Claims
- 1. A porous crystalline material with a chemical composition
- 2. A porous crystalline material in accordance with claim 1, which in its uncalcined synthesised form has an X-ray diffraction pattern whose most characteristic diffraction peaks are substantially coincident with
- 3. A crystalline material in accordance with claim 1, characterised in that in its calcined state it also displays diffraction peaks substantially coincident with
- 4. A crystalline material in accordance with claim 2, characterised in that in its uncalcined state it also displays diffraction peaks substantially coincident with
- 5. A crystalline material in accordance with claim 1, wherein
X is at least one trivalent element selected from the group of Al, B, In, Ga, Fe; and Y is at least one tetravalent element selected from among Si, Sn, Ti, V.
- 6. A crystalline material in accordance with claim 1, wherein X is selected from among B, Al and combinations of them, and
Y is Si.
- 7. A process for synthesising the crystalline material in accordance with claim 1, comprising:
a first stage of causing a synthesis mixture comprising a source of the trivalent element X, H2O, an oxide or other source of the tetravalent material Y, an oxide or other source of the tetravalent material Z, an organic structure director agent (R), and a source of fluoride ions, and which has a composition, in terms of molar ratios of oxides, of: 12(YO2 + ZO2)/X2O3 ≧ 5H2O/(YO2 + ZO2) = 1 to 50R/(YO2 + ZO2) =0.1 to 3.0F/(YO2 + ZO2) =0.1 to 3.0ZO2/(YO2 + ZO2) =0.0 to 0.5to react, a second stage of maintaining the synthesis mixture under reaction conditions including temperature between 80 and 200° C., until crystals of said crystalline material are formed, a third stage of recovering said crystalline material.
- 8. A process in accordance with claim 7, comprising
a fourth stage wherein organic matter and fluoride ions occluded in the interior of the crystalline material are eliminated by means of a treatment selected from among extraction treatments, thermal treatment at temperatures above 250° C. for a period of time between 2 minutes and 25 hours and combinations of them.
- 9. A process in accordance with claim 7, wherein the synthesis mixture has a composition, in terms of molar ratios, of
- 10. A process in accordance with claim 7, wherein the structure director agent is an N(16)-methylsparteinium salt.
- 11. A process in accordance with claim 7, wherein the structure director agent is N(16)-methylsparteinium hydroxide.
- 12. A method for converting a feed formed from at least one organic compound comprising placing the feed in contact with a catalytically active quantity of a crystalline material as claimed in claim 1.
- 13. A method for converting a feed formed from at least one organic compound comprising placing the feed in contact with a catalytically active quantity of a crystalline material obtained in accordance with the process claimed in claim 7.
Priority Claims (1)
Number |
Date |
Country |
Kind |
200101145 |
May 2001 |
ES |
|
RELATED APPLICATIONS
[0001] The present application is a Continuation of co-pending PCT Application No. PCT/ES02/00223, filed May 10, 2002, which in turn, claims priority from Spanish Application Serial No. 200101145, filed May 14, 2001. Applicants claim the benefits of 35 U.S.C. §120 as to the PCT application and priority under 35 U.S.C. §119 as to said Spanish application, and the entire disclosures of both applications are incorporated herein by reference in their entireties.
Continuations (1)
|
Number |
Date |
Country |
Parent |
PCT/ES02/00223 |
May 2002 |
US |
Child |
10714571 |
Nov 2003 |
US |