Evaluation Of An Enhanced Gravity-Based Fine-Coal Circuit For High-Sulfur Coal

Society for Mining, Metallurgy & Exploration
M. K. Mohanty
Organization:
Society for Mining, Metallurgy & Exploration
Pages:
6
File Size:
1302 KB
Publication Date:
Jan 1, 2008

Abstract

One of the main objectives of this study was to evaluate a fine-coal cleaning circuit using an enhanced gravity separator specifically for a high sulfur coal application. The evaluation not only included testing of individual unit operations used for fine-coal classification, cleaning and dewatering, but also included testing of the complete circuit simultaneously. At a scale of nearly 2 t/h, two alternative circuits were evaluated to clean a minus 0.6-mm coal stream utilizing a 150-mm-diameter classifying cyclone, a linear screen having a projected surface area of 0.5 m2, an enhanced gravity separator having a bowl diameter of 250 mm and a screen-bowl centrifuge having a bowl diameter of 500 mm. The cleaning and dewatering components of both circuits were the same; however, one circuit used a classifying cyclone whereas the other used a linear screen as the classification device. An industrial size coal spiral was used to clean the 2- x 0.6-mm coal size fraction for each circuit to estimate the performance of a complete fine-coal circuit cleaning a minus 2-mm particle size coal stream. The ?linear screen + enhanced gravity separator + screen-bowl circuit? provided superior sulfur and ash-cleaning performance to the alternative circuit that used a classifying cyclone in place of the linear screen. Based on these test data, it was estimated that the use of the recommended circuit to treat 50 t/h of minus 2-mm size coal having feed ash and sulfur contents of 33.9% and 3.28%, respectively, may produce nearly 28.3 t/h of clean coal with product ash and sulfur contents of 9.15% and 1.61%, respectively.
Citation

APA: M. K. Mohanty  (2008)  Evaluation Of An Enhanced Gravity-Based Fine-Coal Circuit For High-Sulfur Coal

MLA: M. K. Mohanty Evaluation Of An Enhanced Gravity-Based Fine-Coal Circuit For High-Sulfur Coal. Society for Mining, Metallurgy & Exploration, 2008.

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