IP Library › Granted Patent US 11,007,483
Granted Patent B2
US 11,007,483 · App. 16/547,685 · Granted May 18, 2021

Method and apparatus for the filtration of biological solutions

Inventors: Gaston de los Reyes (Somerville, MA); Leon Mir (Brookline, MA)
Assignee: SPF INNOVATIONS, LLC
B01D61/18B01D61/14B01D61/145B01D61/147B01D61/16B01D61/22B01D63/02B01D63/06B01D63/066B01D63/08B01D63/082B01D63/10B01D63/103B01L3/50255G01N1/4005G01N1/4077B01D2311/04B01D2313/08B01D2315/14B01D2315/16B01D2317/022B01D2319/022B01L2200/12B01L2300/0829B01L2300/0858B01L2400/049G01N2001/4088
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Quick Facts
Patent No.
US 11,007,483
App. No.
16/547,685
Granted
May 18, 2021
Kind
B2
Abstract

A system, method and device are disclosed for bio-processing a feed stream and providing a constant output by operating a continuous single-pass tangential-flow process. The single-pass process provides high conversion concentration while operating at relatively low feed flow rates, and the process can also be used to provide constant output diafiltration.

Claims (25)

1. A filtration system comprising:

a plurality of stages, each stage having a plurality of channels providing at least one serial flow path, each stage being in fluid communication with each adjacent stage preceding it and being in fluid communication with each adjacent stage that follows it;

each of the plurality of channels comprising a filtration membrane and having a length, a membrane area, a void volume, a specific membrane area expressed as a ratio of the membrane area to the void volume, and a dimensionless length expressed as a product of the channel length and the specific membrane area; wherein a dimensionless length of each respective stage of the plurality of stages is defined as the sum of the dimensionless lengths of each channel in a longest serial flow path in the respective stage and a dimensionless length of the system is the sum of the dimensionless lengths of the plurality of stages;

wherein the dimensionless length of the system is greater than about 2,000 and the dimensionless length of at least one of the plurality of stages is less than about 6,000; and

wherein at least one of the plurality of stages comprises a spiral-wound module.

2. The filtration system of claim 1 , wherein each of the plurality of stages is substantially identical.

3. The filtration system of claim 2 , wherein each of the substantially identical stages includes a series-parallel arrangement of channels.

4. The filtration system of claim 1 , wherein the specific membrane area of at least one channel in the plurality of stages is greater than about 40 cm −1 .

5. A filtration system comprising:

a plurality of stages, each stage having a plurality of channels providing at least one serial flow path, each stage being in fluid communication with each adjacent stage preceding it and being in fluid communication with each adjacent stage that follows it;

each of the plurality of channels comprising a filtration membrane and having a length, a membrane area, a void volume, a specific membrane area expressed as a ratio of the membrane area to the void volume, and a dimensionless length expressed as a product of the channel length and the specific membrane area; wherein a dimensionless length of each respective stage of the plurality of stages is defined as the sum of the dimensionless lengths of each channel in a longest serial flow path in the respective stage and a dimensionless length of the system is the sum of the dimensionless lengths of the plurality of stages;

wherein specific membrane area of at least one channel in the plurality of channels in the plurality of stages is greater than about 40 cm −1 ; and

wherein at least one of the plurality of stages comprises a spiral-wound module.

6. The filtration system of claim 5 , wherein each of the plurality of stages is substantially identical.

7. The filtration system of claim 6 , wherein each of the substantially identical stages includes a series-parallel arrangement of channels.

8. The filtration system of claim 5 , wherein the dimensionless length of the system is greater than about 2,000 and the dimensionless length of at least one of the plurality of stages is less than about 6,000.

9. The module of claim 5 , further comprising a device for serializing a retentae flow out of the at least one spiral-wound module.

10. The module of claim 9 , further comprising:

a retentate port fluidly coupled to at least one channel of the plurality of channels of at least one of the plurality of stages; and

a retentate valve fluidly coupled to the retentate port and located downstream from the retentate port.

11. A method for filtering a liquid feed comprising: continuously supplying the feed stream at a specific feed flow rate of less than about 200 lmh into a separation module having at least one channel having a specific membrane area greater than about 40 cm −1 ;

wherein the at least one channel comprises a filtration membrane and having a length, a membrane area, a void volume and a specific membrane area expressed as a ratio of the membrane area to the void volume;

wherein the specific feed flow rate is expressed as a ratio of a feed flow rate through the separation module to the membrane area of the separation module;

operating the separation module in a single pass tangential flow filtration mode; and

wherein the separation module comprises a plurality of serially connected spiral-wound modules.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 23, 2019
From: DE LOS REYES, GASTON; MIR, LEON
To: SPF INNOVATIONS, LLC
Reel/Frame 050143/0335 →
Continuity (10)
Continuation 15497609 · Apr 26, 2017
Continuation 14249592 · Apr 10, 2014
Continuation 13416487 · Mar 9, 2012
Division 13107917 · May 15, 2011
Division 12685192 · Jan 11, 2010
Division 12114751 · May 3, 2008
Division 11615028 · Dec 22, 2006
Provisional Application 60754813 · Dec 29, 2005
Provisional Application 60755009 · Dec 29, 2005
Related Publication 20190381458A1 · Dec 19, 2019