MEMBRANE FILTER
20220088540 ยท 2022-03-24
Inventors
Cpc classification
B01D2313/06
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
B01D2313/26
PERFORMING OPERATIONS; TRANSPORTING
B01D65/08
PERFORMING OPERATIONS; TRANSPORTING
B01D2315/06
PERFORMING OPERATIONS; TRANSPORTING
International classification
B01D63/04
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A membrane filter configured to filter a liquid, the membrane filter including a base element including at least one membrane carrier that is externally flowable by the liquid and a gas; hollow fiber membranes respectively including lumen and attached at a top of the at least one membrane carrier wherein a liquid permeate is filterable from the liquid into the lumen; a one piece extruded circumferentially closed pipe that envelops the hollow fiber membranes; a gas inlet configured to let gas into a bottom of the membrane filter; at least one permeate collection cavity included in the base element and connected with the lumen and configured to collect the liquid permeate from the hollow fiber membranes; a permeate outlet included in the base element and configured to drain the liquid permeate from the at least one permeate collection cavity laterally from the base element.
Claims
1. A membrane filter configured to filter a liquid, the membrane filter comprising: a base element including at least one membrane carrier that is externally flowable by the liquid and a gas; hollow fiber membranes respectively including lumen and attached at a top of the at least one membrane carrier wherein a liquid permeate is filterable from the liquid into the lumen; a one piece extruded circumferentially closed pipe that envelops the hollow fiber membranes; a gas inlet configured to let gas into a bottom of the membrane filter; at least one permeate collection cavity included in the base element and connected with the lumen and configured to collect the liquid permeate from the hollow fiber membranes; a permeate outlet included in the base element and configured to drain the liquid permeate from the at least one permeate collection cavity laterally from the base element, wherein a bottom edge of the pipe is arranged below the permeate outlet and the permeate outlet runs laterally through an opening in a wall of the pipe, wherein an annular gap between the at least one membrane carrier and the pipe is configured as an open flow cross section for a flow of the liquid and the gas, and wherein the base element and the pipe are connected with each other.
2. The membrane filter according to claim 1, wherein the opening extends to the bottom edge of the pipe.
3. The membrane filter according to claim 1, wherein the pipe has a rectangular cross section.
4. The membrane filter according to claim 1, wherein the at least one membrane carrier includes plural membrane carriers that respectively include the hollow fiber membranes, and wherein the membrane carriers are externally flowable by the liquid.
5. The membrane filter according to claim 1, wherein the gas inlet runs laterally through the opening of the pipe.
6. The membrane filter according to claim 1, wherein the gas inlet runs laterally through a second opening in the wall of the pipe.
7. The membrane filter according to claim 1, wherein the base element and the pipe are connected with one another by connection elements.
8. The membrane filter according to claim 7, wherein the connection elements respectively penetrate the pipe and at least one wall of the base element. 9, The membrane filter according to claim 7, wherein the pipe and the base element are manually disengageable after removal of the connection elements.
10. The membrane filter according to claim 1, wherein the pipe and the base element are glued together.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0032] The invention is subsequently described based on embodiments with reference to drawing figures, wherein:
[0033]
[0034]
[0035]
[0036]
[0037]
[0038]
[0039]
[0040]
DETAILED DESCRIPTION OF THE INVENTION
[0041] The drawing figures are not drawn to scale. All details of subsequently described membrane filters according to the invention are identical to embodiments of prior described membrane filters according to the invention.
[0042]
[0043] The membrane filter 1 includes a base element 2 including exactly one membrane carrier 3, which is externally Plowable by the liquid and a gas. The membrane carrier 3 has a circular cross section and a diameter of 75 mm. The base element 2 and the membrane carrier 3 are identical in this case.
[0044] Hollow fiber membranes 4 are attached at a top of the membrane carrier 3 and respectively include a lumen 5 into which a liquid permeate is filterable from the liquid. The hollow fiber membranes 4 are fabric reinforced and have an outer diameter 2 of 5 mm. A number of the illustrated hollow fiber membranes 4 does not correspond to the actual number of the hollow fiber membranes 4.
[0045] The hollow fiber membranes 4 are attached in the membrane carrier 3 by a resin layer 6 in which bottoms of the hollow fiber membranes 4 are encased in a sealing manner so that the lumen 5 of the hollow fiber membranes 4 remain open.
[0046] Furthermore, the membrane filter 1 includes a one-piece extruded pipe 7 that envelops the hollow fiber membranes 4 of the base element 2 and a gas inlet 8 configured to let the gas into a bottom of the membrane filter 1. The pipe 7 has an outer diameter of 100 mm. An annular gap 9 with a width of 10 mm is arranged between the membrane carrier 3 and the pipe 7. The annular gap 9 functions as an open flow cross section for a flow through of the liquid and the gas.
[0047] Additionally, the base element 2 includes a permeate collection cavity 10 that is connected with the lumen 5 of the hollow fiber membranes 4 to collect the permeate from the hollow fiber membranes 4 and a permeate outlet 11 for draining the permeate from the permeate collection cavity 10 laterally from the base element 2, this means essentially transversal to the hollow fiber membranes 4.
