Improvement in [Formula Omitted] Removal Performance of the Pilot-Scale Boiler Emission Control System Using an Indirect Plasma-Chemical Process

[Formula Omitted] removal from the flue gas of a smoke tube boiler using an ozonizer for NO oxidation and a [Formula Omitted] aqueous solution scrubber (diameter: 0.6 m; height: 3.7 m) was investigated. In this paper, in order to determine the correlation [Formula Omitted] removal performance, the h...

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Veröffentlicht in:IEEE transactions on industry applications 2010-09, Vol.46 (5), p.1722
Hauptverfasser: Fujishima, Hidekatsu, Tatsumi, Atsuyoshi, Kuroki, Tomoyuki, Tanaka, Atsushi, Otsuka, Keiichi, Yamamoto, Toshiaki, Okubo, Masaaki
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Sprache:eng
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Zusammenfassung:[Formula Omitted] removal from the flue gas of a smoke tube boiler using an ozonizer for NO oxidation and a [Formula Omitted] aqueous solution scrubber (diameter: 0.6 m; height: 3.7 m) was investigated. In this paper, in order to determine the correlation [Formula Omitted] removal performance, the height of the packing material layer in the scrubber was varied from 2.1 to 0 m. The performance tests were carried out using both a compressed natural gas (CNG) and a heavy oil. The flue gas flow rates were in the range of 455-1440 [Formula Omitted] under CNG firing and 675-1330 [Formula Omitted] under heavy oil firing, and the boiler [Formula Omitted] emission concentrations were approximately 40 and 100 ppm, respectively. A total packing height of 0.75 m resulted in [Formula Omitted] removal efficiencies of 70% and 60% for CNG and heavy oil, respectively. Moreover, the [Formula Omitted] consumption rate at 0.75 m was 10%-20% less than that at 1.2 m, although the [Formula Omitted] removal efficiency was nearly the same. The correlation between the [Formula Omitted] removal performance and the gas retention time in the scrubber was obtained, providing the design information of the scrubber for industrial applications.
ISSN:0093-9994
1939-9367
DOI:10.1109/TIA.2010.2058079