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Tytuł artykułu

Selective flocculation behavior of chromite and serpentine

Wybrane pełne teksty z tego czasopisma
Identyfikatory
Warianty tytułu
PL
Selektywna flokulacja chromitu i serpentynitu
Języki publikacji
EN
Abstrakty
EN
Application of selective flocculation using starch to separate chromite from serpentine has been investigated. It was determined that starch has a specific affinity towards chromite which can be exploited in selective flocculation. However, it was found that this could only be achieved when the amount of serpentine in the chromite-serpentine mixture is below 30% by weight and in the presence of a dispersant such as sodium silicate or ultrasonic treatment of the pulp.
PL
Metoda selektywnej flokulacji z użyciem skrobi jako flokulanta, została użyta do oddzielenia chromitu od serpentynitu. Zostało ustalone, na podstawie badań, że skrobia wykazuje specyficzne powinowactwo do chromitu, który dzięki temu może ulec selektywnej flokulacji. Okazało się jednak, że selektywny rozdział jest możliwy do osiągnięcia w warunkach, gdy ilość serpentynitu w chromicie nie przekracza 30% wagowych. Proces separacji został zrealizowany w obecności dysperganta - krzemianu sodu, a zawiesina była traktowana ultradźwiękami.
Słowa kluczowe
Rocznik
Tom
Strony
103--112
Opis fizyczny
Bibliogr. 33 poz.
Twórcy
autor
autor
  • Middle East Technical University Mining Engineering Department, 06531 Ankara, Turkey, arol@metu.edu.tr
Bibliografia
  • AKDEMIR, Ü.: 1995, Shear flocculation of chromite and serpentine fines, Ph.D. Thesis, Middle East Tech. Univ. Mining Eng. Dept., Ankara.
  • ANONYMOUS, 2003, Personal communication.
  • AROL, A.I. and Iwasaki, I.: 1986, Effect of montmorillonite on the selective flocculation of iron ores, Miner. Metall. Process., 3(4), pp. 231-236.
  • AROL, A.I., Iwasaki, I.: 1987, Control of montmorillonite via complexation and ultrasonics in the selective flocculation of iron ores, Miner. Metall. Process., 4(2), pp. 82-87.
  • ATTIA, Y.A.: 1977, Development of a selective flocculation process for a complex copper ore, Int. J. Miner. Process., 4(3), pp. 209-225.
  • BAGSTER, D.F., MCILVENY, J.D.: 1985, Studies in the selective flocculation of hematite from gangue using high molecular weight polymers, Part 1: Chemical Factors, Int. J. Miner. Process., 14, pp. 1-20.
  • BALAJEE, S.R., IWASAKI, I.: 1969, Adsorption mechanism of starches in flotation and flocculation of iron ores, Trans. AIME, 244, pp. 401-406.
  • BEKLIOGLU, B.: 2002, Effect of ultrasonic treatment on selective flocculation of chromite, M.Sc. Thesis, Middle East Tech. Univ. Mining Eng. Dept., Ankara.
  • ÇIÇEK, T.; CÖCEN, I., SAMANLI, S.: 1998, Gravimetric concentration of fine chromite tailings, in Innovations in Mineral and Coal Processing, Ed.: Atak, Önal&Çelik, Balkema, Rotterdam, pp. 731-736.
  • DOĞAN, M.Z., ÖNAL, G., GÜNEY, A., YÜCEL, A.E.: 1996, New developments in processing of chromite tailings in Turkey, in Mineral Processing and Environment, NATO Advance Study Institute, Director. G.P. Gallios, 18-30 August, Varna, Bulgaria.
  • DOĞU, I., AROL, A.I.: 2004, Separation of dark colored minerals from feldspar by selective flocculation using starch, Powder Technology, 139, pp. 258-263.
  • DUBOIS, M., GILLES, K.A., HAMILTON, J.K., REBERS, P.A. AND SMITH, F.: 1956, Colorimetric method for determination of sugars and related substances, Anal. Chem., 28, pp. 350-356.
  • DRZYMALA, J., FUERSTENAU, D.W.: 1981, Selective Flocculation of Hematite in the Hematite-Quartz-Ferric Ions-Polyacrylic Acid System. Part I. Activation and Deactivation of Quartz, Inter. Min. Process. Journal, 8, 265-277.
  • DRZYMALA, J., FUERSTENAU, D.W.: 1987, Adsorption of Polyacrylamide, Partially Hydrolyzed Polyacrylamide and Polyacrylic Acid on Ferric Oxide and Silica, Process Technol.Proc., Flocculation in Biotechnology and Separation Science, 45-60.
