HOLLOW FIBER MEMBRANE AND METHOD FOR CLOSING THE SAME
20240350976 ยท 2024-10-24
Inventors
Cpc classification
International classification
Abstract
A method for closing one side of a hollow fiber membrane including a lumen and a wall radially enveloping the lumen, wherein the wall includes an inner textile layer, wherein a portion of a low viscosity resin flows at least partially through a face of the hollow fiber membrane into an end portion of the hollow fiber membrane and closes the end portion with an outer free surface and is being cured by UV light. In order to reduce a propensity for blocking between the end portions of the hollow fiber membranes it is proposed that that the portion is fed in its entirety by positive pressure through the face into the end portion and cured after a time period of 5 seconds at the most, and that the portion is arranged exclusively within the hollow fiber membrane after curing.
Claims
1. A method for closing one side of a hollow fiber membrane, the hollow fiber membrane including a lumen and a wall radially enveloping the lumen, the wall including an inner textile layer, the method comprising: flowing a portion of a low viscosity resin at least partially through a face of the hollow fiber membrane into an end portion of the hollow fiber membrane and closing the end portion with an outer free surface of the portion and curing the portion by UV light; and feeding the portion in its entirety by positive pressure through the face into the end portion and curing the portion after a time period of 5 seconds at the most, wherein the portion is arranged exclusively within the hollow fiber membrane after the curing.
2. The method according to claim 1, wherein the outer free surface in the lumen is configured concave.
3. The method according to claim 1, performing the feeding within 0.5-2.5 seconds while the end portion of the lumen is initially filled with the resin and letting a dwelling time of at least 1 second pass between an end of the feeding and a beginning of the UV radiation; and letting the resin seep from the lumen into the wall to a membrane surface of the end portion and thus saturate the wall during the dwelling time while the lumen remains closed by the resin.
4. The method according to claim 1, wherein a longitudinal axis of the hollow fiber membrane is in a horizontal position during closing.
5. The method according to claim 1, further comprising: retaining the hollow fiber membrane by a gripper in front of the end portion during the closing while performing the following steps automated in sequence: sliding a funnel that leads into a tubular section over the end portion until the tubular section closely envelops the membrane surface; feeding the portion from a free end of the tubular section through the tubular section into the end portion of the hollow fiber membrane; sliding the funnel off the end portion again; and positioning a UV-curing unit over the end portion, the UV curing unit irradiating the end portion with the UV-light and thereby curing the portion.
6. A membrane filter for filtering a liquid, the membrane filter comprising: hollow fiber membranes respectively including a lumen and a wall, wherein the wall includes an inner textile layer enveloping the lumen, wherein the hollow fiber membranes are fixed at a bottom in a base element and respectively include an individually closed end on top floating in the liquid freely, wherein the base element includes a permeate collection cavity to which the lumen of the hollow fiber membranes are connected and that is configured to collect the filtrate from the lumen, and wherein the respective individually closed end is closed according to the method according to claim 1.
7. A hollow fiber membrane, comprising: a lumen; and a wall, wherein the wall includes an inner textile layer radially enveloping the lumen, wherein an end portion of the hollow fiber membrane is closed by a portion of a resin that is cured by UV-light and that has low viscosity before curing, wherein the portion of the resin is arranged in its entirety within the hollow fiber membrane.
8. The hollow fiber membrane according to claim 7, wherein an outer free surface of the portion in the lumen is configured concave.
9. A membrane filter for filtering a liquid, the membrane filter comprising: hollow fiber membranes which are fixed at a respective bottom in a base element and respectively include an individually closed end on top, wherein the end freely floats in the liquid, wherein the base element includes a permeate collection cavity to which the lumen of the hollow fiber membranes are connected and that is configured to collect a filtrate from the lumen, wherein the hollow fiber membranes are configured according to claim 7.
