-
公开(公告)号:EP2985079B1
公开(公告)日:2018-10-03
申请号:EP14180782.6
申请日:2014-08-13
Applicant: Directa Plus S.p.A.
Inventor: Cesareo, Giulio , Popescu, Razvan , Weinberger, Manuel , Dreer, Christian
IPC: B01J29/14 , B01J37/14 , B01J37/02 , C23C16/52 , B01J29/06 , B01J29/064 , B01J29/072 , C23C16/04 , C23C16/40 , C23C16/442 , C23C16/455 , B01J29/46 , B01J29/76 , B01J29/24
CPC classification number: C23C16/045 , B01J23/745 , B01J23/75 , B01J29/072 , B01J29/146 , B01J29/24 , B01J29/46 , B01J29/7615 , B01J35/008 , B01J35/023 , B01J35/026 , B01J37/0201 , B01J37/0234 , B01J37/086 , B01J37/14 , C23C16/406 , C23C16/442 , C23C16/45544 , C23C16/45555 , C23C16/45561 , C23C16/52
Abstract: This invention relates to a process and an apparatus for production of catalytically active metal composites comprising a solid support material. The metal composites can be designed with a combination of metallic or a combination of metallic and non-metallic materials. The process provides confinement of metal by a shell structure, which is also named eggshell-structure. The activation of at least one chemical reaction like a synthesis reaction, a molecular decomposition or an oxidation reaction can be facilitated by such a material.
-
公开(公告)号:EP2576434B1
公开(公告)日:2018-09-05
申请号:EP11723886.5
申请日:2011-05-31
Applicant: ENI S.p.A.
IPC: C01B3/38 , C01B3/40 , B01J8/02 , B01J8/04 , B01J37/08 , B01J37/02 , B01J23/89 , B01J23/46 , B01J23/40 , B01J21/04 , B01J19/24 , B01J35/02 , B01J35/00
CPC classification number: B01J23/892 , B01J8/0278 , B01J8/048 , B01J19/2485 , B01J19/2495 , B01J21/04 , B01J23/40 , B01J23/464 , B01J35/0006 , B01J35/023 , B01J37/0201 , B01J37/08 , B01J2208/00061 , B01J2208/00256 , B01J2208/00495 , B01J2208/00539 , B01J2208/00849 , B01J2208/025 , B01J2219/2422 , B01J2219/2428 , B01J2219/2434 , C01B3/382 , C01B3/386 , C01B3/40 , C01B2203/0261 , C01B2203/0833 , C01B2203/0883 , C01B2203/1011 , C01B2203/1058 , C01B2203/1064 , C01B2203/107 , C01B2203/1082 , C01B2203/1241 , C01B2203/1247 , Y02P20/52
Abstract: The present invention relates to a process of catalytic partial oxidation with a catalytic system comprising at least two catalytic zones of which at least one zone exclusively contains one or more noble metals selected from the group consisting of Rhodium, Ruthenium, Iridium, Palladium and Platinum and at least another zone contains Nickel, said catalytic system characterized in that at least one zone exclusively containing noble metals selected from the group consisting of Rhodium, Ruthenium, Iridium, Palladium and Platinum is always distinct but in contact with at least one zone containing Nickel. One or more metals selected from the group consisting of Rhodium, Ruthenium, Iridium, Palladium and Platinum are possibly added to the catalytic zone or zones comprising Nickel.
-
13.
公开(公告)号:EP2495042B1
公开(公告)日:2018-08-22
申请号:EP10826054.8
申请日:2010-10-22
Inventor: ZHANG, Tao , ZHANG, Yanhua , WANG, Aiqin , ZHENG, Mingyuan
IPC: B01J27/22 , B01J37/02 , C07C31/20 , C07C29/153
CPC classification number: B01J27/22 , B01J21/18 , B01J35/1028 , B01J35/1047 , B01J35/1061 , B01J37/0018 , B01J37/0201 , B01J37/084 , C07C29/00 , Y02P20/52 , C07C31/202
Abstract: A supported tungsten carbide catalyst comprises tungsten carbide as its active component and a mesoporous carbon as its support, wherein tungsten carbide is highly dispersed on the surface and in the channels of the mesoporous carbon, and the content of tungsten element is in the range from 30% to 42% by mass based on the mesoporous carbon. This catalyst can be prepared by impregnation process. This catalyst can be used for the direct catalytic conversion of cellulose to ethylene glycol under the hydrothermal conditions and at a temperature of 245°C and the hydrogen pressure of 6 MPa with high reactivity, selectivity and stability.
