4.7 Article

The performance of iodine on the removal of elemental mercury from the simulated coal-fired flue gas

Journal

JOURNAL OF HAZARDOUS MATERIALS
Volume 166, Issue 2-3, Pages 776-781

Publisher

ELSEVIER SCIENCE BV
DOI: 10.1016/j.jhazmat.2008.11.130

Keywords

Elemental mercury; Coal-fired flue gas; Iodine; Removal efficiency

Funding

  1. High-Tech R&D Program of China [2007AA06Z340]

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In order to facilitate the removal of elemental mercury (Hg-0) in flue gas, iodine was used as the oxidant to convert He-0 to the oxidized or particulate-bound form. The removal of He-0 by the homogenous gas phase reaction and the heterogeneous particle-involved reactions was investigated under various conditions, and a method to test the particle-involved reaction kinetics was developed. Iodine was found to be efficient in He-0 oxidation, with a 2nd-order rate constant of about 7.4(+/- 0.2) x 10(-17) cm(3) molecules(-1) s(-1) at 393 K. Nitric oxide showed significant inhibition in the homogenous gas reaction of He-0 oxidation. The oxidation of He-0 with iodine can be greatly accelerated in the presence of fly-ash or powder activated carbon. SO2 slightly reduced He removal efficiency in the particle-involved reaction. It was estimated that He-0 removal efficiency was as high as 70% by adding 0.3 ppmv iodine into the flue gas with 20 g/m(3) of fly-ash. In addition, the predicted removal efficiency of He-0 was as high as 90% if 10 mg/m(3) of activated carbon and 0.3 ppmv iodine were injected into the flue gas with fly-ash. The results suggest that the combination of iodine with fly-ash and/or activated carbon can efficiently enhance the removal of He-0 in coal-fired flue gas. (C) 2009 Elsevier B.V. All rights reserved.

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