4.7 Article

Coal-based sulfur hybrid sorbent for removal of Hg0 from flue gas. Part 1. High inorganic sulfur coal

期刊

FUEL
卷 312, 期 -, 页码 -

出版社

ELSEVIER SCI LTD
DOI: 10.1016/j.fuel.2021.122973

关键词

Mercury removal; Sulfur hybrid sorbent; High inorganic sulfur coal; Flue gas

资金

  1. National Natural Science Foundation of China [U1710107]
  2. Foundation of CHN ENERGY 2030 Project [GJNY2030XDXM-19-17]
  3. Graduate Education Innovation Program in Shanxi [2020BY134]

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A novel sulfur hybrid mercury sorbent was successfully prepared by chemically activating high inorganic sulfur coal using potassium hydroxide, which showed excellent mercury removal performance at high temperatures, high specific surface area, and adsorption capacity, as well as good resistance to various gases.
A novel sulfur hybrid mercury sorbent was successfully prepared by chemically activating high inorganic sulfur coal using potassium hydroxide (KOH). The optimal conditions for preparing the sorbent are at 800 degrees C with the ratio of KOH/coal at 2:4 by mass. The prepared sorbent, named ZY-2:4-800, containing 0.92% sulfur with a high specific surface area of 353 m2.g 1, has a wide temperature range for mercury removal. Between 60 and 180 degrees C, the Hg0 removal efficiencies of this sorbent keep above 95% within 2 hr under N2+O2+NO+SO2+H2O. This is because that O2 can slightly improve the mercury removal ability of the sorbent, and it shows great resistance to acid gas (NO and SO2) and H2O. The calculated Hg0 adsorption capacity of ZY-2:4-800 is 214.7 mu g.g 1, which is much higher than that of activated carbon sorbent (ACs) reported in the literature. Based on oS and Hg-TPDD analysis, it is revealed that the iron sulfide compounds in coal can be converted into active sites as S0, S22-, and CS during the preparation of the sorbents, and Hg interacts with these active sites and forms beta-HgS (metacinnabar). The excellent mercury removal performance and the low cost indicate that the as-prepared sorbent from the blend of the high inorganic-sulfur coal and KOH is a promising sorbent for mercury removal from flue gas. It is expected that this method could be applicable in converting other high-inorganic sulfur coals into efficient mercury sorbents.

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