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Wire-mesh honeycomb catalysts for selective catalytic reduction of NO with NH3 SCIE SCOPUS KCI

Title
Wire-mesh honeycomb catalysts for selective catalytic reduction of NO with NH3
Authors
Yao, JChoi, JSYang, KSSun, DZChung, JS
Date Issued
2006-11
Publisher
KOREAN INST CHEM ENGINEERS
Abstract
Both flat and corrugated wire mesh sheets were coated with aluminum powder by using electrophoretic deposition (EPD) method. Controlled thermal sintering of coated samples yielded uniform porous aluminum layer with a thickness of 100 mu m that was attached firmly on the wire meshes. Subsequent controlled calcination formed a finite thickness of Al2O3 layer on the outer surface of each deposited aluminum particles, which resulted in the formation of Al2O3/Al double-layered composite particles that were attached firmly on the wire surface to form a certain thickness of porous layer. A rectangular-shaped wire-mesh honeycomb (YVMH) module with triangular-shaped channels was manufactured by packing alternately the flat sheet and corrugated sheet of the Al2O3/Al-coated wire meshes. This WMH was further coated With V2O5-MoO3-WO3 catalyst by wash-coating method to be applied for the selective catalytic reduction (SCR) of NO with NH3. With an optimized catalyst loading of 16 wt%, WMH catalyst module shows more than 90% NO conversion at 240 degrees C and almost complete NO conversion at temperatures higher than 300 degrees C at GHSV 5,000 h(-1). When compared with conventional ceramic honeycomb catalyst, WMH catalyst gives NO conversion higher by 20% due to reduced mass transfer resistance by the existence of three dimensional opening holes in WMH.
Keywords
EPD method; Al/Al2O3 layer; WMH; SCR of NO; NH3; V2O5-WO3/TiO2; catalyst; VANADIA-TITANIA CATALYSTS; NITRIC-OXIDE; V2O5/TIO2 CATALYST; AMMONIA; SILICA; PERFORMANCE; OXIDATION; GELS
URI
https://oasis.postech.ac.kr/handle/2014.oak/23672
DOI
10.1007/s11814-006-0004-4
ISSN
0256-1115
Article Type
Article
Citation
KOREAN JOURNAL OF CHEMICAL ENGINEERING, vol. 23, no. 6, page. 888 - 895, 2006-11
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정종식CHUNG, JONG SHIK
Dept. of Chemical Enginrg
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