METHOD FOR INTRODUCING A GAS AND GAS INTRODUCING DEVICE
20220314172 ยท 2022-10-06
Inventors
Cpc classification
B01D65/02
PERFORMING OPERATIONS; TRANSPORTING
B01D63/04
PERFORMING OPERATIONS; TRANSPORTING
Y02W10/10
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
B01D2315/06
PERFORMING OPERATIONS; TRANSPORTING
B01D2313/26
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
A method for introducing a gas into a liquid, the method including filling a gas volume enclosed below a free surface of the liquid and defined in a downward direction by an enclosed level of the liquid with the gas in sequential pulses wherein the gas simultaneously displaces the liquid top down from a gas lifting channel until the enclosed level of the liquid drops below an inlet cross section of a gas flow out channel; subsequently flowing the gas out of the gas volume downward through the gas lifting channel, a deflection portion adjoining at a bottom of the gas lifting channel, in upward direction through the inlet cross section and through the gas flow out channel adjoining the inlet cross section at a top to the free surface.
Claims
1. A method for introducing a gas into a liquid, the method comprising: filling a gas volume enclosed below a free surface of the liquid and defined in a downward direction by an enclosed level of the liquid with the gas in sequential pulses wherein the gas simultaneously displaces the liquid top down from a gas lifting channel until the enclosed level of the liquid drops below an inlet cross section of a gas flow out channel; subsequently flowing the gas out of the gas volume downward through the gas lifting channel, a deflection portion adjoining at a bottom of the gas lifting channel, in upward direction through the inlet cross section and through the gas flow out channel adjoining the inlet cross section at a top to the free surface, wherein a blocking flow of the liquid flows through a compensation inlet arranged below a gas lifting channel inlet to the inlet cross section and is pulled along by the gas until the liquid fills the deflection portion and thereby closes the inlet cross section; initially only flowing the gas through the gas outlet channel after the enclosed level of the liquid has dropped below the inlet cross section until the enclosed level of the liquid rises above the compensation inlet; and only thereafter running the blocking flow through the compensation inlet to the inlet cross section.
2. A method for filtering a liquid in a membrane filter submerged in the liquid, the membrane filter including membranes, the method comprising: introducing a gas into the membrane filter from below cleaning the membranes; and flowing the gas through the gas flow out channel according to the method according to claim 1; and subsequently introducing the gas into the membrane filter.
3. A gas introduction device, comprising: a downward open gas collection cavity, defined by an upper wall and a lateral wall; a gas inlet configured to let a gas into the downward open gas collection cavity; a gas lifting channel configured to lift the gas out of the downward open gas collection cavity and empty the downward open gas collection cavity, wherein the gas lifting channel includes a gas lifting channel inlet arranged at a top of the gas collection cavity; a deflection portion arranged at a bottom of the gas lifting channel; an inlet cross section arranged at a top of the deflection portion wherein a gas outlet channel adjoins at the top of the deflection portion; and a compensation inlet arranged below the gas lifting inlet and flowable towards the inlet cross section, wherein the compensation inlet is arranged at a level of the Inlet cross section or above.
4. The gas introduction device according to claim 3, wherein the compensation inlet is arranged at the gas lifting channel.
5. The gas introduction device according to claim 3, further comprising: a compensation channel that adjoins the compensation inlet in a direction towards the deflection portion.
6. The gas introduction device according to claim 5, wherein the compensation channel leads into the gas lifting channel.
7. The gas introduction device according to claim 5, characterized in that the compensation channel runs parallel to the gas lifting channel and leads into the deflection portion.
8. The gas introduction device according to claim 5, wherein a cross section of the compensation inlet is greater than a minimum cross section of the compensation channel.
9. A filter device, comprising: a membrane filter configured to filter a liquid and including membranes (76) and a gas introduction device arranged below the membranes and configured to introduce a gas into the membrane filter, wherein the gas introduction device is configured according to claim 3.
10. The filter device according to claim 9, further comprising: a housing that laterally envelops the membranes and adjoins the gas introduction device on top, wherein the gas introduction device includes a liquid flow channel that vertically penetrates the gas collection cavity and that is configured to let the liquid flow into the membrane filter at a bottom of the membrane filter.
11. The filter device according to claim 10, wherein the housing is a configured as a continuous tube.
12. The filter device according to claim 9, further comprising: a gas distributor arranged below the membranes, wherein the gas outlet channel leads into the gas distributor.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0040] The invention is subsequently described in more detail based on an advantageous embodiments with reference to drawing figures, wherein
[0041]
[0042]
DETAILED DESCRIPTION OF THE INVENTION
[0043] The drawing figures are not to scale. All details of the subsequently described methods or gas introduction devices are identical with the embodiments of the gas introduction devices according to the invention described supra.
[0044]
[0045] The gas introduction device 3 includes a gas volume 6 that is arranged below a surface 4 of the liquid 2 and defined in downward direction by a level 5 of the liquid 2. The gas volume 6 is arranged in a gas collection cavity 7 that is defined by an upper wall 8 and a side wall 9. Through a gas inlet 10 installed below the gas collection cavity 7 and separate from the gas collection cavity 7 gas 1 is introduced into the gas collection cavity 7 and thus fills the gas volume 6 so that the level 5 of the liquid 2 goes down. Thus, the liquid 2 that is in the gas collection cavity 7 is displaced at this point in time successively by inflowing gas 1 in downward direction and replaced by the gas 1.