-
公开(公告)号:EP2488296B1
公开(公告)日:2018-08-15
申请号:EP10768411.0
申请日:2010-10-12
Applicant: Lonza Ltd
Inventor: PIANZOLA, Daniel , SIEGRIST, Walter
IPC: B01J23/44 , B01J37/02 , B01J37/08 , C07D213/133
CPC classification number: B01J23/44 , B01J21/08 , B01J21/12 , B01J37/0201 , B01J37/0236 , B01J37/08 , B01J37/18
Abstract: Subject of the invention is a dehydrogenation catalyst for dehydrogenating methylpiperidine to methylpyridine. Subject of the invention are also methods for preparing the catalysts obtained thereby and methods, in which the catalysts are used.
-
公开(公告)号:EP2476648B1
公开(公告)日:2018-07-25
申请号:EP10815416.2
申请日:2010-09-09
Applicant: The University of Tokyo , Hitachi Chemical Company, Ltd.
Inventor: NODA Suguru , KIM Dong Young , OSAWA Toshio , SUGIME Hisashi , HASEGAWA Kei , HABA Eisuke
IPC: C01B32/16 , B01J23/745 , B01J37/34 , C01B3/26 , H01G11/36 , B82Y40/00 , B82Y30/00 , B01J37/08 , B01J37/02 , B01J21/04 , H01M4/587
CPC classification number: C01B3/26 , B01J19/24 , B01J21/04 , B01J23/745 , B01J37/0201 , B01J37/086 , B01J37/347 , B82Y30/00 , B82Y40/00 , C01B32/15 , C01B32/16 , C01B32/164 , C01B2203/0277 , C01B2203/04 , C01B2203/085 , H01G11/36 , H01M4/587 , Y02E60/13
Abstract: A method for simultaneously producing carbon nanotubes and hydrogen according to the present invention is a method for simultaneously producing carbon nanotubes and hydrogen, in which using a carbon source containing carbon atoms and hydrogen atoms and being decomposed in a heated state, and a catalyst for producing carbon nanotubes and H 2 from the carbon source, the above carbon nanotubes are synthesized on a support in a heated state, placed in a reactor, and simultaneously, the above H 2 is synthesized from the above carbon source, the method comprising a synthesis step of flowing a source gas comprising the above carbon source over the above support, on which the above catalyst is supported, to synthesize the above carbon nanotubes on the above support and simultaneously synthesize the above H 2 in a gas flow.
-
16.
公开(公告)号:EP3338887A1
公开(公告)日:2018-06-27
申请号:EP17306621.8
申请日:2017-11-22
Applicant: IFP Energies nouvelles
Inventor: GUICHARD, Bertrand
IPC: B01J37/20 , B01J37/18 , B01J23/882 , B01J27/19 , B01J27/051 , B01J37/02 , B01J35/10 , C10G45/08 , B01J23/94 , B01J27/30 , B01J23/883 , B01J23/888
CPC classification number: B01J23/002 , B01J23/882 , B01J23/883 , B01J23/888 , B01J23/8885 , B01J23/94 , B01J27/0515 , B01J27/19 , B01J27/30 , B01J35/1019 , B01J35/1042 , B01J35/1061 , B01J37/0201 , B01J37/0236 , B01J37/18 , B01J37/20 , B01J2523/00 , C10G45/08 , C10G2300/70 , B01J2523/51 , B01J2523/68 , B01J2523/845
Abstract: La présente invention concerne un procédé de sulfuration d'un précurseur catalytique comprenant un support sur lequel sont déposés au moins un métal du groupe VIB et au moins un métal du groupe VIII, dans lequel on met en contact en présence d'hydrogène ledit précurseur avec une coupe hydrocarbonée hydrotraitée comprenant au moins 90% poids de composés hydrocarbures dont la température d'ébullition est comprise entre 30°C et 520°C à pression atmosphérique et un composé soufré ajouté à ladite coupe hydrocarbonée hydrotraitée, la teneur en soufre ajouté étant comprise entre 0,2 et 6% poids par rapport au poids de la coupe hydrocarbonée hydrotraitée, ledit procédé de sulfuration étant mis en oeuvre à une température comprise entre 150 et 400°C, avec une vitesse volumique horaire (VVH) comprise entre 0,1 h -1 et 5 h -1 , à une pression totale comprise entre 1 et 15 MPa et avec un rapport volumique entre le débit total d'hydrogène et le débit de la coupe hydrocarbonée hydrotraitée compris entre 30 et 1400 NI/I.
-
17.
公开(公告)号:EP3334526A1
公开(公告)日:2018-06-20
申请号:EP16754065.7
申请日:2016-08-09
Applicant: Chevron U.S.A. Inc.
