Optimization of Drying and Preheating Temperatures During Pellet Induration for Utilizing Goethitic Iron Ores

Society for Mining, Metallurgy & Exploration
Ravi Kant Sagar Rameshwar Sah Basavaraja Maribasappanavar Sangamesh Desai G. Balachandran
Organization:
Society for Mining, Metallurgy & Exploration
Pages:
12
File Size:
1917 KB
Publication Date:
Jun 4, 2022

Abstract

The present research work deals with the effective utilization of hematite ore containing goethite, kaolinite and gibbsite losson- ignition (LOI) phases in pellet making without deteriorating product pellet properties by optimizing the induration cycle especially drying and preheating of pellets. Adequate drying and preheating of pellets before sintering is of prime importance to sustain the desired properties of pellets. Green pellets of + 8 to − 16 mm size were prepared in a laboratory disc pelletizer and indurated by varying drying and preheating temperatures in a laboratory Raising Hearth Furnace (RHF). Produced pellets were assessed for physical and metallurgical properties. Improvement in drying and preheating temperature simultaneously helped in mitigating fired pellets’ property deterioration. Drying at 300 °C and preheating at 750 °C helped in the maximum removal of matrix LOI from the pellets before firing and enabled the production of pellets of desired properties. Laboratory scale findings successfully implemented at existing 4.2 MTPA capacity pellet plant of JSW Steel Ltd. Vijayanagar and high LOI iron ores (IOs) utilised which resulted in reduction of average monthly pellet fines generation by ~2 wt. %.
Citation

APA: Ravi Kant Sagar Rameshwar Sah Basavaraja Maribasappanavar Sangamesh Desai G. Balachandran  (2022)  Optimization of Drying and Preheating Temperatures During Pellet Induration for Utilizing Goethitic Iron Ores

MLA: Ravi Kant Sagar Rameshwar Sah Basavaraja Maribasappanavar Sangamesh Desai G. Balachandran Optimization of Drying and Preheating Temperatures During Pellet Induration for Utilizing Goethitic Iron Ores. Society for Mining, Metallurgy & Exploration, 2022.

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