacilityBy A. W. Worcester
The plant is designed to produce 60,000+ tons of refined lead per year from a nominal feed consisting of 110,000 tons of SLI and industrial batteries, and 10,000 tons of lead contained in drosses and
Jan 1, 1990
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Douglas Centenary Commemoration 1918–2018: Engineering the Science— James Douglas, Early Hydrometallurgy and ChileBy W. William Culver
James Douglas became known in the nineteenth century for two reasons fundamental to his mining career: (1) his experimental work with copper hydrometallurgy, and (2) his grasp of the idea that the qua
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Dredging And Dewatering Sediment Containing Hazardous And Toxic MaterialsBy Ronald C. Askin
Dredging is a common method of remediating ponds containing contaminated wastes. However, dewatering of the dredged solids is usually not well integrated with the dredging phase. As a result, overall
Jan 1, 1996
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Drilled and Tapped Slurry Pump Parts with Hardness in Excess of 700 HBNBy George A. Calboreanu
In order to overcome drilling and tapping of high hardness wear resistent material in slurry pumps, most of time mild steel inserts are mounted in the mold and after pouring they become an integrated
Jan 1, 1996
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Drosrite Salt-Free Processing of Hot Aluminum DrossBy Rodney L. LeRoy, Michel G. Drouet, Peter G. Tsantrizos
"DROSRITE is a unique process that makes possible economic in-plant recovery of metal from hot aluminum dross. It is environmentally friendly, requiring no salt and producing no C02 or NOx gases. The
Jan 1, 2000
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Dross Analysis Methods and Their Application for Evaluating Secondary Furnace OperationsBy Ray D. Peterson, Annette Revet
The optimization of secondary aluminum furnaces is critical to the efficient operation of a recycling facility. Since all metal loss occurs in the drosses, physical and chemical analyses of these by-p
Jan 1, 2000
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Dross Reclamation at Aluminum Melting Furnace SitesBy Daniel E. Groteke
This paper describes a new technology which allows aluminum drosses to be processed at the generating melting furnace to recover available metallic values. The systems, offered in both manual and auto
Jan 1, 2000
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Dry Cell Treatment by Mineral Processing MethodsBy Jorge Alberto Soares Tenório
Household zinc based batteries contain some heavy metals such as zinc, manganese and mercury. There is a large effort from manufacturers in order to eliminate the last one. As a municipal waste, the d
Jan 1, 1999
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Dry Granulation of Hot Metal and Heat Recovery from Off-GasBy Xueqin Li, Xuewei Lv, Wenchao He, Jie Qiu, Jie Dang
Iron powders are mainly produced by Hoganas process and water atomization process, while both of which have the disadvantages of energy consumption. To obtain iron powders with higher particle spheric
Mar 1, 2017
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Dry Granulation of Molten Blast Furnace Slag and Heat Recovery from Obtained ParticlesBy Xuewei Lv, Yuelin Qin, Guibao Qiu, Chenguang Bai
"Blast furnace slag (BF slag), is the main by-product in the ironmaking process, which contains large amounts of sensible heat. To recover the sensible heat, this paper described the hot experiments w
Jan 1, 2012
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Dual Energy X-Ray Transmission Imaging: Applications in Metal ProcessingBy T. P. R. de Jong
Dual energy X-ray transmission imaging is extensively applied for safety luggage inspection. Its advantages are its rapid scanning rate (25 to 100 cm/sec) at approximately I mm resolution and simultan
Jan 1, 2003
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Dual Plant to Produce SHG Zinc and Pure Zinc Sulfate from Zinc Oxide Secondaries by using the ZINCEXTM TechnologyBy M. Frades, C. Frías, G. Díaz, A. B. Mejías
"In recent years, zinc recovery from flue dusts and other industrial wastes has been increased, offering to the market a large tonnage of secondary zinc oxides, which can not be processed directly to
Jan 1, 2008
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Duplex Stainless Steel Corrosion in a Zinc Plant Purification Filter ApplicationBy Michael Heximer, Dominic Verfielst, Timothy Moore
"Teck's Trail Operations recently installed new pressure filters in the cold stage purification step in the zinc leaching plant. Alloy 2205 duplex stainless steel was chosen as the material of constru
Jan 1, 2012
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Durability Of Two Extractants For Pd(II) Separation, Thiodiglycolamide And Di-N-Hexyl Sulfide: Against A Mixed Solution Of HNO3 And HClBy Hirokazu Narita
The extractability for Pd(II) using MOTDA and DHS and their durability against a mixed solution of HNO3 and HCl was investigated by solvent extraction and FT-IR measurements. Both MOTDA and DHS select
Jan 1, 2006