10. The membrane filter according to claim 9, wherein the hollow fiber membranes of the base element are enveloped by a tube.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0052] The invention is subsequently described based on embodiments with reference to drawing figures, wherein
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DETAILED DESCRIPTION OF THE INVENTION
[0058] The drawing figures are not drawn to scale. All non-described details of the subsequently described methods, hollow fiber membranes or membrane filters according to the invention are identical to prior described methods, hollow fiber membranes or membrane filters.
[0059]
[0060] The hollow fiber membrane 1 includes a longitudinal axis 4 that is in a horizontal position during closure. The hollow fiber membrane 1 furthermore has a lumen 5 and a wall 6 that radially envelops the lumen 5. The wall 6 includes an inner textile layer 7 that reinforces the hollow fiber membrane 1 that has an outer diameter 8 of 2.6 mm and a lumen diameter 9 of 1.4 mm.
[0061] The portion 2 is fed in its entirety by positive pressure through a face 10 of the hollow fiber membrane 1 into an end portion 11 of the hollow fiber membrane 1. Thus, the resin 3 initially fills the lumen 5. The resin 3 starts seeping into the wall 6 and the textile layer 7 (
[0062] During a dwelling time which starts after feeding the resin 3 into the end portion 11, the resin 3 seeps out of the lumen 5 into the wall 6 and saturates the wall including the textile layer 7. During the dwelling time, the resin 3 retreats from the convex curvature 12 into the lumen 5 of the hollow fiber membrane 1 (
[0063] During the rest of the dwelling time, an outer free surface 13 of the portion 2 in the lumen 5 develops a concave shape in that the resin 3 retreats further into the lumen 5 and seeps from the lumen 5 into the wall 6 (
[0064] A final irradiation with UV light 15 terminates the dwelling time and the resin 3 is cured by the UV light 15. Thus, the current distribution of the portion 2 is fixed in the end portion 11. The dwelling time has a total duration of 2 seconds and the curing takes another 1.4 seconds.
[0065] After the curing, the portion 2 of the resin 3 is only arranged within the hollow fiber membrane 1 and a resin plug 16 formed in the lumen 5 has a concave outer free surface 13. The portion 2 thus closes the lumen 5 and the wall 6 of the hollow fiber membrane 1 including the textile layer 7 without the membrane surface 14 of the hollow fiber membrane 1 externally including a layer of the resin 3 that thickens the hollow fiber membrane 1 in the end portion 11 without cured resin 3 being arranged on the outside behind the face 10 of the hollow fiber membrane 1.
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[0067] The hollow fiber membrane 1 is produced endless in a production process and retained by a gripper 17 in front of the end portion 11. The gripper 17 retains the hollow fiber membrane 1 during the entire closing process. The end portion 11 of the hollow fiber membrane 1 can bend slightly in one or another direction transversal to the longitudinal axis 4 during the gripping process. In order to capture and center the end portion 11 a funnel 18 that leads into a tube section 19 is slid over the end portion 11 until the tube section 19 tightly envelops the membrane surface 16 (
[0068] The tube section 19 includes an inner diameter 20 which is 0.1 mm greater than the outer diameter 8 of the hollow fiber membrane 1 and thus amounts to 2.7 mm. Subsequently the portion 2, is fed from a free end 21 of the tube section 20 through the face 10 into the end portion 11. The feeding is performed by a micro dosing pump which is configured as a membrane pump with an extremely small displacement volume of 5 l. A portion 2 of the resin 3 of 50 l thus corresponds to a number of 10 strokes of the micro dosing pump which are performed overall during the feeding time of the resin 3 that has a duration of 1 second.
[0069] Depending on the oval shape of the hollow fiber membranes a smaller amount of the resin 3 can move into the gap between the inner diameter 20 of the tube section 19 and the outer diameter 8 of the hollow fiber membrane 1. This small portion amounts at the most to 0.1% of the portion 2 and causes a thickening of the wall 6 of less than 0.05 mm. Subsequently the dwelling time starts during which the funnel 18 is slid out of the end portion 11 again and a curing unit 22 is positioned over the end portion 11 by sliding the UV curing unit over the end portion 11 instead of the funnel 18. After positioning the UV curing unit 22, the end portion is irradiated with UV light 15 in order to cure the portion 2. The UV curing unit 22 has an installed electrical power of 100 W, wherein the entire light power of the UV radiation that impacts the membrane surface 14 is 24 W/cm.sup.2. The curing time for the portion 2 of the resin 3 by UV light 15, is 1.4 seconds.
