SPARGING DEVICE
20230212498 · 2023-07-06
Inventors
- Matthias BODE (Goettingen, DE)
- Jonas BODE (Goettingen, DE)
- Christian GRIMM (Goettingen, DE)
- Jochen SCHOLZ (Goettingen, DE)
- Andreas PREDIGER (Goettingen, DE)
- Marek HÖHSE (Goettingen, DE)
Cpc classification
B01F23/2323
PERFORMING OPERATIONS; TRANSPORTING
B01F25/31425
PERFORMING OPERATIONS; TRANSPORTING
B01F23/232
PERFORMING OPERATIONS; TRANSPORTING
International classification
B01F23/232
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A sparging device, especially for use in a bioprocess, including a medium chamber and at least one gas chamber. The gas chamber at least partially surrounds the medium chamber, or the medium chamber at least partially surrounds the gas chamber. The medium chamber and the gas chamber are separated from each other by a wall. The wall has a plurality of through-holes or is composed of a porous material, such as a membrane or a porous ceramic. The sparging device further includes at least one gas inlet port opening into the gas chamber for inflow of gas.
Claims
1. A sparging device, comprising a medium chamber and at least one gas chamber, the gas chamber at least partially surrounding the medium chamber, or the medium chamber at least partially surrounding the gas chamber, the medium chamber and the gas chamber being separated from each other by a wall, the wall having a plurality of through-holes or being composed of a porous material, the sparging device further comprising at least one gas inlet port opening into the gas chamber for inflow of gas.
2. The sparging device according to claim 1, characterized in that the medium chamber basically is of cylindrical shape.
3. The sparging device according to claim 1, characterized in that the medium chamber has a medium inlet opening and a medium outlet opening.
4. The sparging device according to claim 3, characterized in that an inlet connecting piece is formed at the medium inlet opening and an outlet connecting piece is formed at the medium outlet opening.
5. The sparging device according to claim 3, characterized in that the medium inlet and outlet openings are located at different ends of the medium chamber, the gas inlet port being located between the different ends.
6. The sparging device according to claim 3, characterized in that the medium inlet opening and the medium outlet opening define a medium flow direction within the medium chamber, the medium flow direction being oriented transversely relative to a gas inflow direction defined by the gas inlet port.
7. The sparging device according to claim 1, characterized in that the through-holes have a diameter in a range of approximately 0.15 to 0.18 mm.
8. The sparging device according to claim 1, characterized in that the through-holes are covered by a membrane cover.
9. The sparging device according to claim 8, characterized in that the membrane cover is arranged in the gas chamber.
10. The sparging device according to claim 1, characterized in that a density of through-holes in the wall varies along a flow direction.
11. The sparging device according to claim 1, further comprising a nozzle inserted into the gas inlet port.
12. The sparging device according to claim 1, characterized in that a pressure connecting piece is formed at the gas inlet port.
13. The sparging device according to claim 1, further comprising at least one further gas chamber at least partially surrounding the medium chamber and being separated from the medium chamber by the wall, and at least one further gas inlet port opening into the further gas chamber.
14. The sparging device according to claim 13, the gas chambers being helically wound around the medium chamber.
15. The sparging device according to claim 1, characterized in that the medium chamber at least partially surrounds the gas chamber, a channel of the gas inlet port extending through an outer wall surrounding the medium chamber and through the medium chamber and opening into the gas chamber.
16. The sparging device according to claim 1, characterized in that the medium chamber is provided with structures imposing a desired flow behavior on the medium flowing through the medium chamber.
17. The sparging device according to claim 1, characterized in that the gas chamber is provided with structures imposing a desired flow behavior on the gas flowing through the gas chamber.
18. The sparging device according to claim 1, characterized in that the medium chamber at least partially surrounds the gas chamber, a further gas chamber surrounding the medium chamber and being separated from the medium chamber by an outer wall.
19. The sparging device according to claim 18, characterized in that the gas inlet port opens into both gas chambers.
20. The sparging device according to claim 18, characterized in that a separate gas inlet port opens into the further gas chamber.
21. The sparging device according to claim 18, characterized in that an additional plurality of through-holes is formed in the outer wall.
22. The sparging device according to claim 1, characterized in that the device is made of a material suitable for sterilization by gamma radiation or in an autoclave, including one of the following: polypropylene (PP), high-density polyethylene (HDPE), polybutylene terephthalate (PBT).
23. A method of using the sparging device according to claim 1 in a bioprocess, especially in a tubular bioreactor system or in a perfusion system.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0031] Further features and advantages of the invention will become apparent from the following description and from the accompanying drawings to which reference is made. In the drawings:
[0032]
[0033]
[0034]
[0035]
[0036]
[0037]
[0038]
[0039]
[0040]
[0041]
DETAILED DESCRIPTION
[0042] In
[0043] In the outer wall 26 of the sparging device 10 a gas inlet port 28 is formed for connecting a line 30, which can be a pressure line (compressed gas line). The gas inlet port 28 is located between the axial ends of the sparging device 10 in a perpendicular orientation relative to the longitudinal axis of the medium chamber 20 and the gas chamber 24. The gas inlet port 28 opens into the gas chamber 24 which is separated from the medium chamber 20 by the inner wall 22.
[0044] A plurality of through-holes 32 is formed in the inner wall 22 at pre-defined locations in a pre-defined pattern, or in a random manner with a pre-defined density pattern. The through-holes 32 allow the gas supplied from line 30 to the gas chamber 24 via the gas inlet port 28 to enter the medium chamber 20 in a defined manner. The through-holes 32 have a preferred diameter in the range of approximately 0.15 to 0.8 mm. Within the gas chamber 24 a membrane cover 34 covering the through-holes 32 may be arranged.
