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US20030150808A1 - Separating film, separating film element, separating film module, sewage and waste water treatment device, and separating film manufacturing method - Google Patents

Separating film, separating film element, separating film module, sewage and waste water treatment device, and separating film manufacturing method
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Publication number
US20030150808A1
US20030150808A1US10/312,696US31269602AUS2003150808A1US 20030150808 A1US20030150808 A1US 20030150808A1US 31269602 AUS31269602 AUS 31269602AUS 2003150808 A1US2003150808 A1US 2003150808A1
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United States
Prior art keywords
separation membrane
porous substrate
porous
resin layer
resin
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Abandoned
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US10/312,696
Inventor
Hirofumi Morikawa
Shuji Furuno
Masahiro Henmi
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Toray Industries Inc
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Toray Industries Inc
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Filing date
Publication date
Application filed by Toray Industries IncfiledCriticalToray Industries Inc
Assigned to TORAY INDUSTRIES, INC.reassignmentTORAY INDUSTRIES, INC.ASSIGNMENT OF ASSIGNORS INTEREST (SEE DOCUMENT FOR DETAILS).Assignors: FURUNO, SHUJI, HENMI, MASAHIRO, MORIKAWA, HIROFUMI
Publication of US20030150808A1publicationCriticalpatent/US20030150808A1/en
Priority to US11/979,277priorityCriticalpatent/US9649602B2/en
Abandonedlegal-statusCriticalCurrent

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Abstract

A separation membrane has a porous substrate and a porous resin layer on at least one surface of the porous substrate and the porous resin layer contains a resin. Part of the resin permeates through the porous substrate to form a composite layer. At least one of the following relationships (1) and (2) is satisfied:
(1) the porous resin layer has an average pore size in the range of 0.01 to 0.2 μm and a standard variation of the pore size of 0.1 μm or less at the surface, and
(2) the porous resin layer has macrovoids having short diameters of 0.05×A or more wherein A represents the thickness of the porous substrate, and the rejection of micro particles having an average particle size of 0.9 μm is at least 90%. This separation membrane can be readily produced by a method for making a separation membrane according to the present invention.

Description

Claims (27)