  • GÜNEY, A., ÖNAL, G.: 2000, Application of a new beneficiation method to ultrafine-size chromite, in Mineral Processing on the Verge of 21st Century, Ed.: Özbayoğlu et al., Balkema, Rtterdam, pp. 299-303.
  • HANUMANTHA, K.R., NAYAK, A., MAHAPATRA, S.N., NARASIMHAN, K.S.: 1985, Selective flocculation for the recovery of iron in Kudremukh tailings, Mining Engineering, 37, pp. 1312-1315.
  • HANUMANTHA, K.R., NARASIMHAN, K.S.: 1985, Selective flocculation applied to barsuaan iron ore tailings, Int. J. Miner. Process. 14, 67-75.
  • HEEREMA, R. H., LIPP, R.J., IWASAKI, I.: 1982, Complexation of calcium Ion in selective flocculation of iron ores, Trans. SME-AIME, 272, pp.1879-1884.
  • IWASAKI, I., CARLSON, W. J., PARMETER, S.S.: 1969, The use of starch and starch derivatives and depressants and flocculants in iron ore beneficiation, Trans. AIME, 244, pp. 88-98.
  • KHOSLA, N.K., BHAGAT, R.P., GANDHI, K.S., BISWAS, A.K.: 1984, Calorimetric and other interaction studies on mineral-starch adsorption systems, Colloids Surf., 4(8), pp. 321-336.
  • KRISHNAN, S. V., IWASAKI, I. 1984, Pulp Dispersion in Selective Desliming of Iron Ores, Int. J. Miner. Process., 12(1), pp. 1-13.
  • LASKOWSKI, J.S., LUI Q., BOLIN N.J.: 1991, Polysaccharides in flotation of sulphides: Part 1. Adsorption of polysaccharides onto mineral surfaces, Int. J. Miner. Process., 33(1-4), pp. 223-234.
  • LIEN, H.O., MORROW, J.G.: 1978, Beneficiation of lean iron ores solely by selective flocculation and desliming, CIM Bulletin, 71(798), pp.109-120.
  • MANUKONDA, V. R. AND IWASAKI, I.: 1987, Control of calcium ion via chemical precipitationultrasonic treatment in selective flocculation; Minerals & Metallurgical Processing, 4(4), pp. 217-222.
  • MOUDGIL, B.M., MATHUR, S.: 1994, Removal of dolomite and silica from apatite by selective flocculation, Miner. Metall. Process., 11(4), pp. 217-22.
  • PRADIP, R.A., MOUDGIL, B.M.: 1991, Selective flocculation of tribasic from mixtures with quartz using polyacrylic acid flocculant, Int. J. Miner. Process., 32(1-2), pp. 271-281.
  • RAVISHANKAR, S.A., PRADIP, KHOSLA, N.K.: 1995, Selective flocculation of iron oxides from its synthetic mixtures with clays: A comparison of polyacrylic acid and starch polymers, Int. J. Miner. Process., 43(3-4), pp. 235-247.
  • READ, A.D.: 1971, Selective flocculation separations involving hematite, Inst. Min. Metall. Trans., Section C, 80, pp. 24-31.
  • SOBIERAJ, S., LASKOWSKI, J.: 1973, Flotation of chromite: 1-early research and recent trends; 2-flotation of chromite and surface properties of spinel minerals, Trans. IMM, Sec.C., 82, C207-C213.
  • SWORSKA, A., LASKOWSKI, J.S., CYMERMAN, G.: 2000, Flocculation of the Syncrude fine tailings Part I: Effect of pH, polymer dosage and Mg2+ and Ca2+ cations, Int. J. Miner. Process, 60(2), pp. 143-152.
  • WEISSENBORN, P.K., WARREN, L.J., DUNN, J.G.: 1994, Optimization of selective flocculation of ultrafine iron ore, Int. J. Miner. Process., 42(3-4), pp. 191-231.
  • WEISSENBORN, P.K., WARREN, L.J., DUNN, J.G.: 1995, Selective Flocculation of Ultrafine Iron Ore. I. Mechanism of Adsorption of Starch on Hematite, Colloids and Surf. A: Physicochem. Eng. Aspects, 99(1), pp. 29-43.
  • YARAR, B., KITCHENER, J.A.: 1970, Selective flocculation of minerals: 1- Basic principles, 2-Experimental investigation of quartz, calcite and galena, Inst. Min. Metall. Trans., Section C, 79, pp.23-33.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BAT1-0010-0026
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