[0048] It is characteristic for the membrane filter 1 according to the invention that a lower edge 12 of the pipe 7 is arranged below the permeate outlet 11 in an assembled condition of the membrane filter 1 and the permeate outlet 11 runs laterally through an opening 13 in a wall 14 of the pipe 7.
[0049]
[0050]
[0051]
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[0054]
[0055] The hollow fiber membranes 42 are open at a bottom and fixed by resin and respectively individually closed at their upper ends 43. Thus, hair included in the liquid to be filtered and fibrous compounds can be carried out unimpeded in upward direction with the liquid and gas mix that flows through the membrane filter 33 from the bottom up. The pipe 39 extends beyond upper ends 33 of the membranes 42 by 5 cm
[0056]
[0057]
[0058] The permeate outlet 48 of the base element 46 is provided laterally through an opening 49 in the wall 50 of the rectangular pipe 51. Thus, a lower edge 53 of the pipe 51 is arranged below the permeate outlet 48.
[0059]
[0060]
[0061]
[0062]
[0063] The permeate 62 produced during filtration is drained from the membrane filter 45 through a permeate conduit 63 that is connected to the permeate outlet 48. In the membrane filter 45 the introduced air 60 rises in a form of air bubbles 64 and thus causes an upward flow 65 of the mix including air and the liquid 58 to be filtered, this means the sludge. In a stationary condition there is a compensating downward flow 66 of the liquid to be filtered on an outside of the pipe 51 in the tub 57. Then a flow reversal 67 of the liquid 58 to be filtered occurs at the bottom side of the membrane filter 45 due to the suction effect of the mammoth pumping effect of the air bubbles 64 rising in the membrane filter 45.
[0064]
[0065] Like the in the membrane filter 45 described supra the pipe 69 has 2 openings that extend to a bottom edge 75 of the rectangular pipe 69. These openings are slid over the permeate outlet 76 and the air inlet from above when mounting the membrane filter 68 wherein the permeate outlet 76 and the air inlet are both part of the base element 70.
[0066]
[0067]
[0068]
[0069] After removal of the connection element 77 the pipe 69 and the base element 70 are manually disengageable. Alternatively, the pipe 69 and the base element 70 can also be glued together.
[0070]
[0071] The connection of the base element 80 and the pipe 79 is provided by four non-illustrated connection elements that are inserted into the aligned bore holes 86 and 87.
REFERENCE NUMERALS AND DESIGNATIONS
[0072] 1 membrane filter [0073] 2 base element [0074] 3 membrane carrier [0075] 4 hollow fiber membrane [0076] 5 lumen [0077] 6 resin layer [0078] 7 pipe [0079] 8 gas inlet [0080] 9 annular gap [0081] 10 permeate collection cavity [0082] 11 permeate outlet [0083] 12 bottom edge [0084] 13 opening [0085] 14 wall [0086] 15 membrane filter [0087] 16 base element [0088] 17 gas inlet [0089] 18 pipe [0090] 19 opening [0091] 20 wall [0092] 21 bottom edge [0093] 22 membrane filter [0094] 23 pipe [0095] 24 opening [0096] 25 wall [0097] 26 bottom edge [0098] 27 permeate outlet [0099] 28 gas inlet [0100] 29 base element [0101] 30 membrane carrier [0102] 31 annular gap [0103] 32 hollow fiber membrane [0104] 33 membrane filter [0105] 34 base element [0106] 35 membrane carrier [0107] 36 permeate outlet [0108] 37 opening [0109] 38 wall [0110] 39 pipe [0111] 40 bottom edge [0112] 41 gas inlet [0113] 42 hollow fiber membrane [0114] 43 upper end [0115] 44 anchor [0116] 45 membrane filter [0117] 46 base element [0118] 47 membrane carrier [0119] 48 permeate outlet [0120] 49 opening [0121] 50 wall [0122] 51 pipe [0123] 52 second opening [0124] 53 bottom edge [0125] 54 gas inlet [0126] 55 gas distribution system [0127] 56 slot [0128] 57 tub [0129] 58 liquid to be filtered [0130] 59 liquid level [0131] 60 air [0132] 61 air pipe [0133] 62 permeate [0134] 63 permeate pipe [0135] 64 air bubble [0136] 65 upward flow [0137] 66 downward flow [0138] 67 flow deflection [0139] 68 membrane filter [0140] 69 pipe [0141] 70 base element [0142] 71 membrane carrier [0143] 72 wall of base element [0144] 73 bore hole in wall of base element [0145] 74 bore hole in pipe [0146] 75 bottom edge [0147] 76 permeate outlet [0148] 77 connection element [0149] 78 membrane filter [0150] 79 pipe [0151] 80 base element [0152] 81 membrane carrier [0153] 82 permeate outlet [0154] 83 gas inlet [0155] 84 opening [0156] 85 bottom edge [0157] 86 bore hole in pipe [0158] 87 bore hole in wall of base element [0159] 88 wall of base element [0160] 89 connection wall