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Zinc and Lead Recovery from Model Ash CompoundsBy Katsuyasu Sugawara, Takuo Sugawara, Shin-ji Abe, Tadakazu Kagami
"In order to clarify the mechanism and to obtain the fundamental data for heavy metal recovery from an incinerator ash by chlorination, pure chemical reagents, zinc oxide and lead oxide or the fly ash
Jan 1, 2000
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A Novel Process for Foam Glass Preparation from Waste CRT Panel GlassBy Fu-Shen Zhang, Mengjun Chen, Jianxin Zhu
"A novel approach for foam glass preparation, namely vacuum-aided powder sintering technique, was preliminarily investigated in the present communication. The key point of which was to prepare foam gl
Jan 1, 2011
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Sixty Years of Caron: Current AssessmentBy Frustino L. Prado
For more than a century, the AAC (ammonia I ammonium carbonate) process has been applied to the recovery of various metals. A variation of it, the Caron Process was first used in the early 1940's
Jan 1, 2004
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Gold Leaching Characteristics And Intensification Of A High S And As-Bearing Gold ConcentrateBy Bin Xu, Qian Li, Yong-bin Yang, Xiao-liang Liu, Tao Jiang, Yan Zhang
Some high sulfur and arsenic-bearing gold concentrate has a gold leaching rate less than 80% by oxidation roasting-pickling-cyanidation process. The characteristics and intensification of gold leachin
Jan 1, 2015
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The Reductive Leaching Of Manganese Dioxide: Reaction Kinetic Models And MechanismsIron(II), sulphur dioxide and sugars such as lactose are potential reducing agents for manganese dioxide to produce manganese(II) for subsequent hydrometallurgical treatment. The leaching of limonitic
Jan 1, 2003
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Application Of Competitive Complexation / Solvation Theory In Metals Solvent Extraction: New Opportunities In Process Development.By Vladimir Kislik
Competitive complexation/solvation theory of solvent extraction constitutes a general framework for interpretation and quantification of ion-molecular interaction data in extraction systems. Depend
Jan 1, 2003
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Alurec -A 'New Salt-Free Process: Far recovery of aluminum from dross and aluminum containing materialsBy Henrlk Gripenberg
To solve the environmental and financial problems of the traditional Rotary Salt Furnace process, a new salt-free method for aluminum dross and scrap melting, ALUREC, has been developed by AGA and its
Jan 1, 1995
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Role of Innovative Separation Techniques for Value Added Product Recovery from Secondary SourcesBy V. I. Lakshmanan
"Historically flowsheets are developed for efficient separation of metals for economic recovery. With increasing emphasis on reduction, reuse and recycle (3Rs) efficient methods are sought to recover
Jan 1, 1996
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Recovery of Zn and Mn from Spent Alkaline BatteriesBy Marcel Magnusson, Guozhu Ye, Pekka Vaananen, Yang Tian
The most used technology for recycling of spent alkaline batteries consists of crushing, magnetic separation and processing of the nonmagnetic fraction, black mass, using a rotary kiln. In the process
Mar 1, 2018
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The Lead Bath Smelting Process in Nordenham, GermanyBy R. Menge, N. Basin, M. Sibony, J. Lecadet, S. Schmidt
In 1996, Metaleurop replaced its conventional sintering and blast furnace lead smelting activity in Nordenham, Germany by Sirosmelt/Ausmelt technology. Following some alterations to the process and th
Jan 1, 2000
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Thermal Reduction Of Vaniukov Furnace Sulfurous Oxygen-Bearing Off-Gas By MethaneBy Oleg I. Platonov
Method of high-temperature reduction of oxygen-bearing sulfurous gas has been developed at Copper Plant (CP) of MMC ?Norilsk Nickel? Trans-Polar Division (PD) with the aim of producing elemental sulf
Jan 1, 2006
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Thermodynamics of Phosphorous Distribution between Si and Fe-Si in Solvent Refining of SiliconBy Mansoor Barati, Leili Tafaghodi Khajavi
"This study involves employing solvent refining as a purification process in which silicon recrystallization takes place from an iron-silicon melt. It is believed that iron will act as the impurity “g
Jan 1, 2012
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Rare Earth Oxides In Gaseous DesulfurizationBy D. A. R. Kay
Phase stability diagrams are used to predict the abilities of lanthanum and cerium oxides to desulfurize coal gasification products in the temperature range 800-1000 C. Results of desulfurization stud
Jan 1, 1989
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Pyrometallurgical Processing of Secondary Lead Material: An Industry OverlookBy Camille Fleuriault
Continuous development of lead recycling technologies has driven the increasing contribution of secondary lead in battery manufacturing over the years. This review presents and compares the different
Mar 1, 2018
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Flexibility Trends In Copper Solvent ExtractionBy Hans Hein
In its early stage of copper solvent extraction development, SX plants were designed in a series configuration and gradually the copper industry reduced staging and trains for keeping capital investme
Jan 1, 2003
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Copper Electrorefining Impurity EvaluationBy Daniel Kim, Michael Free, Justin McAllister, Urian Marshall, Shijie Wang
"Cathode impurity levels of electrorefined copper were evaluated based on 1/10* scale laboratory electrorefining tests. Cathodes were evaluated near the top, mid-section, and bottom sections of cathod
Jan 1, 2012
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PHAUST: A CADICAL Approach to the Relationships between Phase Diagrams and MicrostructureBy John Pilling
The concept of microstructure, its evolution through materials processing and its effect on the properties of the material is, perhaps, the foundation upon which the science of materials is built. PHA
Jan 1, 1991
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Recovering Zinc and Lead from Electric Arc Furnace Dust: A Technology Status ReportBy A. D. Zunkel
Increasing amounts of electric arc furnace dust (EAFD) are being generated worldwide as more steel is produced from electric furnace melting of galvanized steel scrap. In most countries, the managemen
Jan 1, 2000
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Fluidised Bed Technology in Practical ExamplesBy Andre Krzysik
"Fluidized bed technology has been used in the industry for almost 100 years. To fully understand the process hundreds if not thousands of researchers were and are involved in finding the way to predi
Jan 1, 2014
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SPCC's 1,200,000 TPA Copper IsasmeltBy H. Walqui
Southern Peru Copper Corporation (SPCC) are currently modernizing the Ilo copper smelter. A single ISASMELT furnace will start smelting 1,200,000 tonnes per year of concentrate during the second half
Jan 1, 2006