CA2463057C - Gas/liquid separator including a liquid trap filter - Google Patents

Gas/liquid separator including a liquid trap filter Download PDF

Info

Publication number
CA2463057C
CA2463057C CA2463057A CA2463057A CA2463057C CA 2463057 C CA2463057 C CA 2463057C CA 2463057 A CA2463057 A CA 2463057A CA 2463057 A CA2463057 A CA 2463057A CA 2463057 C CA2463057 C CA 2463057C
Authority
CA
Canada
Prior art keywords
outlet
inlet
compartment
sample
liquid
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Fee Related
Application number
CA2463057A
Other languages
French (fr)
Other versions
CA2463057A1 (en
Inventor
Michael T. Larsen
Leonid B. Soroka
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Criticare Systems Inc
Original Assignee
Criticare Systems Inc
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Criticare Systems Inc filed Critical Criticare Systems Inc
Publication of CA2463057A1 publication Critical patent/CA2463057A1/en
Application granted granted Critical
Publication of CA2463057C publication Critical patent/CA2463057C/en
Anticipated expiration legal-status Critical
Expired - Fee Related legal-status Critical Current

Links

Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B01PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
    • B01DSEPARATION
    • B01D46/00Filters or filtering processes specially modified for separating dispersed particles from gases or vapours
    • B01D46/0027Filters or filtering processes specially modified for separating dispersed particles from gases or vapours with additional separating or treating functions
    • B01D46/003Filters or filtering processes specially modified for separating dispersed particles from gases or vapours with additional separating or treating functions including coalescing means for the separation of liquid
    • B01D46/0031Filters or filtering processes specially modified for separating dispersed particles from gases or vapours with additional separating or treating functions including coalescing means for the separation of liquid with collecting, draining means
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B01PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
    • B01DSEPARATION
    • B01D46/00Filters or filtering processes specially modified for separating dispersed particles from gases or vapours
    • B01D46/54Particle separators, e.g. dust precipitators, using ultra-fine filter sheets or diaphragms
    • B01D46/543Particle separators, e.g. dust precipitators, using ultra-fine filter sheets or diaphragms using membranes
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B01PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
    • B01DSEPARATION
    • B01D2265/00Casings, housings or mounting for filters specially adapted for separating dispersed particles from gases or vapours
    • B01D2265/02Non-permanent measures for connecting different parts of the filter
    • B01D2265/028Snap, latch or clip connecting means
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B01PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
    • B01DSEPARATION
    • B01D2271/00Sealings for filters specially adapted for separating dispersed particles from gases or vapours
    • B01D2271/02Gaskets, sealings

Abstract

A liquid separator for a respiratory gas sample analyzer includes a closed container having a liquid trap filter chamber integral with the container. The liquid trap filter chamber includes an inlet compartment and an outlet compartment. The inlet compartment is interposed between a sample inlet port and a sample outlet port and includes a gas permeable, liquid impermeable filter element for separating liquid from a gas sample, the liquid separated from the gas sample passing to a collection chamber. The outlet compartment includes a further gas permeable, liquid impermeable trap filter element which is interposed between the collection chamber and a low pressure port, for preventing the flow of liquid' through the output compartment to the low pressure port.

Description

GAS/LIQUID SEPARATOR INCLUDING A LIQUID TRAP FILTER
BACKGROUND OF THE INVENTION

This invention relates to gas/liquid separators for use with respiratory gas analyzers, and more particularly, to gas/liquid separator including a liquid trap filter for removing liquid from a respiratory gas sample.
Respiratory gas analyzers monitor exhaled air from a patient. It has long been recognized that means must be provided for removing excess moisture from the exhaled air prior to analysis. One technique for removing excess moisture from respiratory gas samples utilizes the effects of surface tension and capillary action to separate water from gas samples. Known gas/liquid separators, or water traps, employing this technique include a separation chamber which has a geometrical configuration designed to draw water away from a gas sample outlet and direct the water to a collection chamber. Examples of such prior art water traps are disclosed in United States Patent Nos.
4,579,568 and 4,713,095 to Ricciardelli. However, these prior art water traps can become filled, and the sample inlet line that conducts exhaled air to the water trap can become blocked with condensed moisture.
Another water trap, disclosed in United States Patent No. 4,924,860, employs a separation chamber having a geometrical configuration similar to the one disclosed in United States Patent Nos. 4,713,095. This water trap additionally includes self-sealing filters which positively seal the exit ports of the water trap in the event the water trap becomes over filled and can no longer perform its water trap function. In one embodiment, one self-sealing filter is disposed in a sample outlet conduit and a further self-seating filter is disposed in a vacuum conduit. The self-sealing filters comprise a porous matrix including means for rendering the porous matrix substantially non-porous when exposed to water, thereby blocking the exit ports of the water trap.

