SEPARATOR AND METHOD FOR THE OPERATION THEREOF
20200190450 · 2020-06-18
Inventors
- Daniel Bussmann (Oelde, DE)
- Thomas BATHELT (Oelde, DE)
- Wolf-Dietrich Herberg (Witten, DE)
- Tim Hundertmark (Gütersloh, DE)
- Björn Ströfer (Beckum, DE)
Cpc classification
B04B11/02
PERFORMING OPERATIONS; TRANSPORTING
C12C11/11
CHEMISTRY; METALLURGY
B04B11/082
PERFORMING OPERATIONS; TRANSPORTING
International classification
B04B11/02
PERFORMING OPERATIONS; TRANSPORTING
B04B11/08
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A separator having a vertical rotation axis includes a rotatably mounted drum having a drum interior for centrifugal processing of a liquid. The separator also includes a gas supply line for introducing gas into the liquid, which opens into the drum interior.
Claims
1. A separator, comprising: a rotatably mounted drum having a drum interior configured for centrifugal processing of a liquid; and a gas supply line for introducing gas into the liquid, wherein the gas supply line opens into the drum interior, wherein the separator has a vertical rotation axis.
2. The separator of claim 1, wherein the gas supply line is a supply line tube and/or as a supply line channel.
3. The separator of claim 1, further comprising: a sensor configured to determine gas content in gas-containing liquid in the separator.
4. The separator of claim 3, further comprising: an outlet tube configured to discharge a gas-containing liquid from the separator, wherein the outlet tube comprises the sensor.
5. The separator of claim 1, further comprising: a measurement and/or evaluation unit configured to adjust gas pressure of the gas supplied through the gas supply line.
6. The separator of claim 5, further comprising: a valve configured to adjust a gas pressure of the gas supplied through the gas supply line, wherein the valve is arranged along the gas supply line and is adjustable by the measurement and/or evaluation unit.
7. The separator of claim 1, further comprising: a distributor space configured for radial discharge of the liquid, wherein the gas supply line opens into the distributor space.
8. The separator of claim 1, further comprising: a skim chamber, wherein the gas supply line opens into the skim chamber.
9. The separator of claim 1, further comprising: a drive spindle, wherein the rotatably mounted drum is driven by the drive spindle, the gas supply line is configured, at least in regions, as a channel inside the drive spindle, the channel opens into the drum interior of the rotatably mounted drum.
10. The separator of claim 1, further comprising: an additional gas supply line configured to introduce gas at a different position of the rotatably mounted drum than the gas supply line.
11. A method for operating a separator, the method comprising: rotating a rotatably mounted drum having a drum interior configured for centrifugal processing of a liquid, wherein the rotatably mounted drum rotates about a vertical rotation axis; introducing liquid into the drum interior; and introducing, via a gas supply line, into the liquid, wherein the gas supply line opens into the drum interior, wherein the gas is introduced after the liquid is introduced.
12. The method of claim 11, further comprising: introducing, via a second gas supply line, a second gas into the liquid after the introducing the first gas.
13. The method of claim 12, wherein the first and/or second gas is CO.sub.2.
14. The method of claim 11, wherein the liquid is beer.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0025]
[0026]
[0027]
[0028]
[0029]
[0030]
[0031]
[0032]
[0033]
[0034]
[0035]
[0036]
[0037] The alternative embodiments described below present different variants of the way in which a gas supply into a separator may be embodied. Components which are the same in a separator are in this case noted by the same references.
DETAILED DESCRIPTION
[0038]
[0039] In this case, a liquid 1 is introduced into the rotating drum of a separator 4 having a vertical rotation axis. A gas is introduced into the liquid 2, or into a phase of this liquid. This is carried out inside the separator 4. A liquid 3, in which distributed gas bubbles are arranged, leaves the separator 4.
[0040] One typical application, which is preferred in the scope of the present invention, is the carbonation of a beverage, in particular beer. The carbonation is enrichment of CO.sub.2 in the respective beverage.
[0041]
[0042]
[0043] The separator 4 can be filled in the axial direction with a liquid 1 to be processed through an inlet tube 15. The inlet tube 15 opens into a distributor space 17, from which one or more distributor channels 12 discharge the supplied liquid in the radial direction. The liquid is then conveyed into one or more bottom chambers 21, and conveyed from there through an opening 13 into a centrifuge space 14, where centrifugal deposition of solids from the liquid can take place. The centrifugally processed liquid is then conveyed radially outward to radially inward.
