Invention Grant
- Patent Title: Methane steam reforming, using nickel/alumina nanocomposite catalyst or nickel/silica-alumina hybrid nanocomposite catalyst
-
Application No.: US15156741Application Date: 2016-05-17
-
Publication No.: US10280080B2Publication Date: 2019-05-07
- Inventor: Ji Chan Park , Jung Il Yang , Heon Jung , Tak Hyoung Lim
- Applicant: Korea Institute of Energy Research
- Applicant Address: KR Daejeon
- Assignee: Korea Institute of Energy Research
- Current Assignee: Korea Institute of Energy Research
- Current Assignee Address: KR Daejeon
- Agency: Osha Liang LLP
- Priority: KR10-2015-0093758 20150630
- Main IPC: C01B3/40
- IPC: C01B3/40 ; B01J23/755 ; B01J21/12 ; B01J21/08 ; B01J37/16 ; B01J35/00 ; B01J35/02 ; B01J37/00 ; B01J37/02 ; C01B3/38 ; B01J21/04 ; B01J37/03 ; B01J37/06 ; B01J37/08 ; B01J37/18 ; B01J33/00

Abstract:
The present invention relates to a method of methane steam reforming using a nickel/alumina nanocomposite catalyst. More specifically, the present invention relates to a method of carrying out methane steam reforming using a nickel/alumina nanocomposite catalyst wherein nickel metal nanoparticles are uniformly loaded in a high amount on a support via a melt infiltration method with an excellent methane conversion even under a relatively severe reaction condition of a high gas hourly space velocity or low steam supply, and to a catalyst for this method. In addition, the present invention prepares a nickel/silica-alumina hybrid nanocatalyst by mixing the catalyst prepared by the melt infiltration method as the first catalyst and the nickel silica yolk-shell catalyst as the second catalyst, and applies it to the steam reforming of methane to provide a still more excellent catalytic activity even under the higher temperature of 700° C. or more with the excellent methane conversion.
Public/Granted literature
Information query