What is claimed is:
1. A separation membrane comprising a porous substrate and a porous resin layer on at least one surface of the porous substrate, where the porous resin layer comprises a resin, a part of the resin permeating into the porous substrate to form a composite layer with the porous substrate, and at least one of the following relationships (1) and (2) is satisfied:
(1) the porous resin layer has an average pore size in the range of 0.01 to 0.2 μm and a standard variation of the pore size of 0.1 μm or less at the surface; and
(2) the porous resin layer has macrovoids having short diameters of 0.05×A or more, wherein A represents the thickness of the porous substrate, and the rejection of micro particles having an average particle size of 0.9 μm is at least 90%.
2. The separation membrane according toclaim 1, wherein
B≧0.2×A, and
C/B≧0.1
wherein A represents the thickness of the porous substrate, B represents the thickness of the porous resin layer and C represents the thickness of the composite layer.
3. The separation membrane according toclaim 1, wherein the porous substrate has a density of 0.7 g/cm3or less.
4. The separation membrane according toclaim 1, wherein the porous substrate comprises an organic fiber.
5. The separation membrane according toclaim 1, wherein the porous substrate comprises a nonwoven fabric.
6. The separation membrane according toclaim 1, wherein the resin comprises polyvinylidene fluoride as the major component.
7. A separation membrane comprising a porous substrate and a porous resin layer on at least one surface of the porous substrate, the porous substrate comprising an organic fiber and having a density of 0.7 g/cm3or less, the porous resin layer comprising a resin, part of the resin permeating into the porous substrate to form a composite layer with the porous substrate, wherein
B≧0.2×A, and
C/B≧0.1
wherein A represents the thickness of the porous substrate, B represents the thickness of the porous resin layer, and C represents the thickness of the composite layer, and wherein the porous resin layer has macrovoids having short diameters of 0.05×A or more, and the rejection of micro particles having an average particle size of 0.9 μm is at least 90%.
8. A separation membrane comprising a porous substrate and a porous resin layer on at least one surface of the porous substrate, the porous resin layer comprising a resin and permeating into part of the porous substrate to form a composite layer with the porous substrate, wherein
B≧0.2×A, and
C/B≧0.1
wherein A represents the thickness of the porous substrate, B represents the thickness of the porous resin layer and C represents the thickness of the composite layer, and wherein the porous resin layer has an average pore size in the range of 0.01 to 0.2 μm and a standard variation of the pore size of 0.1 μm or less at the surface.
9. The separation membrane according toclaim 1, wherein the porous substrate has the porous resin layers on two surfaces, and
2dA≦dC
2dB≦dC
wherein dArepresents the average pore size at the surface of one of the porous resin layers, dBrepresents the average pore size at the surface of the other porous resin layer, and dCrepresents the average pore size in the central cross-section of the separation membrane in the thickness direction.
10. A separation membrane element comprising a supporting plate and the separation membrane according toclaim 1 on at least one face of the supporting plate.
11. The separation membrane element according toclaim 10 used in sewage separation.
12. A separation membrane element comprising a separation membrane comprising a porous substrate and a porous resin layer on at least one surface of the porous substrate, the porous resin layer comprising a resin, part of the resin permeating into the porous substrate to form a composite layer with the porous substrate, wherein the porous resin layer has an average pore size in the range of 0.01 to 0.2 μm and a standard variation of the pore size of 0.1 μm or less at the surface.
13. The separation membrane element according toclaim 12 used in sewage separation.
14. A separation membrane module comprising a plurality of the separation membrane elements according toclaim 10 and a housing containing the separation membrane elements, the separation membrane elements being arranged substantially parallel to each other so as to form spaces between the adjacent separation membranes.
15. A separation membrane module comprising a plurality of separation membrane elements and a housing containing the separation membrane elements, each separation membrane element comprising a separation membrane comprising a porous substrate and a porous resin layer on at least one surface of the porous substrate, the porous resin layer comprising a resin, part of the resin permeating into the porous substrate to form a composite layer with the porous substrate, wherein the porous resin layer has an average pore size in the range of 0.01 to 0.2 μm and a standard variation of the pore size of 0.1 μm or less at the surface.
16. A sewage treatment apparatus comprising the separation membrane module according toclaim 14, the separation membrane module being immersible into sewage to be treated in use.
17. A sewage treatment apparatus comprising a separation membrane module comprising a plurality of separation membrane elements and a housing containing the separation membrane elements, each separation membrane element comprising a separation membrane comprising a porous substrate and a porous resin layer on at least one surface of the porous substrate, the porous resin layer comprising a resin, part of the resin permeating into the porous substrate to form a composite layer, wherein the porous resin layer has an average pore size in the range of 0.01 to 0.2 μm and a standard variation of the pore size of 0.1 μm or less at the surface, the separation membrane module being immersible into sewage to be treated in use.
18. A method for treating sewage, comprising filtering the sewage with the separation membrane according toclaim 1.
19. A method for making a separation membrane comprising the steps of:
applying a solvent solution containing a resin, a pore-forming agent, and a solvent onto at least one surface of a porous substrate having a density of 0.7 g/cm3or less to form a coating film and to impregnate the porous substrate with the solvent; and
immersing the porous substrate into a coagulation bath containing a non-solvent to coagulate the resin and to form a porous resin layer on the surface of the porous substrate.
20. The method for making the separation membrane according toclaim 19, wherein the solvent solution comprises 5 to 30 weight percent of the resin, 0.1 to 15 weight percent of the pore-forming agent, and 40 to 94.9 weight percent of the solvent, and the coagulation bath contains at least 60 weight percent of the non-solvent.
21. The method for making the separation membrane according toclaim 19, wherein the solvent solution contains a non-solvent.
22. The method for making the separation membrane according toclaim 21, wherein the solvent solution comprises 5 to 30 weight percent of the resin, 0.1 to 15 weight percent of the pore-forming agent, 40 to 94.8 weight percent of the solvent, and 0.1 to 20 weight percent of the non-solvent, and the coagulation bath contains at least 80 weight percent of the non-solvent.
23. The method for making the separation membrane according toclaim 19, wherein the coating films of the solvent solution are formed on two surfaces of the porous substrate.
24. The method for making the separation membrane according toclaim 19, wherein the temperature of the solvent solution is in the range of 15° C. to 120° C. and the temperature of the coagulation bath is in the range of 15° C. to 80° C.
25. The method for making the separation membrane according toclaim 19, wherein the porous substrate comprises a nonwoven fabric.
26. The method for making the separation membrane according toclaim 19, wherein the resin comprises polyvinylidene fluoride as the major component.
27. The method for making the separation membrane according toclaim 19, wherein the resin comprises polyvinylidene fluoride as the major component, and the pore-forming agent comprises a polymer comprising polyethylene glycol having a weight average molecular weight of at least 10,000 as the major component.
US10/312,6962001-02-162002-02-05Separating film, separating film element, separating film module, sewage and waste water treatment device, and separating film manufacturing methodAbandonedUS20030150808A1 (en)

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US11/979,277US9649602B2 (en)2001-02-162007-10-31Method of sewage treatment and sewage treatment apparatus

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JP20010399272001-02-16
JP2001399272001-02-16
JP20012762242001-09-12
JP20012762242001-09-12

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US11/979,277Expired - Fee RelatedUS9649602B2 (en)2001-02-162007-10-31Method of sewage treatment and sewage treatment apparatus

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EP (1)EP1371409B1 (en)
JP (2)JP5127107B2 (en)
KR (2)KR100874079B1 (en)
CN (1)CN1236842C (en)
AT (1)ATE316819T1 (en)
AU (1)AU2002230143B2 (en)
CA (1)CA2432046C (en)
DE (1)DE60208994T2 (en)
TW (1)TW514551B (en)
WO (1)WO2002064240A1 (en)

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DE60208994T2 (en)2006-08-31
WO2002064240A1 (en)2002-08-22
CA2432046A1 (en)2002-08-22
JP5310658B2 (en)2013-10-09
EP1371409A4 (en)2004-05-12
AU2002230143B2 (en)2006-06-15
CN1457268A (en)2003-11-19
KR100874079B1 (en)2008-12-12
US20080067127A1 (en)2008-03-20
JP2010221218A (en)2010-10-07
JP5127107B2 (en)2013-01-23
EP1371409A1 (en)2003-12-17
KR100909528B1 (en)2009-07-27
US9649602B2 (en)2017-05-16
ATE316819T1 (en)2006-02-15
KR20080091519A (en)2008-10-13
JPWO2002064240A1 (en)2004-06-10
CN1236842C (en)2006-01-18
DE60208994D1 (en)2006-04-13
CA2432046C (en)2011-04-05
EP1371409B1 (en)2006-02-01
KR20030001426A (en)2003-01-06
TW514551B (en)2002-12-21

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