Process to make olefins and aromatics from organics

US9573859B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-9573859-B2
Application numberUS-201414560451-A
CountryUS
Kind codeB2
Filing dateDec 4, 2014
Priority dateJun 25, 2008
Publication dateFeb 21, 2017
Grant dateFeb 21, 2017

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  1. Title

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  2. Abstract

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  4. Key dates

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  5. First independent claim

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  6. CPC / IPC classifications

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  7. Citations and related patents

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Abstract

Official abstract text for this publication.

The present invention relates to a process to make light olefins and aromatics, in a combined XTO-OC process, from an oxygen-containing, halogenide-containing or sulphur-containing organic feedstock comprising: a0) providing a first portion and a second portion of said oxygen-containing, halogenide-containing or sulphur-containing organic feedstock, a) providing a catalyst comprising zeolitic molecular sieves containing at least 10 membered ring pore openings or larger in their microporous structure, b) providing an XTO reaction zone, an OC reaction zone and a catalyst regeneration zone, said catalyst circulating in the three zones, such that at least a portion of the regenerated catalyst is passed to the OC reaction zone, at least a portion of the catalyst in the OC reaction zone is passed to the XTO reaction zone and at least a portion of the catalyst in the XTO reaction zone is passed to the regeneration zone; c) contacting the first portion of said oxygen-containing, halogenide-containing or sulphur-containing organic feedstock in the XTO reactor with the catalyst at conditions effective to convert at least a portion of the feedstock to form a XTO reactor effluent comprising light olefins and a heavy hydrocarbon fraction; d) separating said light olefins from said heavy hydrocarbon fraction; e) contacting said heavy hydrocarbon fraction and the second portion of said oxygen-containing, halogenide-containing or sulphur-containing organic feedstock in the OC reactor with the catalyst at conditions effective to convert at least a portion of said heavy hydrocarbon fraction and oxygen-containing, halogenide-containing or sulphur-containing organic feedstock to light olefins and aromatics.

First claim

Opening claim text (preview).