Inventor: ZHANG, Yihua , MAESEN, Theodorus Ludovicus Michael , HAO, Yalin , BUSHEE, Don Ramon , REA, Thomas Michael
IPC: B01J37/04 , B01J35/00 , B01J23/88 , B01J23/888 , B01J29/08 , B01J29/70 , B01J29/80 , B01J37/00 , B01J37/02
CPC classification number: B01J29/80 , B01J23/88 , B01J23/888 , B01J29/084 , B01J29/166 , B01J29/7007 , B01J29/7815 , B01J35/0006 , B01J35/002 , B01J37/0018 , B01J37/0201 , B01J37/0207 , B01J37/0236 , B01J37/04 , B01J37/08 , C10G47/20
Abstract: d. at least one metal selected from the group consisting of elements from Group 6 and Groups 8 through 10 of the Periodic Table. A process for hydrocracking using the hydrocracking catalyst to produce middle distillates is provided. A method for making the hydrocracking catalyst is also provided.
-
公开(公告)号:EP3024580B1
公开(公告)日:2018-06-13
申请号:EP14739190.8
申请日:2014-07-16
Applicant: BASF SE , Dow Global Technologies LLC
Inventor: TELES, Joaquim Henrique , SEELIG, Bianca , RIEDEL, Dominic , KAMPE, Philip , URBANCZYK, Daniel , WEBER, Markus , MÜLLER, Ulrich , PARVULESCU, Andrei-Nicolae , SCHRÖDER, Alexander , WEIDENBACH, Meinolf , WITZL, Werner
IPC: B01J29/89 , B01J29/70 , B01J37/02 , C07D301/12 , C07D301/36 , C07D303/04 , B01J35/00 , B01J37/10
CPC classification number: C07D301/36 , B01J23/06 , B01J27/18 , B01J29/7088 , B01J29/89 , B01J35/00 , B01J35/0006 , B01J35/023 , B01J35/026 , B01J37/0009 , B01J37/0045 , B01J37/0201 , B01J37/10 , B01J2229/186 , B01J2229/42 , C07D301/12 , C07D303/04 , Y02P20/52
Abstract: A continuous process for the preparation of propylene oxide, comprising (i) providing a liquid feed stream comprising propene, hydrogen peroxide, acetonitrile, water, dissolved potassium dihydrogen phosphate, and optionally propane; (ii) passing the liquid feed stream provided in (i) into an epoxidation reactor comprising a catalyst comprising a titanium zeolite of structure type MWW, and subjecting the liquid feed stream to epoxidation reaction conditions; (iii) removing an effluent stream from the epoxidation reactor; wherein the concentration of the dissolved potassium dihydrogen phosphate in the liquid feed stream is at least 10% of the solubility limit of the potassium dihydrogen phosphate in the liquid feed stream.
-
公开(公告)号:EP3322525A1
公开(公告)日:2018-05-23
申请号:EP16734535.4
申请日:2016-06-22
Applicant: Ineos Europe AG
Inventor: HADDAD, Muin S. , BRAZDIL, James F. , GUSTAFERRO, Robert A.
CPC classification number: B01J27/198 , B01J23/22 , B01J27/199 , B01J35/0013 , B01J35/023 , B01J35/08 , B01J37/0045 , B01J37/0201 , B01J37/0203 , B01J37/0207 , B01J37/0211 , B01J37/0236
Abstract: A promoted VPO catalyst for the oxidation of n-butane to maleic anhydride wherein the catalyst comprises the mixed oxides of vanadium and phosphorus, niobium and at least one of antimony and bismuth, wherein the catalyst may be produced in a process comprising impregnating a VPO catalyst with a metal source compound of niobium and a metal source compound of at least one of antimony and bismuth, to form a metal impregnated VPO catalyst, and then drying the metal impregnated VPO catalyst to form the promoted VPO catalyst.
-
20.
公开(公告)号:EP3322508A1
公开(公告)日:2018-05-23
申请号:EP16738730.7
申请日:2016-07-08
Applicant: Wacker Chemie AG
Inventor: DAFINGER, Willibald , ECKERT, Marc , RUDOLF, Günther
CPC classification number: B01D53/8671 , B01D2255/102 , B01D2255/1023 , B01D2255/106 , B01D2255/90 , B01D2256/24 , B01D2257/104 , B01J23/52 , B01J35/008 , B01J35/023 , B01J35/026 , B01J37/0201
Abstract: The invention provides a process for removing oxygen from a gas mixture comprising hydrocarbon and oxygen, wherein the oxygen is at least partly converted in the presence of a catalyst to carbon dioxide and water, characterized in that the catalyst used is an eggshell catalyst composed of a catalyst support in the form of a shaped body with an outer shell comprising a) gold and b) one or more precious metals from the group consisting of palladium, platinum, rhodium, iridium and ruthenium, each of which may independently be in metallic form, in the form of an alloy and in the form of salts, and not comprising any alkali metals or alkali metal salts.
-
-
-
-
-
-
-
-
-