The patent badge is an abbreviated version of the USPTO patent document. The patent badge does contain a link to the full patent document.

The patent badge is an abbreviated version of the USPTO patent document. The patent badge covers the following: Patent number, Date patent was issued, Date patent was filed, Title of the patent, Applicant, Inventor, Assignee, Attorney firm, Primary examiner, Assistant examiner, CPCs, and Abstract. The patent badge does contain a link to the full patent document (in Adobe Acrobat format, aka pdf). To download or print any patent click here.

Date of Patent:
Aug. 11, 2015

Filed:

Nov. 27, 2012
Applicant:

Korea Institute of Science and Technology, Seoul, KR;

Inventors:

Jong Soo Jurng, Seoul, KR;

Sung Min Chin, Uijeongbu-si, KR;

Eun Seuk Park, Seongnam-si, KR;

Attorney:
Primary Examiner:
Int. Cl.
CPC ...
B01J 23/22 (2006.01); B01J 37/02 (2006.01); B01D 53/94 (2006.01); B01J 35/00 (2006.01); B01J 35/10 (2006.01);
U.S. Cl.
CPC ...
B01J 23/22 (2013.01); B01D 53/9409 (2013.01); B01J 35/002 (2013.01); B01J 35/1019 (2013.01); B01J 35/1038 (2013.01); B01J 37/0201 (2013.01); B01J 37/0211 (2013.01); B01J 37/0213 (2013.01); B01J 37/0238 (2013.01); B01D 53/9418 (2013.01); B01D 2255/20707 (2013.01); B01D 2255/20723 (2013.01); B01D 2255/9207 (2013.01);
Abstract

Provided is a method for preparing a vanadia-titania catalyst, comprising: vaporizing a titanium precursor; conveying the vaporized titanium precursor to a reaction unit together with an oxygen supplying source; reacting the vaporized titanium precursor conveyed to the reaction unit with the oxygen supplying source to produce titania particles; condensing the titania particles, collecting and recovering them; mixing the recovered titania particles with a vanadium precursor solution; drying the mixture of the titania particles with the vanadium precursor solution; and calcining the dried mixture under oxygen atmosphere or air. Provided also is a vanadia-titania catalyst obtained by the method. The vanadia-titania catalyst has a large specific surface area, uniform and fine nano-scaled size, and high dispersibility, thereby providing excellent nitrogen oxide removal efficiency, particularly in a low temperature range of 200° C.-250° C.


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