IP Library Granted Patent US 9,943,616
Granted Patent B2
US 9,943,616 · App. 15/691,369 · Granted Apr 17, 2018

Removal of microorganisms from fluid samples using nanofiber filtration media

Inventors: Mikhail Kozlov (Billerica, MA); Wilson Moya (Billerica, MA); Gabriel Tkacik (Billerica, MA)
Assignee: EMD Millipore Corporation
A61L2/0017B01D39/1623B01D67/002B01D67/0004B01D69/00B01D2239/025B01D2323/39C02F1/444C02F2303/04
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Quick Facts
Patent No.
US 9,943,616
App. No.
15/691,369
Granted
Apr 17, 2018
Kind
B2
Abstract

A method for removing microorganisms from liquid samples and a nanofiber containing liquid filtration medium that simultaneously exhibits high liquid permeability and high microorganism retention. Microorganisms such as bacteria, particularly B. Diminuta , are removed from a liquid by passing the liquid through a porous nanofiber containing filtration medium having a B. Diminuta LRV greater than about 9, and the nanofiber(s) has a diameter from about 10 nm to about 1,000 nm. Another method for removing microorganisms such as bacteria and Mycloplasma , includes passing the liquid through a porous nanofiber containing filtration medium having a microorganism LRV greater than about 8, and the nanofiber(s) has a diameter from about 10 nm to about 1,000 nm. The filtration medium can be in the form of a fibrous electro spun polymeric nanofiber liquid filtration medium mat.

Claims (17)

1. A porous nanofiber containing filtration medium made by electrospinning a polymer, wherein the filtration medium exhibits full retention of Brevundimonas diminuta by size-based separation as measured in accordance with ASTM F838-83 and a liquid permeability greater than about 1000 LMH/psi, wherein the nanofiber has a fiber diameter from about 10 nm to about 1,000 nm.

2. The porous nanofiber containing filtration medium of claim 1 , wherein the filtration medium has a thickness ranging from about 1 μm to about 500 μm.

3. The porous nanofiber containing filtration medium of claim 1 , wherein the polymer is selected from the group consisting of polyimide, aliphatic polyamide, aromatic polyamide, polysulfone, cellulose acetate, polyether sulfone, polyurethane, poly(urea urethane), polybenzimidazole, polyetherimide, polyacrylonitrile, poly(ethylene terephthalate), polypropylene, polyaniline, poly(ethylene oxide), poly(ethylene naphthalate), poly(butylene terephthalate), styrene butadiene rubber, polystyrene, poly(vinyl chloride), poly(vinyl alcohol), poly(vinylidene fluoride), poly(vinyl butylene) and copolymers, derivative compounds, or blends thereof.

4. The porous nanofiber containing filtration medium of claim 1 , wherein the polymer comprises an aliphatic polyamide.

5. The porous nanofiber containing filtration medium of claim 1 , wherein the polymer comprises a blend of polymers or copolymers.

6. The porous nanofiber containing filtration medium of claim 1 , wherein the electrospun nanofibers are disposed on a porous support.

7. The porous nanofiber containing filtration medium of claim 6 , wherein the porous support comprises one or more layers selected from the group consisting of spunbonded nonwovens, meltblown nonwovens, needle punched nonwovens, spunlaced nonwovens, wet laid nonwovens, resin-bonded nonwovens, woven fabrics, knit fabrics, paper, and combinations thereof.

8. A method of removing bacteria from a liquid sample comprising the steps of:

a) providing a liquid sample containing bacteria;

b) providing a porous nanofiber containing filtration medium made by electrospinning a polymer, wherein the filtration medium exhibits full retention of Brevundimonas diminuta by size-based separation as measured in accordance with ASTM F838-83 and a liquid permeability greater than about 1000 LMH/psi, wherein the nanofiber has a fiber diameter from about 10 nm to about 1,000 nm; and

c) passing the liquid sample containing bacteria through the filtration medium resulting in retention of bacteria.

9. The method of claim 8 , wherein the filtration medium has a thickness ranging from about 1 μm to about 500 μm.

10. The method of claim 8 , wherein the polymer is selected from the group consisting of polyimide, aliphatic polyamide, aromatic polyamide, polysulfone, cellulose acetate, polyether sulfone, polyurethane, poly(urea urethane), polybenzimidazole, polyetherimide, polyacrylonitrile, poly(ethylene terephthalate), polypropylene, polyaniline, poly(ethylene oxide), poly(ethylene naphthalate), poly(butylene terephthalate), styrene butadiene rubber, polystyrene, poly(vinyl chloride), poly(vinyl alcohol), poly(vinylidene fluoride), poly(vinyl butylene) and copolymers, derivative compounds, or blends thereof.

11. The method of claim 8 , wherein the polymer comprises an aliphatic polyamide.

12. The method of claim 8 , wherein the polymer comprises a blend of polymers or copolymers.

13. The method of claim 8 , wherein the electrospun nanofibers are disposed on a porous support.

14. The method of claim 13 , wherein the porous support comprises one or more layers selected from the group consisting of spunbonded nonwovens, meltblown nonwovens, needle punched nonwovens, spunlaced nonwovens, wet laid nonwovens, resin-bonded nonwovens, woven fabrics, knit fabrics, paper, and combinations thereof.

Assignments (3)
CHANGE OF ADDRESS Recorded Feb 1, 2018
From: EMD MILLIPORE CORPORATION
To: EMD MILLIPORE CORPORATION
Reel/Frame 045225/0156 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 25, 2017
From: KOZLOV, MIKHAIL; MOYA, WILSON; TKACIK, GABRIEL
To: MILLIPORE CORPORATION
Reel/Frame 043999/0600 →
MERGER AND CHANGE OF NAME Recorded Sep 25, 2017
From: MILLIPORE CORPORATION; EMD MILLIPORE CORPORATION
To: EMD MILLIPORE CORPORATION
Reel/Frame 043999/0761 →
Continuity (3)
Continuation 13257501
Provisional Application 61210468 · Mar 19, 2009
Related Publication 20170360971A1 · Dec 21, 2017