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  4. Effects of properties of manganese oxide-impregnated catalysts and flue gas condition on multipollutant control of Hg0 and NO
 
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Effects of properties of manganese oxide-impregnated catalysts and flue gas condition on multipollutant control of Hg0 and NO

Journal
Journal of Hazardous Materials
Journal Volume
291
Pages
1-8
Date Issued
2015
Author(s)
Chiu, C.-H.
Hsi, H.-C.
Lin, H.-P.
Chang, T.-C.
HSING-CHENG HSI  
DOI
10.1016/j.jhazmat.2015.02.076
URI
https://scholars.lib.ntu.edu.tw/handle/123456789/462895
URL
https://www.scopus.com/inward/record.uri?eid=2-s2.0-84924289390&doi=10.1016%2fj.jhazmat.2015.02.076&partnerID=40&md5=bd89e60df8f1c616d3e15be1668d7451
Abstract
This research investigated the effects of manganese oxide (MnOx) impregnation on the physical/chemical properties and multi pollutant control effectiveness of Hg(0) and NO using a V2O5-WO3/TiO2-SiO2 selective catalytic reduction (SCR) catalyst. Raw and MnOx-treated SCR samples were bean-shaped nanoparticles with sizes within 10-30 nm. Impregnating MnOx of ≤ 5 wt% caused limited changes in physical properties of the catalyst. The decrease in surface area when the impregnated MnOx amount was 10 wt% may stem from the pore blockage and particle growth or aggregation of the catalyst. Mn(4+) was the main valence state of impregnated MnOx. Apparent crystallinity of MnOx was not observed based on X-ray diffraction. MnOx impregnation enhanced the Hg(0) oxidation and NO/SO2 removal of SCR catalyst. The 5 and 10% MnOx-impregnated samples had the greatest multi pollutant control potentials for Hg(0) oxidation and NO removal; however, the increasing SO2 removal that may be mainly due to SO2-SO3 conversion should be cautioned. HCl and O2 greatly promoted Hg(0) oxidation. SO2 enhanced Hg(0) oxidation at ≤ 200 ppm while NO and NH3 consistently inhibited Hg(0) oxidation. Elevating flue gas temperature enhanced Hg(0) oxidation. Overall, MnOx-impregnated catalysts show stable and consistent multi pollutant removal effectiveness under the test conditions.
SDGs

[SDGs]SDG6

Type
journal article

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