Submerged hollow fiber membrane module
09561472 ยท 2017-02-07
Assignee
Inventors
- Jeong Jae Lee (Seoul, KR)
- Chi Joon Mo (Gunpo-si, KR)
- Seong Han Lim (Anyang-si, KR)
- Dong Seong Kim (Anyang-si, KR)
- You Chul Jeon (Anyang-si, KR)
Cpc classification
B01D2313/23
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
The present invention relates to a submerged hollow fiber membrane module that includes a partition membrane having a slanted slit-shaped opening, and thus capable of not only improving operating efficiency of a hollow fiber membrane module by accelerating the water flow, but also allowing easy discharge of highly concentrated raw water around the hollow fiber membrane to the outside of the module during a reverse wash process.
Claims
1. A submerged hollow fiber membrane module, comprising: an upper header and a lower header which are positioned parallel to each other by a predetermined distance therebetween; hollow fiber membranes arranged in a perpendicular direction between the upper header and the lower header; and a partition membrane provided to enclose the hollow fiber membranes, the partition membrane having openings, each of the openings includes an inlet on an outer surface side of the partition membrane, and an outlet on an inner surface side of the partition membrane, wherein the inlet and the outlet for each of the openings are connected at a slant so that the outlet is closer to the upper header than the inlet along a longitudinal direction of the hollow fiber membranes, such that each of the openings is configured to accelerate an upward water flow as water flows in via the inlet at the outer surface side of the partition membrane and flows out via the inlet at the inner surface side of the partition membrane, so that upon filtration, the upward water flow formed inside of the partition membrane does not diffuse to the outside of the partition membrane, and raw water outside of the partition membrane is introduced into the inside of the partition membrane.
2. The submerged hollow fiber membrane module of claim 1, wherein an interval between the openings is 0.130 cm.
3. The submerged hollow fiber membrane module of claim 1, wherein the partition membrane further includes an upper opening at a top portion thereof.
4. The submerged hollow fiber membrane module of claim 1, wherein the hollow fiber membranes are configured such that an average distance between fibers is 0.0150 mm.
5. The submerged hollow fiber membrane module of claim 1, wherein the lower header includes an air inlet.
6. The submerged hollow fiber membrane module of claim 1, wherein the openings are slanted at 45 relative to the longitudinal direction of the hollow fiber membranes.
7. A submergible hollow fiber membrane module, comprising: an upper header; a lower header positioned parallel to the upper header at a predetermined distance from the upper header; hollow fiber membranes arranged in a perpendicular direction between the upper header and the lower header; and a partition means disposed to enclose the hollow fiber membranes, the partition means being configured to accelerate an upward flow of water as the water flows from outside of the partition means via an inlet to inside of the partition means, and the upward flow of the water inside of the partition means does not diffuse to the outside of the partition means.
Description
DESCRIPTION OF DRAWINGS
(1)
(2)
(3) TABLE-US-00001 <Description of the Reference Numerals in the Drawings> 10: upper header 20: lower header 30: hollow fiber membrane 40: partition membrane 41: slit-shaped opening 50: upper opening
MODE FOR INVENTION
(4) Hereinafter, a detailed description will be given of embodiments of the present invention with reference to the appended drawings. Also, in the description of the present invention, a detailed description of known general functions or constructions related thereto is omitted.
(5) According to the present invention, a submerged hollow fiber membrane module may include a partition membrane having slanted slit-shaped openings, so that an upward water flow is accelerated, thus increasing operating efficiency of the hollow fiber membrane module, and enabling high-concentration raw water around hollow fiber membranes to be easily discharged to the outside of the module upon reverse washing.
(6)
(7) The partition membrane 40 may include the slanted slit-shaped openings 41 so that, upon filtration, an upward water flow formed in the module does not diffuse to the outside of the module, and raw water outside the module is introduced into the module, thus accelerating the upward water flow, and also, upon reverse washing, high-concentration raw water around the hollow fiber membranes may be easily discharged to the outside of the module, together with a downward water flow formed in the module.
(8) The interval between the slits may be 0.130 cm, but is not necessarily limited thereto.
(9)
(10) With reference to
(11) The partition membrane may include an upper opening 50 which is large at the top portion thereof. When such a large upper opening 50 is formed in this way, air supplied from the lower portion of the module easily escapes from the upper end of the module to the outside, thus facilitating the control of flow of air.
(12) The hollow fiber membranes 30 may be configured such that the average distance between the fibers is 0.0150 mm but is not necessarily limited thereto. Although the hollow fiber membranes have to be arranged as densely as possible, when the distance between the membranes is excessively decreased to be not more than 0.01 mm, it is difficult to achieve flow of raw water and air between the membranes, undesirably causing blockage between the membranes. In contrast, when the distance between the membranes is increased to be not less than 50 mm, the membrane packing density of the module may decrease, undesirably deteriorating water treatment capability.
(13) The lower header 20 may be provided with an air inlet (not shown), and the air inlet may have a plurality of through-holes for controlling the supply of air so that air is uniformly supplied.
(14) A better understanding of the present invention may be obtained via the following examples which are set forth to illustrate, but are not to be construed as limiting the present invention.
Preparation Example 1
Preparation of Hollow Fiber Membrane Module
(15) A submerged hollow fiber membrane module having a membrane area of 45 m.sup.2 was prepared, including an upper header and a lower header positioned parallel to each other by a predetermined distance therebetween, hollow fiber membranes arranged in a perpendicular direction between the upper header and the lower header, and a partition membrane provided to enclose the hollow fiber membranes and having slit-shaped openings slanted at 45 relative to the longitudinal direction of the hollow fiber membranes.
Comparative Preparation Example 1
Preparation of Hollow Fiber Membrane Module
(16) A submerged hollow fiber membrane module having the same configuration was prepared as in Preparation Example 1, with the exception that the partition membrane had slit-shaped openings orthogonal to the longitudinal direction of the hollow fiber membranes.
(17) [Evaluation of Performance of Submerged Hollow Fiber Membrane Module]
(18) To measure water permeability of the submerged hollow fiber membrane modules of Preparation Example 1 and Comparative Preparation Example 1, a water tank was filled with pure water containing 50 ppm of skim milk powder (protein in skim milk powder is present in the form of protein molecules and aggregates thereof in an aqueous solution, and is adsorbed to the surface of a separation membrane via hydrophobic bonding and undesirably may cause membrane blockage), and the submerged hollow fiber membrane module was mounted thereto and the water permeability thereof was measured periodically while operating the module at a suction pressure of 380 mmHg. The results are shown in Table 1 below.
(19) TABLE-US-00002 TABLE 1 Operating time 0 hr 0.5 hr 1 hr 1.5 hr 2 hr 4 hr 6 hr 8 hr Prep. Water permeability 312 215 165 153 140 146 153 143 Ex. 1 (LMH) Decrement (%) 100 69 53 49 45 47 49 46 Comp. Water permeability 323 230 150 122 109 86 75 81 Prep. (LMH) Ex. 1 Decrement (%) 100 71 46 38 34 27 23 25
(20) As is apparent from Table 1, compared to the submerged hollow fiber membrane module of Comparative Preparation Example 1, water permeability of the submerged hollow fiber membrane module of Preparation Example 1 was less decreased because of the slit-shaped openings slanted at 45 relative to the longitudinal direction of the hollow fiber membranes, and pollution resistance became higher.
(21) Although the preferred embodiments of the present invention have been disclosed for illustrative purposes, those skilled in the art will appreciate that various modifications, additions and substitutions are possible, without departing from the scope and spirit of the invention as disclosed in the accompanying claims.