The invention claimed is: 1. A process of making light olefins and aromatics, in a combined organics to olefins (XTO)-olefins conversion (OC) process, from an oxygen-containing, halogenide-containing or sulphur-containing organic feedstock comprising: selecting a molecular sieve having pores of 10- or more-membered rings, wherein the molecular sieve is a zeolite; contacting the molecular sieve with a metal silicate, different from said molecular sieve, comprising at least one alkaline earth metal to form a catalyst composite, wherein the catalyst composite comprises at least 10 wt % of the zeolite and at least 0.1 wt % of silicate based on a total weight of the catalyst composite; providing a first portion of an oxygen-containing, halogenide-containing, or sulphur-containing organic feedstock; providing an XTO reaction zone, an OC reaction zone and a catalyst regeneration zone, wherein one or more catalysts are in the XTO reaction zone and the same one or more catalysts are in the OC reaction zone, wherein at least one of the one or more catalysts comprises the catalyst composite; wherein each of the one or more catalysts circulates in the three zones, such that at least a portion of the regenerated one or more catalysts are passed to the OC reaction zone, at least a portion of the one or more catalysts in the OC reaction zone are passed to the XTO reaction zone and at least a portion of the one or more catalysts in the XTO reaction zone are passed to the regeneration zone; contacting the first portion of the oxygen-containing, halogenide-containing or sulphur-containing organic feedstock in the XTO reactor with the one or more catalysts at conditions effective to convert at least a portion of the feedstock to form a XTO reactor effluent comprising light olefins and a heavy hydrocarbon fraction; separating the light olefins from the heavy hydrocarbon fraction; and contacting the heavy hydrocarbon fraction and optionally a second portion of the oxygen-containing, halogenide-containing or sulphur-containing organic feedstock in the OC reactor with the one or more catalysts at conditions effective to convert at least a portion of the heavy hydrocarbon fraction and the oxygen-containing, halogenide-containing or sulphur-containing organic feedstock to light olefins and aromatics. 2. The process of claim 1 , wherein the second portion of the oxygen-containing, halogenide-containing or sulphur-containing organic feedstock is up to 70 wt % of the total oxygen-containing, halogenide-containing or sulphur-containing organic feedstock. 3. The process of claim 1 , wherein the second portion of the oxygen-containing, halogenide-containing or sulphur-containing organic feedstock is 0 wt % of the total oxygen-containing, halogenide-containing or sulphur-containing organic feedstock. 4. The process of claim 1 , wherein the catalyst composite comprises from 10 to 90 wt % of the molecular sieve. 5. The process of claim 1 , the molecular sieve is selected from a group consisting of MFI, MOR, MEL, clinoptilolite, FER, FAU, MWW, BETA, ZSM-21, ZSM-22, ZSM-23, ZSM-42, ZSM-57, LTL, and mixtures of thereof. 6. The process of claim 1 , wherein phosphorus is introduced to the zeolite before, simultaneously or after blending of the molecular sieve with the metal silicate. 7. The process of claim 1 , wherein the molecular sieve has an initial atomic ratio Si/Al of at least 4 and not greater than 500. 8. The process of claim 1 , wherein the molecular sieve is dealuminated and then modified with phosphorous before or during contact with the metal silicate. 9. The process of claim 1 , wherein the catalyst composite further comprises metal phosphates. 10. The process of claim 1 , wherein the metal silicate further includes a metal that is Ga, Al, Ce, In, Cs, Sc, Sn, Li, Zn, Co, Mo, Mn, Ni, Fe, Cu, Cr, Ti or V. 11. The process of claim 1 , wherein silicate anion is present in the metal silicate as SiO 3 2− , SiO 4 4− , Si 2 O 7 6− , or Si 3 O 10 8− . 12. The process of claim 1 , wherein the metal silicate is a calcium silicate. 13. The process of claim 1 , wherein, prior to contacting the molecular sieve with the metal silicate, the molecular sieve is modified by at least one of: steaming, leaching, washing, drying, calcining, impregnation and ion-exchange. 14. The process of claim 1 , wherein, prior to contacting the molecular sieve with the metal silicate, the metal silicate is modified by at least one of: calcining, steaming, ion-exchange, impregnation, and phosphatation. 15. The process of claim 1 , wherein all of the one or more catalysts from the catalyst regeneration zone is sent to the OC reaction zone, used one or more catalysts from the OC reaction zone is sent to the XTO reaction zone, and all used one or more catalysts of the XTO reaction zone is sent to the catalyst regeneration zone. 16. The process of claim 1 , wherein all of the one or more catalysts from the catalyst regeneration zone is sent to the OC reaction zone, used one or more catalysts from the OC reaction zone is sent to the XTO reaction zone, and at least a portion of used one or more catalysts of the XTO reaction zone is sent to the catalyst regeneration zone and a remaining portion of the used one or more catalysts from the XTO reaction zone is sent to the OC reaction zone. 17. The process of claim 1 , wherein all of the one or more catalysts from the catalyst regeneration zone is sent to the OC reaction zone, at least a portion of used one or more catalysts from the OC reaction zone is sent to the XTO reaction zone and a remaining portion of used one or more catalysts from the OC reaction zone is sent to the catalyst regeneration zone, and all used one or more catalysts from the XTO is sent to the OC reaction zone. 18. The process of claim 1 , wherein partial pressure of olefins in the OC reactor ranges from 0.5 to 10 bars. 19. The process of claim 1 , wherein a temperature of the OC reactor ranges from 350 to 600° C.

Assignees

Inventors

Classifications

  • Clays or other mineral silicates · CPC title

  • Silica · CPC title

  • to increase the Si/Al ratio; Dealumination · CPC title

  • of the pentasil type, e.g. types ZSM-5, ZSM-8 or ZSM-11, as exemplified by patent documents US3702886, GB1334243 and US3709979, respectively · CPC title

  • Phosphorus; Compounds thereof · CPC title

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What does patent US9573859B2 cover?
The present invention relates to a process to make light olefins and aromatics, in a combined XTO-OC process, from an oxygen-containing, halogenide-containing or sulphur-containing organic feedstock comprising: a0) providing a first portion and a second portion of said oxygen-containing, halogenide-containing or sulphur-containing organic feedstock, a) providing a catalyst comprising zeo…
Who is the assignee on this patent?
Total Res & Technology Feluy
What technology area does this patent fall under?
Primary CPC classification C07C1/20. Mapped technology areas include Chemistry & Metallurgy.
When was this patent published?
Publication date Tue Feb 21 2017 00:00:00 GMT+0000 (Coordinated Universal Time) (B2). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 8 related publications on this page (citations in our corpus or others sharing the same primary CPC).