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Elemental Mercury Control by Novel Oxidant and Sorbent in an Entrained-Flow System
Authors:Sang-Sup Lee  Joo-Youp Lee  Tim C Keener
Institution:(1) Department of Civil and Environmental Engineering, University of Cincinnati, Cincinnati, OH 45221-0071, USA
Abstract:An entrained-flow system has been designed and constructed to simulate in-flight mercury capture by sorbents in ducts of coal-fired utility plants. The test conditions of 1.5 s residence time, 140°C temperature, 4.5 ppbv inlet Hg0 concentration, and 0–20 lb/MMacf sorbent injection rates were chosen to simulate conditions in the ducts. Novel oxidants developed in previous fixed-bed tests and novel sorbents derived from the novel oxidants were tested for their Hg0 capture in the entrained-flow system to examine the possibility of using those sorbents in a full-scale system. Darco-FGD and Darco Hg-LH served as benchmark sorbents with which mercury control capability of the novel oxidants and novel sorbents could be compared. The test results showed that the novel oxidants have remarkable Hg0 oxidation capability, and the novel sorbents showed a better performance in Hg0 removal than Darco Hg-LH.
Keywords:Activated carbon  Coal power plant  Elemental mercury  Entrained flow  Mercury control  Sorbent injection
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