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Beneficiation of quartz waste by flotation and by ultrasonic treatment

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Języki publikacji
EN
Abstrakty
EN
Quartz is one of the most important industrial minerals used in glass and ceramic industries and high quality quartz are preferred. Impurities from quartz are usually removed by magnetic separation or flotation. This study is concerned to beneficiate the quartz from the quartz plant waste from Aydin-Çine region in Turkey by flotation and by ultrasonic bath treatment. The material with 94.8% Si is removed as a waste in the plant, after washing, grinding and classifying were applied. Flotation experiments showed that SiO2 content increased to 98.3% with 80% recovery after removing the -53 micrometer size fraction by desliming. When ultrasonic bath treatment is applied the SiO2 content increased from 94.8% to 99.2% after - 106 micrometer (30%) was removed as a slime. Results showed that better results were obtained with ultrasounic treatment. The aim of this study is to recover the quartz from waste and to add an economic value and therefore to reduce the waste stock for the environmental concern.
Rocznik
Tom
Strony
41--50
Opis fizyczny
Bibliogr. 14 poz.
Twórcy
autor
autor
autor
Bibliografia
  • 1. ALTUN N. E., HWANG J.Y., HİCYİLMAZ C., 2009, Enhancement of flotation performance of oil shale cleaning by ultrasonic treatment, International Journal of Mineral Processing, 91, 1-13.
  • 2. BAYAT O., VAPUR H., KILIÇ Ö., ASLAN V., AKARSU H. F., 2001, Adana kuvars kum tai flotasyonunda Öğütmenin etkisi. 4.Endüstriyel Hammaddeler Sempozyum Kitabı, Editors: H. Köse, V. Arslan, M.Tanrıverdi.
  • 3. CHAMMAS E., PANİAS D., TAXİARCHOU M., ANASTASSAKİS G.N., PASPALİARİS I., 2001, Removal of iron and other major impurities from silica sand for the production of high added value materials, Proceedings of the 9th Balkan Mineral Processing Congress, İstanbul.
  • 4. CİLEK E.C. AND OZGEN S., 2009, Effect of ultrasound on separation selectivity and efficiency of flotation, Minerals Engineering, 22, 14, 1209-1217.
  • 5. FARMER A.D., COLLİNGS A.F., JAMESON G.J., 2000, Effect of ultrasound on surface cleaning of silica particles, International Journal of Mineral Processing, 60, 101-113.
  • 6. IPEK H., GURSOY H., 2001, Possible use of -3 mm ulexite tailings as marketable product, VI Southernhemisphere meeting on mineral technology, Rio de Janeiro.
  • 7. ÖNAL G., ÖZER M., ARSLAN F., 2003, Sedimentation of clay in ultrasonic medium, Minerals Engineering, 16, 129-134.
  • 8. ÖNAL.G., KAYTAZ Y., DOĞAN Z. 2002, Iron removal of Yalıköy Sand Dunes. IX th International Mineral Processing Symposium, Extended Abstracts, Cappadocia/Turkey.
  • 9. ÖZKAN S.G., 2002, Beneficiation of magnesite slimes with ultrasonic treatment, Minerals Engineering, 15, 99-101.
  • 10. ÖZKAN Ş., KURŞUN İ., İPEKOĞLU B., 2001. Trakya Bölgesi kuvars kumlarından feldspat uzaklaştırılması için yeni bir flotasyon yaklaşımı. 4.Endüstriyel Hammaddeler Sempozyum Kitabı, Editors:H. Köse, V. Arslan, M.Tanrıverdi, TMMOB.
  • 11. ÖZKAN S. G., KUYUMCU H.Z., 2006, Investigation of mechanism of ultrasound on coal flotation, International Journal of Mineral Processing, 81, 201-203.
  • 12. Qİ B.C., ALDRİCH C., 2002, Effect of ultrasonic treatment on zinc removal from hydroxide precipitates by dissolved air flotation, Minerals Engineering, 15, 105-1111.
  • 13. SONMEZ E., KOCA S., OZDAG H., IPEK H., 2004, Beneficiation of colemanite concentrates from fine wastes by using ultrasound waves, Minerals Engineering, 17, 359-361.
  • 14. VİEİRA A. M., PERES E.C.A., 2007, The effect of amine type, pH and size range in the flotation of quartz., Minerals Engineering,
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BAT2-0003-0031
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