[0045] The sparging device 10 shown in
[0046] In operation, the sparging device 10 is integrated into a tubing of a bioprocess set-up. The medium inlet and outlet openings 16, 18 are connected to tubing ends via the connecting pieces 12, 14. A liquid medium of the bioprocess flows through the tubing and through the medium chamber 20 of the sparging device 10. At the same time, gas from a gas source, which can be a compressed gas source, is supplied via line 30 and the gas inlet port 28 to the gas chamber 24. According to the design of the embodiment, the gas inflow direction is perpendicular relative to the direction of the medium flowing through the medium chamber 20. The supplied gas is introduced into the medium in the medium chamber 20 in a controlled manner via the through-holes 32 of the inner wall 22.
[0047] The membrane cover 34, on the one hand, protects line 30 from medium that may enter from the medium chamber 20 through the through-holes 32 into the gas chamber 24. On the other hand, the membrane cover 34 acts as a sterile barrier, thus keeping the medium chamber 20 free from external contamination.
[0048]
[0049] From the sectional views of
[0050] In a similar manner, embodiments with even more than two gas chambers can be provided.
[0051] A third embodiment of the sparging device 10 is shown in
[0052] The main body of the sparging device 10, including the inner wall 22 (not visible) and the outer wall 26 defining the medium chamber 20 and the gas chamber 24, the gas inlet port 28 and the connecting pieces 12, 14 at the medium inlet and outlet openings 16, 18 as well as a further connecting piece 42 at the gas inlet port 28 (here all formed as tri-clamp flange ends), is made of stainless steel. Thus, the sparging device 10 is configured as a multi-use device.
[0053] According to a first variant, the sparging device 10 further includes a hose piece 44 for insertion into the gas inlet port 28. In this specific variant, the gas inlet port 28 is a pressure port. The hose piece 44 is connected to a line 30, which is a pressure line here, with optional further components arranged in between. According to a second variant, the hose piece 44 is replaced by a nozzle 46.
[0054] In both variants, a seal 48 and a matching clamp 50 are used to connect the hose piece 44 or the nozzle 46 to the tri-clamp flange end at the gas inlet port 28.
[0055] The basic operating principle of the third embodiment of the sparging device 10 is similar to that of the first embodiment. Of course, it is possible to provide also a multi-use sparging device 10 having further gas chambers and one or more gas inlet ports.
[0056] While in the above-described embodiments the medium chamber 20 and the gas chamber(s) 24, 36 are separated from each other by a wall 22 having a plurality of through-holes 32, the wall 22 can also be composed of a porous material, such as a membrane or a porous ceramic, in other embodiments.
[0057] Further, a reversed arrangement of the medium chamber 20 and the gas chamber(s) 24, 36 is possible. In this case, the gas chamber(s) 24, 36 are surrounded by an annular medium chamber 20, or the medium chamber 20 is arranged between the gas chambers 24, 36. Two schematic examples of such embodiments are shown in
[0058] With reference to
[0059] Similar to the previously described embodiments, a plurality of through-holes 32 (not shown here) is formed in the inner wall 22 at pre-defined locations in a pre-defined pattern, or in a random manner with a pre-defined density pattern. The through-holes 32 allow the gas to enter the medium chamber 20 in a defined manner. Within the gas chamber 24 a membrane cover 34 (not shown here) covering the through-holes 32 may be arranged.
[0060] As indicated by the oblique lines in
[0061]
[0062] According to a first variant, gas is supplied to both the inner gas chamber 24 and the outer gas chamber 26 from the same source via the same line 30. In this case, channel 52 opens into both gas chambers 24 and 36, but not into the medium chamber 20.
[0063] According to a second variant, two different gases are supplied to gas chambers 24 and 36. In this case, channel 52 of the gas inlet port 28 extends through the exterior wall 56, the outer gas chamber 36, the outer wall 26 and the medium chamber 20 and opens into the inner gas chamber 24. A separate gas inlet port (not shown here) is formed in the exterior wall 56 and opens into the outer gas chamber 34.
[0064] In both variants, an additional plurality of through-holes 32 (not shown here) is formed in the outer wall 26 at pre-defined locations in a pre-defined pattern, or in a random manner with a pre-defined density pattern. The additional through-holes 32 allow the gas supplied to the outer gas chamber 36 to enter the medium chamber 20 in a defined manner. Within the outer gas chamber 36 a membrane cover 34 (not shown here) covering the through-holes 32 may be arranged.
[0065] As shown in
[0066] In general, the embodiments described above are to be understood as non-limiting examples. Thus, certain features of different embodiments can be combined in a suitable manner. For example, the embodiment shown in
[0067] Moreover, other designs with non-cylindrical medium chambers and gas chambers are also possible. For example, the medium chamber may be configured as a vessel for fermentation or as a reservoir of a liquid medium.
TABLE-US-00001 List of Reference Signs 10 sparging device 12 inlet connecting piece 14 outlet connecting piece 16 inlet opening 18 outlet opening 20 medium chamber 22 inner wall 24 gas chamber 26 outer wall 28 gas inlet port 30 line 32 through-holes 34 membrane cover 36 further gas chamber 38 intermediate wall sections 40 further gas inlet port 42 further connecting piece 44 hose piece 46 nozzle 48 seal 50 clamp 52 channel 54 structures 56 exterior wall