[0044] In order to collect and discharge a processed liquid 3, the separator 4 comprises a so-called skim chamber 9, into which a gripper 10 opens. The skim chamber 9 is located in the upper region of the separator 4, while the drive spindle 7, and optionally a drive unit connected to the drive spindle, are arranged in the lower region of the separator 4. The centrifugally processed liquid 3 may then be removed from the separator 4, in particular from the skim chamber, by means of the gripper 10 through an outlet tube 16 from the separator 4.
[0045]
[0046] A sensor 18 for determining and/or monitoring the gas content inside the liquid may be arranged along the outlet tube 16 or along a pipeline connected thereto. Such a sensor may, for example, be a conductance sensor, or an inline sensor for direct determination of the concentration of the dissolved gas, or another suitable sensor.
[0047] After the determination or monitoring of the gas content, adaptation may be carried out. To this end, the measurement signal determined by the sensor 18 is transmitted to a measurement and/or evaluation unit 19 or the control device of the centrifuge. The latter transmits an adjustment signal to a valve 20 which is arranged along the gas supply line, or along a pipeline connected to the gas supply line 11. The valve 20 controls and/or regulates the gas pressure with which the gas 2 is introduced into the gas supply line 11, and from there into the liquid 1. If the gas supply line 11 opens into the region of the skim chamber 9, only small centrifugal forces then act on the liquid before its outlet, and the supplied gas is not expelled, or is expelled only to a small extent, by the centrifugal processing.
[0048] Furthermore, the supply of the gas 2 through the gas supply line 11 takes place not far from the measurement position, or the position of the sensor 18.
[0049] The drum 5 delimits a drum interior, inter alia the distributor space 17, the bottom chamber 21, the centrifuge space 14 and the skim chamber 9 being assigned to the drum interior.
[0050]
[0051]
[0052]
[0053]
[0054]
[0055] Specifically, the separator 30 in the variant of
[0056]
[0057]
[0058] To this end, the separator 4 comprises two gas supply lines 11 and 11, which are fed into the upper region of the drum 5.
[0059]
[0060] Such a mode of operation presupposes sealing of the rotating system, as already described above.
[0061]
[0062] Although the invention has been illustrated and described in detail by way of preferred embodiments, the invention is not limited by the examples disclosed, and other variations can be derived from these by the person skilled in the art without leaving the scope of the invention. It is therefore clear that there is a plurality of possible variations. It is also clear that embodiments stated by way of example are only really examples that are not to be seen as limiting the scope, application possibilities or configuration of the invention in any way. In fact, the preceding description and the description of the figures enable the person skilled in the art to implement the exemplary embodiments in concrete manner, wherein, with the knowledge of the disclosed inventive concept, the person skilled in the art is able to undertake various changes, for example, with regard to the functioning or arrangement of individual elements stated in an exemplary embodiment without leaving the scope of the invention, which is defined by the claims and their legal equivalents, such as further explanations in the description.
REFERENCES
[0063] 1 liquid [0064] 2 gas [0065] 2 gas [0066] 3 gas-containing liquid [0067] 4 separator [0068] 4 separator [0069] 4 separator [0070] 4 separator [0071] 4 separator [0072] 4.sup.v separator [0073] 4.sup.vi separator [0074] 5 drum [0075] 6 plate stack [0076] 7 drive spindle [0077] 8 rotation axis [0078] 9 skim chamber [0079] 10 gripper [0080] 11 gas supply line [0081] 11 gas supply line [0082] 11 gas supply line [0083] 11 gas supply line [0084] 11 gas supply line [0085] 11.sup.v gas supply line [0086] 12 distributor channels [0087] 13 opening [0088] 14 centrifuge space [0089] 15 inlet tube [0090] 16 outlet tube [0091] 17 distributor space [0092] 18 sensor [0093] 19 measurement and/or evaluation unit [0094] 20 valve [0095] 21 bottom chamber [0096] 30 separator [0097] 30 separator [0098] 31 drum [0099] 32 drive spindle [0100] 33 inlet channel [0101] 34 distributor space [0102] 35 distributor channel [0103] 36 centrifuge space [0104] 37 outlet tube [0105] 38 gas supply line [0106] 38 gas supply line