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Title:
STRUCTURE FOR FLUID CATALYTIC CRACKING AND PRODUCTION METHOD THEREFOR, AND DEVICE FOR FLUID CATALYTIC CRACKING PROVIDED WITH THE STRUCTURE
Document Type and Number:
WIPO Patent Application WO/2018/221695
Kind Code:
A1
Abstract:
Provided are a catalyst structure for fluid catalytic cracking which exhibits excellent catalyst activity and achieves satisfactory catalytic activity over a long period by reducing aggregation of catalytic substances, a device for fluid catalytic cracking provided with said structure, and a production method for a catalyst structure for fluid catalytic cracking. The catalyst structure for fluid catalytic cracking is characterized by being provided with a support having a porous structure constituted by a zeolite compound, and at least one catalytic substance present in the support, and in that the support has mutually communicating passages, the catalytic substance is metal particles or a solid acid and is present at least in the support passages, and when se catalytic substance is metal particles, said metal particles are from at least one metal selected from the group consisting of nickel, cobalt, iron, copper, gold, silver, platinum, palladium, rhodium, iridium, ruthenium, osmium and molybdenum.

Inventors:
KATO SADAHIRO (JP)
FUKUSHIMA MASAYUKI (JP)
TAKAHASHI HIROKO (JP)
BANBA YUICHIRO (JP)
SEKINE KAORI (JP)
Application Number:
PCT/JP2018/021083
Publication Date:
December 06, 2018
Filing Date:
May 31, 2018
Export Citation:
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Assignee:
FURUKAWA ELECTRIC CO LTD (JP)
International Classes:
B01J29/035; B01J29/70; C10G11/18
Domestic Patent References:
WO2015155216A12015-10-15
WO2015179735A12015-11-26
WO2010097108A12010-09-02
Foreign References:
JP2002255537A2002-09-11
JPH06330055A1994-11-29
JP2014534902A2014-12-25
JP2007520337A2007-07-26
JP2005239520A2005-09-08
JPH10502122A1998-02-24
JPH06285374A1994-10-11
JPH05138033A1993-06-01
JP2008542173A2008-11-27
JP2009242264A2009-10-22
JP2000511107A2000-08-29
JP2016529190A2016-09-23
JP2017128480A2017-07-27
JP2003527957A2003-09-24
Other References:
M. N. MIKHAILOV ET AL.: "Platinum nanoparticles as active sites for C-C bond activation in high- silica zeolites", MICROPOROUS AND MESOPOROUS MATERIALS, vol. 117, 2009, pages 603 - 608, XP025679926
See also references of EP 3632551A4
Attorney, Agent or Firm:
EINSEL Felix-Reinhard et al. (JP)
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