US2005092674A1PendingUtilityA1

Apparatus for withdrawing permeate using an immersed vertical skein of hollow fibre membranes

Priority: Aug 11, 1995Filed: Dec 13, 2004Published: May 5, 2005
Est. expiryAug 11, 2015(expired)· nominal 20-yr term from priority
B01D 63/0222B01D 63/0231B01D 63/027B01D 2321/12B01D 2321/185C02F 1/444B01D 2321/04Y10S264/48B01D 2321/2066B01D 63/026B01D 63/043B01D 65/08B01D 61/20B01D 61/18B01D 2315/06B01D 65/02B01D 63/023Y02W10/10C02F 3/1273B01D 63/04
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Claims

Abstract

An apparatus is described for withdrawing filtered permeate from a substrate contained in a reservoir at ambient pressure. The apparatus includes a plurality of membrane assemblies. Each assembly has a plurality of hollow fiber filtering membranes, immersed in the reservoir, at least one permeating header with the membranes sealingly secured therein, and a permeate collector to collect the permeate sealingly connected to the at least one permeating header and in fluid communication with lumens of the membranes. The membranes of each assembly extend generally vertically upwards from a first header during permeation. One or more sources of suction are provided in fluid communication with the lumens of the membranes of each assembly through the permeate collectors and apply sufficient suction to withdraw permeate from the lumens of the membranes. An aeration system for discharging bubbles assists in keeping the membranes clean. In other aspects, a method of removing fouling materials from the surface of a plurality of porous membranes includes providing, from within a membrane module, gas bubbles in a uniform distribution relative to the membranes. The bubbles move past the surfaces of the membranes to dislodge fouling materials from them. The membranes are arranged in close proximity to one another and mounted to prevent excessive movement.

Claims

exact text as granted — not AI-modified
1 . An apparatus for withdrawing filtered permeate from a substrate comprising, 
 a reservoir containing non-pressurized substrate;    an assembly having, 
 an upper solid body and a lower solid body, an upper face of the lower solid body being separated from a lower face of the upper solid body by a distance;  
 a plurality of hollow fiber filtering membranes disposed generally vertically between the solid bodies, the ends of the membranes secured in the solid bodies, the membranes sealed in the solid bodies in a manner that prevents non-pressurized substrate from contaminating the permeate, the membranes each having a length between the solid bodies at least 1.001 times the distance but not longer than 1.05 times the distance, the membranes secured in the solid bodies such that each of the membranes may move against one or more others of the membranes;  
 an enclosure sealed to the upper solid body in a manner that the enclosure and the upper solid body define a cavity and prevent non-pressurized substrate from entering the cavity, the enclosure being immersible in the non-pressurized substrate;  
 a permeate port in communication with the cavity; and,  
 the lumen of each meryltrane in fluid communication with the port via the cavity;  
   a source of suction in communication with the lumens of the membranes via the permeate port to withdraw permeate from the non-pressurized substrate in the reservoir; and,    a gas distribution system connected to a source of a pressurized gas and having outlets adapted to introduce the pressurized gas into the non-pressurized substrate above the lower solid body, the gas distribution system being closed in a manner that prevents the non-pressurized substrate from contacting the pressurized gas other than through the outlets.    
   
   
       2 . The apparatus of  claim 1  wherein the outlets are located between the membranes.  
   
   
       3 . The apparatus of  claim 2  wherein the solid bodies are cylindrical.  
   
   
       4 . The apparatus of  claim 3  wherein permeate is not withdrawn through the lower ends of the membranes.  
   
   
       5 . The apparatus of  claim 3  wherein the outlets are radially and circumferentially distributed about a vertical center line through the assembly.  
   
   
       6 . The apparatus of  claim 4  wherein the outlets are radially and circumferentially distributed about a vertical center line through the assembly.  
   
   
       7 . The apparatus of  claim 4  wherein the lumens of the lower ends of the membranes are plugged in the lower solid body.

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