[0046] The gas introduction device according to the invention includes a deflection portion 11 which includes an inlet cross section 12 on top wherein a gas outflow channel 13 joins the inlet cross section on top. A gas lifting channel 14 and a compensation channel 15 lead into the deflection portion 11. The gas lifting channel 14 includes an open gas lifting inlet 16 in a top of the gas collection cavity 7 and the compensation channel 15 includes a compensation inlet 17 below the upper wall 8 in the gas collection cavity 7, wherein the cross section of the compensation inlet 17 is sized larger than the minimum cross section of the compensation channel 15. Furthermore, the gas outlet channel 13 penetrates the upper wall 8.
[0047]
[0048] In
[0049] In
[0050]
[0051] The gas 1 flowing out through the gas flow out channel 13 generates a vacuum in the gas flow out channel 13 and in the adjoining gas lifting channel 14 and in the compensation channel 15. Since the gas lifting inlet 16 as well as the compensation inlet 17 are arranged at this point in time in the gas volume 6 filled with the gas 1 in the gas collection cavity 7, initially only the gas 1 flows through the gas outlet channel 13 induced by the suction created.
[0052]
[0053]
[0054]
[0055]
[0056]
[0057] The variants 3a through 3c differ only in the positioning the gas inlet 36, 37, and 38. In the variant 3a the gas inlet 36 is separately positioned below the gas collection cavity 34 like in the first gas introduction device 3. In the variant 3b, the gas inlet 37 penetrates an upper wall 39 and in the variant 3c the gas inlet 38 penetrates a side wall 40. The different illustrated positions of the gas inlet 36, 37, 38 are possible in principle in all gas introduction devices according to the invention and are therefore not illustrated in detail in some drawing figures.
[0058]
[0059] Also, in the gas introduction device 41 according to the invention a compensation channel 49 adjoins a compensation inlet 48 wherein the compensation channel 49 leads into the gas lifting channel 46 and is therefore flowable up to the inlet cross section 43.
in this case the compensation channel 49 extends vertically and leads into the gas lifting channel 46 further below.
[0060]
[0061] The gas outflow channel 53 includes an inlet cross section 55 at a bottom wherein a deflection portion 56 adjoins the inlet cross section 55.
[0062]
[0063] The membrane filter 64 includes membranes 76 configured as hollow fiber membranes 77 which are cast into a base element 78 at a bottom. The base element 78 includes a permeate collection cavity 79 wherein the hollow fiber membranes 77 are connected with an open lumen side to the permeate collection cavity in order to extract a filtrate out of the lumen of the hollow fiber membranes 77. The hollow fiber membranes 77 are individually closed on top and are laterally enveloped by a housing 80 which is configured as a rectangular tube 81 with identical cross-sectional dimensions as the lateral wall 66 and that adjoins the lateral wall 66 on top. Below the base element 78 the membrane filter 64 includes a gas distributor 82 wherein the gas flow out channel 73 leads into the gas distributor 82. The gas introduction device 63 includes a liquid flow channel 83 that vertically penetrates the gas collection cavity 65 and the upper wall 68 in order to let a liquid flow into the bottom of the membrane filter 63. The combination of gas introduction device 63 and membrane filter 64 jointly forms a filtering device 84.
REFERENCE NUMERALS AND DESIGNATIONS
[0064] 1 gas [0065] 2 liquid [0066] 3 gas introduction device [0067] 4 surface [0068] 5 level [0069] 6 gas volume [0070] 7 gas collection cavity [0071] 8 upper wall [0072] 9 side wall [0073] 10 gas inlet [0074] 11 deflection portion [0075] 12 inlet cross section [0076] 13 gas flow out channel [0077] 14 gas lifting channel [0078] 15 compensation channel [0079] 16 gas lifting inlet [0080] 17 compensation inlet [0081] 18 blocking flow [0082] 19 gas introduction device [0083] 20 lateral wall [0084] 21 compensation inlet [0085] 22 upper wall [0086] 23 gas collection cavity [0087] 24 inlet cross section [0088] 25 gas lifting channel [0089] 26 gas introduction device [0090] 27 gas introduction device [0091] 28 gas introduction device [0092] 29 gas flow out channel [0093] 30 gas lifting channel [0094] 31 lateral wall [0095] 32 gas lifting inlet [0096] 33 compensation inlet [0097] 34 gas collection cavity [0098] 35 compensation channel [0099] 36 gas inlet [0100] 37 gas inlet [0101] 38 gas inlet [0102] 39 upper wall [0103] 40 side wall [0104] 41 gas introduction device [0105] 42 gas flow out channel [0106] 43 inlet cross section [0107] 44 gas collection cavity [0108] 45 deflection portion [0109] 46 gas lifting channel [0110] 47 side wall [0111] 48 compensation inlet [0112] 49 compensation channel [0113] 50 gas introduction device [0114] 51 gas collection cavity [0115] 52 lateral wall [0116] 53 gas outflow channel [0117] 54 upper wall [0118] 55 inlet cross section [0119] 56 deflection portion [0120] 57 gas lifting channel [0121] 58 outer wall [0122] 59 bell [0123] 60 gas lifting inlet [0124] 61 compensation channel [0125] 62 compensation inlet [0126] 63 gas introduction device [0127] 64 membrane filter [0128] 65 gas collection cavity [0129] 66 side wall [0130] 67 gas inlet [0131] 68 upper wall [0132] 69 gas lifting inlet [0133] 70 gas lifting channel [0134] 71 deflection portion [0135] 72 inlet cross section [0136] 73 gas outlet channel [0137] 74 compensation channel [0138] 75 compensation inlet [0139] 76 membrane [0140] 77 hollow filter membrane [0141] 78 base element [0142] 79 permeate collection cavity [0143] 80 housing [0144] 81 tube [0145] 82 gas distributor [0146] 83 liquid flow channel [0147] 84 filter device