4.6 Article

Oxygen-Induced Elemental Mercury Oxidation in Chemical Looping Combustion of Coal

期刊

ACS OMEGA
卷 7, 期 24, 页码 20959-20967

出版社

AMER CHEMICAL SOC
DOI: 10.1021/acsomega.2c01709

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资金

  1. Natural Science Foundation of Shanghai [21ZR1444400]
  2. National Natural Science Foundation of China [51706143, 51976129]
  3. Foundation of State Key Laboratory of High-efficiency Utilization of Coal and Green Chemical Engineering [2022-K38]

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This paper investigates the effects of different flue gas components on the transformation of mercury during the combustion of coal. The results show that HCl, NO, and CO2 promote the oxidation of elemental mercury (Hg-0) while SO2 inhibits its oxidation. The study also compares the oxidation efficiency of Hg-0 by eight commonly used oxygen carriers in chemical looping combustion (CLC). The findings indicate that the oxygen release capacity of the oxygen carriers influences the oxidation efficiency of Hg-0. O2 is identified as the core species affecting mercury transformation in CLC.
Mercury emission is an important issue during chemical looping combustion (CLC) of coal. The aim of this work is to explore the effects of different flue gas components (e.g., HCl, NO, SO2, and CO2) on mercury transformation in the flue gas cooling process. A two-stage simulation method is used to reveal the reaction mechanism of these gases affecting elemental mercury (Hg-0) oxidation. Furthermore, using this method, Hg-0 oxidation by eight oxygen carriers (Co3O4, CaSO4, CeO2, Fe2O3, Al2O3, Mn2O3, SiO2, and CuO) commonly used in CLC are investigated and their Hg-0 oxidation efficiencies were compared with the existing experimental results. The results show that HCl, NO, and CO2 promote Hg-0 oxidation during flue gas cooling, while SO2 inhibits Hg-0 oxidation. The stronger the oxygen release capacity of oxygen carriers, the higher the oxidation efficiency of Hg-0 becomes. The order of Hg-0 removal efficiency from high to low is Co3O4, CuO, Mn2O3, CaSO4, Fe2O3, CeO2, Al2O3, and SiO2, and this sequence is in good agreement with the existing experimental results. Different flue gas components directly or indirectly affect the O-2 content, thus affecting the content of gaseous oxidized mercury (Hg2+). Different oxygen carriers have different oxygen release capacities and different Hg-0 oxidation efficiencies. Therefore, O-2 is the core species affecting the mercury transformation in CLC.

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