WO2025132136 - METHOD FOR PRODUCING RENEWABLE KEROSENE BY TWO-STEP HYDROPROCESSING USING A SPECIFIC CATALYST IN THE HYDROCONVERSION STEP WITH RECYCLE OF A HEAVY FRACTION
National phase entry is expected:
Publication Number
WO/2025/132136
Publication Date
26.06.2025
International Application No.
PCT/EP2024/086433
International Filing Date
16.12.2024
Title **
[English]
METHOD FOR PRODUCING RENEWABLE KEROSENE BY TWO-STEP HYDROPROCESSING USING A SPECIFIC CATALYST IN THE HYDROCONVERSION STEP WITH RECYCLE OF A HEAVY FRACTION
[French]
PROCEDE DE PRODUCTION DE KEROSENE RENOUVELABLE PAR HYDROPROCESSING EN 2 ETAPES UTILISANT UN CATALYSEUR SPECIFIQUE DANS L'ETAPE D'HYDROCONVERSION AVEC RECYCLAGE D'UNE FRACTION LOURDE
Applicants **
IFP ENERGIES NOUVELLES
Inventors
BOUCHY, Christophe
TELLIER, Elodie
HUDEBINE, Damien
ARAGONES, Matthieu
LOPEZ GARCIA, Clementina
Priority Data
FR2314828
21.12.2023
FR
Application details
| Total Number of Claims/PCT | * |
| Number of Independent Claims | * |
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| Number of Multi-Dependent Claims | * |
| Number of Drawings | * |
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International Searching Authority |
EPO
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| Recordal of a Change of the Applicant's Name/Address |
Change of Applicant's Name and Address
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| Type of Assignment |
The Standard Agent's Assignment
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| Applicant's Legal Status |
Legal Entity
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| * | |
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| Entry into National Phase under |
Chapter I
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| Patent Delivery |
Send the Letters Patent by Courier
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| Translation |
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* The data is based on automatic recognition. Please verify and amend if necessary.
** IP-Coster compiles data from publicly available sources. If this data includes your personal information, you can contact us to request its removal.
Quotation for National Phase entry
| Country | Stages | Total | |
|---|---|---|---|
| China | Filing, Examination, Granting | 2194 | |
| EPO | Filing, Examination, Granting | 9021 | |
| Japan | Filing, Examination, Granting | 2108 | |
| South Korea | Filing, Examination, Granting | 1927 | |
| USA | Filing, Examination, Granting | 4740 |

Total:
19,990
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Abstract[English]
The present invention describes a method for treating a feedstock originating from a renewable source comprising a hydrotreatment step a), a step b) of separation of at least one portion of the effluent resulting from step a) into at least one light fraction and at least one hydrocarbon effluent, a step c) of hydroconversion of the hydrocarbon effluent resulting from step c), using at least one specific bifunctional catalyst comprising at least one noble metal from group VIII selected from among platinum and palladium, and a support comprising at least one zeolite selected from among the MTW zeolites and the IZM-2 zeolite, alone or in a mixture, and at least one binder, a step d) of separation of the effluent resulting from step c), which makes it possible to separate at least one gaseous fraction and at least one hydrocarbon liquid effluent, and a step e) of fractionation of the hydrocarbon effluent resulting from step d) into at least one kerosene cut and at least one heavy cut having an initial boiling point of between 250 and 300°C, wherein all or part of the heavy cut resulting from the step e) is recycled to the hydroconversion step c).[French]
La présente invention décrit un procédé de traitement d'une charge issue d'une source renouvelable comprenant une étape a) d'hydrotraitement, une étape b) de séparation d'au moins une partie de l'effluent issu de l'étape a) en au moins une fraction légère et au moins un effluent hydrocarboné, une étape c) d'hydroconversion de l'effluent hydrocarboné issu de l'étape c) utilisant au moins un catalyseur bifonctionnel spécifique comprenant au moins un métal noble du groupe VIII choisi parmi le platine et le palladium et un support comprenant au moins une zéolithe choisie parmi les zéolithes de code structural MTW, et la zéolithe IZM-2 seules ou en mélange, et au moins un liant, une étape d) de séparation de l'effluent issu de l'étape c) qui permet de séparer au moins fraction gazeuse, et au moins un effluent liquide hydrocarboné, et une étape e) de fractionnement de l'effluent hydrocarboné issu de l'étape d) en au moins une coupe kérosène, au moins une coupe lourde ayant un point d'ébullition initial compris entre 250 et 300°C, avec recyclage de tout ou partie de ladite coupe lourde issue de ladite étape e) dans ladite étape c) d'hydroconversion.