Lattice structure for sparging evaporator in catalytic inerting system
US-2024408565-A1 · Dec 12, 2024 · US
US11033876B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-11033876-B2 |
| Application number | US-201816127884-A |
| Country | US |
| Kind code | B2 |
| Filing date | Sep 11, 2018 |
| Priority date | Sep 12, 2017 |
| Publication date | Jun 15, 2021 |
| Grant date | Jun 15, 2021 |
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A structured packing element has the shape of a rectangular flat plate, and is provided with slots and recesses. The slots are intended for assembly by interlocking the structured packing elements together in order to form the structured packing. The recesses are provided in order to form channels within the structured packing. A packing structure can be obtained by assembling such packing elements. Such a packing can be used for an operation of bringing a gas and a catalyst into contact. A manufacturing process of such a structured packing is also disclosed.
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The invention claimed is: 1. A structured packing element having the shape of a substantially rectangular flat plate, wherein the packing element comprises at least two slots for interlocking two packing elements inclined with respect to one another, and at least two recesses extending completely through a thickness of the flat plate and opening onto an edge of the flat plate for forming channels within the structured packing, the slots and the recesses being distributed over both edges of the flat plate symmetrically with respect to the longitudinal axis of the flat plate. 2. The structured packing element according to claim 1 , in which the slots are substantially rectangular. 3. The structured packing element according to claim 1 , in which the slots have a height (h) substantially equal to the thickness (e) of the flat plate. 4. The structured packing element according to claim 1 , in which the recesses are substantially triangular. 5. The structured packing according to claim 1 , in which each recess is arranged between two slots. 6. The structured packing according to claim 1 , in which the length (L) of the flat plate is between 25 and 100 cm. 7. The structured packing according to claim 1 , in which the width (l) of the flat plate is between 3 and 15 cm. 8. The structured packing according to claim 1 , in which the thickness Lei of the flat plate is between 2 and 10 mm. 9. The structured packing element according to claim 1 , in which the distance (d) between two consecutive slots is between 1 and 50 cm. 10. A packing structure forming a volume comprising an arrangement of packing elements according to claim 1 , wherein the arrangement comprises a first series of packing elements arranged in a first direction (D 1 ), and a second series of packing elements arranged in a second direction (D 2 ) inclined with respect to the first direction (D 1 ), in such a way that the packing elements of the second series are interlocked in slots of the packing elements of the first series, and in such a way that the packing elements of the first series are interlocked in slots of the packing elements of the second series. 11. The packing structure according to claim 10 , in which the packing elements of the first and second series are fixed together, by welding, bonding, screwing or bolting. 12. The packing structure according to claim 10 , in which the volume of structured packing has substantially the shape of an angular portion of a cylinder. 13. The packing structure according to claim 10 , in which the volume of structured packing has a height (H) between 10 and 200 cm. 14. The packing structure according to claim 10 , in which the angle formed between the first direction (D 1 ) and the second direction (D) 2 is between 10 and 90°. 15. Use of a packing structure according to claim 10 for bringing a gas into contact with a catalyst, in particular for a stripping operation of the catalyst. 16. A process for manufacturing a packing structure, in which the following steps are carried out: a) manufacturing a plurality of packing elements according to claim 1 ; b) constructing an arrangement of the packing elements by means of the following steps: i) positioning at least two packing elements of a first series of packing elements in a first direction (D 1 ); ii) interlocking at least two packing elements of a second series of packing elements in a second direction (D 2 ) inclined with respect to the first direction (D 1 ) within the slots of the packing elements of the first series; iii) interlocking at least two packing elements of a first series of packing elements in the first direction (D 1 ) within the slots of the packing elements of the second series; and iv) repeating steps ii) and iii) in order to form the desired volume. 17. The process according to claim 16 , in which the manufacturing process comprises a step of fixing the packing elements, preferably by welding, by bonding, by screwing or by bolting. 18. The process according to claim 16 , in which the manufacturing process comprises a step of cutting the volume of structured packing in order to form an angular portion of a cylinder. 19. A method for stripping a catalyst of hydrocarbons penetrated into or adsorbed on a surface of the catalyst, comprising bringing a gas into contact with the catalyst in the packing structure according to claim 10 . 20. The structured packing element according to claim 1 , in which the length (L) of the flat plate is between 45 and 55 cm, the width (l) of the flat plate is between 5 and 10 cm, the thickness (e) of the flat plate is between 4 and 8 mm, and the distance (d) between two consecutive slots is between 10 and 30 cm.
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