Literature DB >> 19708374

Enhanced elemental mercury removal from coal-fired flue gas by sulfur-chlorine compounds.

Nai-Qiang Yan1, Zan Qu, Yao Chi, Shao-Hua Qiao, Ray L Dod, Shih-Ger Chang, Charles Miller.   

Abstract

Oxidation of Hg(0) with any oxidant or converting itto a particle-bound form can facilitate its removal. Two sulfur-chlorine compounds, sulfur dichloride (SCl2) and sulfur monochloride (S2Cl2), were investigated as oxidants for Hg(0) by gas-phase reaction and by surface-involved reactions in the presence of flyash or activated carbon. The gas-phase reaction between Hg(0) and SCl2 is shown to be more rapid than the gas-phase reaction with chlorine, and the second order rate constant was 9.1 (+/- 0.5) x 10(-18) mL-molecules(-1) x s(-1) at 373 K. The presence of flyash or powdered activated carbon in flue gas can substantially accelerate the reaction. The predicted Hg(0) removal is about 90% with 5 ppm SCl2 or S2Cl2 and 40 g/m3 of flyash in flue gas. The combination of activated carbon and sulfur-chlorine compounds is an effective alternative. We estimate that coinjection of 3-5 ppm of SCl2 (or S2Cl2) with 2-3 Lb/MMacf of untreated Darco-KB is comparable in efficiency to the injection of 2-3 Lb/MMacf Darco-Hg-LH. Extrapolation of kinetic results also indicates that 90% of Hg(0) can be removed if 3 Lb/MMacf of Darco-KB pretreated with 3% of SCl2 or S2Cl2 is used. Mercuric sulfide was identified as one of the principal products of the Hg(0)/SCl2 or Hg(0)/S2Cl2 reactions. Additionally, about 8% of SCl2 or S2Cl2 in aqueous solutions is converted to sulfide ions, which would precipitate mercuric ion from FGD solution.

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Year:  2009        PMID: 19708374     DOI: 10.1021/es801910w

Source DB:  PubMed          Journal:  Environ Sci Technol        ISSN: 0013-936X            Impact factor:   9.028


  2 in total

1.  Isotope effect of mercury diffusion in air.

Authors:  Paul G Koster van Groos; Bradley K Esser; Ross W Williams; James R Hunt
Journal:  Environ Sci Technol       Date:  2013-12-23       Impact factor: 9.028

2.  A new route for unburned carbon concentration measurements eliminating mineral content and coal rank effects.

Authors:  Dong Liu; Yuan-Yuan Duan; Zhen Yang; Hai-Tong Yu
Journal:  Sci Rep       Date:  2014-04-02       Impact factor: 4.379

  2 in total

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