4.7 Article

Volatilization of toxic elements from coal samples of Thar coal field, after burning at different temperature and their mobility from ash: Risk assessment

Journal

CHEMOSPHERE
Volume 217, Issue -, Pages 35-41

Publisher

PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.chemosphere.2018.10.209

Keywords

Toxic element; Lignite coal; Laboratory-made ash; Proximate analysis; Volatile elements

Funding

  1. National Centre of Excellence in Analytical Chemistry (NCEAC), University of Sindh Jamshoro, Pakistan

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In present study, the volatilization of arsenic (As), cadmium (Cd), mercury (Hg) and lead (Pb) by the burning of coal samples in the electric furnace was evaluated. The coal samples were obtained from different blocks of newly developed Thar coal field, Pakistan. The replicate coal samples were heated/ burned in an electric furnace at laboratory scale for three temperature intervals (200, 400 and 900 degrees C). The ash obtained after each temperature intervals were analyzed for selected toxic elements. The resulted data indicated that the total contents of As, Cd, and Pb in coal samples of block X and XI were found in the range of 16.8-18.5, 4.21-4.72, and 14.2-18.8 mg/kg, respectively. Whereas, 67.8-79.7%, 34.3-36.8% and 9.89-10.8% of As, Cd, and Pb, respectively, were volatized out after combustion of coal samples at 900 degrees C. The total contents of Hg in selected coal samples of block X and XI were observed in the range of 0.985-1.46 and 0.992-1.41 mg/kg, respectively. The contents of Hg volatilized out via burning in a furnace at 200 degrees C and 400 degrees C, were observed in the range of 32.0-36.5% and >91.0% of its total contents, respectively, whereas at 900 degrees C, it was not detected in ash. The partitioning and mobility of studied toxic elements in residue termed as (laboratory made ash) obtained after burning at 900 degrees C, was carried out by three-step sequential extraction scheme. The resulted data of present study will give a better knowledge about the quality of coal and its burning product, which may help to take measure to reduce the adverse effects on the environment in future. (C) 2018 Elsevier Ltd. All rights reserved.

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