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Removal of Magnesium and Boron from Chloride Containing Spent LiquorsBy Bora Derin, Onuralp Yucel, M. Seref Sonmez, Murat Alkan
"Latest stage in the production of boron carbide by metallothermic methods using magnesium was the leaching process. Boron carbide particles obtained by self-propagating high temperature synthesis con
Jan 1, 2008
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Removal of Magnesium from Liquor Produced by Nickel Mining by CrystallizationBy Kristine Bruce Wanderley, Denise Crocce Romano Espinosa, Jorge A. Soares Tenório
Mining of nickel ores generates large volumes of waste that must be removed in order to eliminate water contamination and reduce environmental impacts created by waste barriers. In this context, the n
Mar 1, 2017
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Removal of mercury cyanide species from solutions using dimethyl dithiocarbamatesBy J. B. Nanor, J. Lorengo, M. Misra, C. B. Bucknam
The dissolution of mercury during the gold cyanidation process is the cause of many environmental, health and processing problems. The removal of mercury-cyanide complexes from synthetic solutions and
Jan 1, 1999
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Removal of Metal Contaminants from Mining Effluents Using Freshly Precipitated Hydrolyzed Iron OxidesBy R. J. Rice, K. F. Denning
Effect of iron on the removal of arsenic, mercury and selenium from gold mining effluents. Arsenic, mercury and selenium are common trace elements in gold tailing effluents that require removal befor
Jan 1, 1993
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Removal of Metal Contaminants from Waste Waters Using Biomass Immobilized in Polysulfone BeadsBy M. R. Peterson, C. R. Ferguson, T. H. Jeffers
The ability of microorganisms such as yeast, bacteria, and various aquatic flora to sorb metals from dilute aqueous solutions is well documented. Although microorganisms have significant potential in
Jan 1, 1989
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Removal of metal ions by nonliving water hyacinth rootsBy R. W. Smith, M. C. Fuerstenau, G. X. Xang
Nonliving dried water hyacinth (Eichhornia crassipes (Mart.) Solms) roots were investigated for the biosorption of cadmium, lead and other heavy metal ions from aqueous solutions. Dried water hyacinth
Jan 1, 2000
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Removal Of Metal Ions From Water By Water Hyacinth RootsBy G. X. Wang
The nonliving dried water hyacinth (E. crassipes (Mart.) Solms) roots were investigated for biosorption of cadmium and lead and other heavy metal ions in aqueous solutions. Dried water hyacinth roots,
Jan 1, 1997
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Removal Of Metallic Mercury From Contaminated Tailing By The Flotation ProcessBy M. M. Monte
A method for removing metallic mercury from contaminated tailing, using the flotation process, is described. In order to define some relevant parameters for the mercury flotation system, microflotatio
Jan 1, 1996
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Removal Of Metals From Pregnant Liquors With Ion-Exchange Cloth ? SummaryBy Phil Allen
A synthetic fiber manufactured by one chemical company has been treated by another chemical company to produce a cloth fabric capable of performing ion-exchange functions. Only a few delimiting pa
Jan 1, 1970
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Removal of mica from crushed sand by high pressure washingBy Matheus Tocchini, Henrique Kahn, Juliana Antoniassi, Carina Ulsen, Eldon Masini
"Sand and gravel are the second and third largest minerals in production in Brazil, and this is increasing noticeably. The extraction of natural sand from river beds is increasingly restricted and mos
Jan 1, 2014
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Removal of Microcrystalline Opaline Silica from Bentonite by Ultrasonic TreatmentBy J. Seo, W. Kim, I. Bae
"Microcrystalline silica impurities such as quartz and opal-CT commonly associated in bentonite should be controlled and removed as far as possible when bentonite is used as biocompatible raw material
Jan 1, 2018
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Removal of molybdenum and heavy metals from effluents by flotationBy J. P. Hanten, G. Ramadorai
This paper presents laboratory and pilot plant data on the removal of heavy metals and molybdenum from mining-milling waste water. Molybdenum is removed as an Fe-Mo precipitate by proper addition of f
Jan 1, 1987
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Removal Of Na From The Ammonium Tungstate Solution By Na1+Xalxti2-X(Po4)3By Jiangtao Li, Zhongwei Zhao, Xingyu Chen, Xuheng Liu
In tungsten ion-exchange process, excessive sodium impurity enters into ammonium tungstate solution. However, the Na content of the final ammonium paratungstate (APT) product must be strictly controll
Jan 1, 2014
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Removal Of Nickel From A Complex Chemical Process Waste: Results And Key LearningsBy Jerry D. St. Clair
A multidisciplinary team of scientists and engineers at Wont has been working to understand heavy metal contamination of DuPont process waste streams and technologies for abatement of these metals. As
Jan 1, 1994
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Removal of Nickel from Lead by Stirring with Elemental SulfurBy Pollard D. M
The removal of nickel from lead by sulfur drossing was investigated using a technique which models industrial batch decoppering practice. Successful denickeling to 0.005% (Ni)pb was consistently o
Jan 1, 1987
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Removal Of Non-Metallic Inclusions From Molten Steel Using A High Frequency Magnetic FieldBy Yue Tian, Shengqian Wang, Lifeng Zhang
This paper is to discuss the removal of non-metallic inclusions from molten steel using a high frequency magnetic field. In experiments, a certain amount of aluminum was added to the molten steel in a
Jan 1, 2014
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Removal of Organic Carbon with a Jameson Cell at Red Dog MineBy Todd Smith, Brigitte Lacouture, Greg Anderson, David Lin
"The lead and zinc flotation circuits at Red Dog Mine are preceded by a preflotation circuit which recovers naturally-floating organic carbon contained in the ore. Organic carbon is a potential contam
Jan 1, 2008
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Removal Of Organic Contamination From Buffalo River Sediment By Froth FlotationBy S. R. Clifford
Organic contaminants can be removed from river sediment using conventional flotation methods. Organic contamination in sediments is one of the most significant pollution problems facing the Great Lake
Jan 1, 1994
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Removal of Oxyanions from Metals' Extraction Wastewater by Modified ZeoliteBy V. T. Panayotov, M. I. Panayotova
Wastewater from mining and mineral processing activities is often polluted by anion forming metals, such as molybdenum and chromium. Low cost materials, including zeolites, are studied for removing he
Jan 1, 2016
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Removal of Oxygen from Neodymium by Halide Flux TreatmentBy Chikabumi Yamauchi, Masami Tashiro, Toshiharu Fujisawa, Hiroyuki Snano
"Rare earth metals usually contain large amount of oxygen because of their reactiveness, and therefore oxygen removal is one of the major problems on the purification of rare earth metals. In the pres
Jan 1, 1998