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Use of Boron Based Binders in Pelletization of Iron Ores
Details
Low grade iron ores with impurity gangue minerals must be upgraded to an acceptable level of iron content. Fine-sized concentrates are not suitable to be directly used in the iron-making facilities. Hence, an agglomeration technique should be applied and the most commonly employed method is pelletization. In pelletization, iron ore, water and a binder are balled in a mechanical disc or drum to produce agglomerates. Bentonite is the most widely used binder. However, it is considered as an impurity due to its high silica and alumina contents. Many researchers have investigated different binders, mostly of organic origin, to find a viable alternative binder to bentonite. Organic binders were found to yield good quality green and dry pellets. However, they fail to impart enough strength to the preheated and fired pellets. Boron compounds free of silica and alumina are thought to be a potential solution to overcome the lack of slag forming constituents encountered with organic binders as they have low melting temperatures and ability to lower the melting temperatures of silicates. This book covers the promising results of boron compounds as binder in iron ore pelletization.
Autorentext
Dr Osman Sivrikaya was born in 1979 in Turkey. Graduated from CU-Turkey with BS degree at Mining Engineering. Completed his PhD at METU-Turkey. Worked as Visiting Scholar at MTU-USA for 1 year. Now He is working as Researcher at METU-Mining Engineering Department. Dr Osman Sivrikaya is the author of 15 technical papers on Mineral Processing.
Weitere Informationen
- Allgemeine Informationen
- GTIN 09783845475653
- Sprache Englisch
- Genre Maschinenbau
- Anzahl Seiten 260
- Größe H220mm x B150mm x T16mm
- Jahr 2011
- EAN 9783845475653
- Format Kartonierter Einband
- ISBN 384547565X
- Veröffentlichung 01.09.2011
- Titel Use of Boron Based Binders in Pelletization of Iron Ores
- Autor Osman Sivrikaya
- Untertitel Alternative Binders to Bentonite for Iron Ore Pelletization
- Gewicht 405g
- Herausgeber LAP LAMBERT Academic Publishing