Claims
- 1. A synthetic porous crystalline material having a framework of tetrahedral (T) atoms bridged by oxygen atoms, the tetrahedral atom framework being defined by connecting the nearest tetrahedral (T) atoms in the manner shown in Table 1 of the specification.
- 2. The crystalline material of claim 1 characterized by an X-ray diffraction pattern including values substantially as set forth in Table 3 of the specification.
- 3. The crystalline material of claim 1 having a composition comprising the molar relationshipX2O3:(n)YO2, wherein n is at least about 2, X is a trivalent element, and Y is a tetravalent element.
- 4. The crystalline material of claim 3 having a composition, on an anhydrous basis and in terms of moles of oxides per n moles of YO2, expressed by the formula:(0.1-2)M2O:(0-2)Q:X2O3:(n)YO2 wherein M is alkali or alkaline earth metal and Q is an organic moiety.
- 5. The crystalline material of claim 4 wherein said Q comprises a cation derived from triethanolamine.
- 6. The crystalline material of claim 3 wherein X is a trivalent element selected from the group consisting of boron, iron, indium, gallium, aluminum, and a combination thereof; and Y is a tetravalent element selected from the group consisting of silicon, tin, titanium, germanium, and a combination thereof.
- 7. The crystalline material of claim 3 wherein X comprises aluminum and Y comprises silicon.
- 8. The crystalline material of claim 3 wherein n is about 5 to about 100.
- 9. A method for synthesizing the crystalline material of claim 1 which comprises(i) preparing a mixture capable of forming said material, said mixture comprising sources of alkali or alkaline earth metal (M), an oxide of trivalent element (X), an oxide of tetravalent element (Y) and water, having a composition, in terms of mole ratios, within the following ranges: YO2/X2O3 2-100,000H2O/YO2 10-1000OH−/YO20.02-2M/YO20.02-2(ii) maintaining said mixture under sufficient conditions including a temperature of from about 100° C. to about 220° C. until crystals of said material are formed; and (iii) recovering said crystalline material from step (ii).
- 10. The method of claim 9 wherein said mixture has a composition, in terms of mole ratios, within the following ranges:YO2/X2O3 5-100H2O/YO220-50OH−/YO20.1-0.8M/YO20.1-0.8.
- 11. The method of claim 9 wherein M is potassium.
- 12. The method of claim 9 wherein said mixture contains a directing agent (Q) comprising triethanolamine in an amount such that the molar ratio of Q/YO2 is about 0.01 to about 2.0.
- 13. A process for converting a feedstock comprising organic compounds to conversion product which comprises contacting said feedstock at organic compound conversion conditions with a catalyst comprising an active form of the synthetic porous crystalline material of claim 1.
Parent Case Info
This application is a continuation-in-part of pending U.S. application Ser. No. 09/705,571, filed Nov. 3, 2000.
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Continuation in Parts (1)
|
Number |
Date |
Country |
Parent |
09/705571 |
Nov 2000 |
US |
Child |
10/136647 |
|
US |