[0070] After curing the curing unit 22 is slid out of the end portion 11 again and the gripper 17 releases the hollow fiber membrane 1 again. This terminates the automated closing process of the hollow fiber membrane 1.
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[0072] Subsequently the injection needle 28 is inserted into a lumen 29 of the hollow fiber membrane 24, wherein the injection needle 28 has an outer needle diameter 30 that is 0.1 mm smaller than the lumen diameter 31 (
[0073] Thereafter a portion 32 of the resin 33 is fed through the injection needle 28 and thus also through a face 34 of the hollow fiber membrane 24 into the lumen 29 of the hollow fiber membrane 24, wherein the portion initially spreads in the lumen closing the lumen. Thereafter the dwelling time starts during which the resin 33 seeps from the lumen 29 into a wall 35 of the hollow fiber membrane 24 and thus saturates the entire textile layer 23 and the entire wall 35.
[0074] During the dwelling time the injection needle 28 is pulled out of the lumen 29 again. The dwelling time ends when the resin 33 has seeped through the wall 35 to a membrane surface 36. Thereafter the portion is cured by UV light 37 before the gripper 26 releases the hollow fiber membrane again which completes the closure process.
[0075] The cured portion 32 of the resin 33 includes an outer free surface 38 in the lumen that is configured concave. The inner free surface 39 of the cured portion 32 oriented towards the lumen and arranged in the lumen 29, wherein the inner free surface is oriented towards the lumen 29 is also configured concave.
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REFERENCE NUMERALS AND DESIGNATIONS
[0080] 1 hollow fiber membrane [0081] 2 portion [0082] 3 resin [0083] 4 longitudinal axis [0084] 5 lumen [0085] 6 wall [0086] 7 textile layer [0087] 8 outer diameter [0088] 9 lumen diameter [0089] 10 face [0090] 11 end portion [0091] 12 curvature [0092] 13 outer free surface [0093] 14 membrane surface [0094] 15 UV light [0095] 16 resin plug [0096] 17 gripper [0097] 18 funnel [0098] 19 tube section [0099] 20 inner diameter [0100] 21 free end [0101] 22 UV curing unit [0102] 23 textile layer [0103] 24 hollow fiber membrane [0104] 25 end portion [0105] 26 gripper [0106] 27 longitudinal axis [0107] 28 injection needle [0108] 29 lumen [0109] 30 outer needle diameter [0110] 31 lumen diameter [0111] 32 portion [0112] 33 resin [0113] 34 face [0114] 35 wall [0115] 36 membrane surface [0116] 37 UV light [0117] 38 outer free surface [0118] 39 inner free surface [0119] 40 hollow fiber membrane [0120] 41 lumen [0121] 42 wall [0122] 43 textile layer [0123] 44 end portion [0124] 45 portion [0125] 46 resin [0126] 47 plug [0127] 48 face [0128] 49 outer free surface [0129] 50 inner free surface [0130] 51 membrane surface [0131] 52 hollow fiber membrane [0132] 53 lumen [0133] 54 wall [0134] 55 textile layer [0135] 56 end portion [0136] 57 portion [0137] 58 resin [0138] 59 resin plug [0139] 60 face [0140] 61 outer free surface [0141] 62 inner free surface [0142] 63 distance [0143] 64 membrane filter [0144] 65 hollow fiber membrane [0145] 66 lumen [0146] 67 wall [0147] 68 base element [0148] 69 end [0149] 70 permeate collection cavity [0150] 71 membrane filter [0151] 72 hollow fiber membrane [0152] 73 base element [0153] 74 tube