SUMMARY OF THE INVENTION

The present invention provides a liquid separator for use with a gas analyzer for separating liquid from a gas sample to be analyzed. The liquid separator comprises a container including a sample inlet port, a sample outlet port and a liquid trap filter chamber integral with the container. The liquid trap filter chamber includes an inlet compartment which has an upper outlet communicated with the sample outlet port and a lower outlet communicated with a collection chamber. A
liquid trap filter element is contained in the inlet compartment for separating liquid from the gas sample, liquid separated from the gas sample passing through the lower outlet of said inlet compartment to the collection chamber In one embodiment, the liquid trap filter chamber includes an outlet compartment which is interposed between the collection chamber and a low pressure port, the outlet compartment having an inlet communicated with the collection chamber and an outlet communicated with the low pressure port. A second liquid trap filter element is contained in the outlet compartment interposed between the inlet and the outlet of the outlet compartment.
Further in accordance with the invention, there is provided a liquid separator for a gas analyzer which comprises a separation compartment for separating liquid from a gas sample. The separation compartment includes an upper outlet communicated with a sample outlet port and a lower outlet communicated with a collection chamber for receiving and storing liquid separated from the gas sample. The liquid separator further comprises an outlet compartment which is interposed between the collection chamber and a low pressure port. The outlet compartment contains a liquid trap filter element for preventing the flow of liquid through the outlet compartment from the collection chamber to the low pressure port.

BRIEF DESCRIPTION OF THE DRAWINGS

The features of the present invention which are believed to be novel are set forth with particularity in the appended claims. The invention, together with the further objects and advantages thereof, may best be understood by reference to the following description taken in conjunction with the accompanying drawings, wherein like reference numerals identify like elements, and wherein:

FIG. 1 is a perspective view of a gas/liquid separator in accordance with the invention;
FIG. 2 is an exploded view of the gas/liquid separator of FIG. 1;
FIG. 3 is a vertical section view of the gas/liquid separator taken along the line 3-3 of FIG. 1;

FIG. 4 is a vertical section view of the gas/liquid separator taken along the line 4-4 of FIG. 1;

FIG. 5 is a perspective view of a base of the gas/liquid separator of FIG. 1;

FIG. 6 is a bottom plan view of the base of FIG. 5;
FIG. 7 is a vertical section view of the base of FIG. 5;

FIG. 8 is a perspective view of a top of the gas/liquid separator of FIG. 1;

FIG. 9 is a front elevation view of the top of FIG.
8;

FIG. 10 is a vertical section view of the top of FIG. 8;

FIG. 11 is a bottom plan view of the top of FIG. 8;
FIG. 12 is a front perspective view of a cover of the gas/liquid separator of FIG. 1;

FIG. 13 is a back perspective view of the cover of FIG. 12;

FIG. 14 is a plan view of the back of the cover of FIG. 12;

FIG. 15 is a section view of the cover of FIG. 12;
FIG. 16 is a perspective view of a mounting clip for use with the gas/liquid separator of FIG. 1; and FIG. 17 is a-front elevation view of the mounting clip of FIG. 16.

DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS
Referring to the drawings, FIGS. 1 and 2 illustrate a gas/liquid separator 10 in accordance with one embodiment of the invention. The gas/liquid separator 10, hereinafter liquid separator, includes a closed container 12, a gas/liquid sample inlet port 14, a liquid trap filter chamber 16, a sample outlet port 18, a trap reservoir or liquid collection chamber 20 and a low pressure port 22.
A gas permeable, liquid impermeable trap filter element 24 is contained in an inlet trap filter compartment 26 of the liquid trap filter chamber 16, interposed between the inlet port 14 and the sample outlet port 18 for separating liquid from the respiratory sample. A further gas permeable, liquid impermeable trap filter element 28 is contained in an outlet compartment 30 of the liquid trap filter chamber 16, interposed between the collection chamber 20 and the low pressure port 22. The liquid separator 10 can include a self-sealing, hydrophilic filter 34 in the sample outlet port 18 and a further self-sealing, hydrophilic filter 36 in the low pressure port 22.
Briefly, with reference to FIGS. 1, 2 and 3, a sample respiratory gas of exhaled air is introduced into the liquid separator through the sample inlet port 14.
The liquid trap filter element 24 in inlet trap filter compartment 26 separates liquid from the sample respiratory gas. Liquid from the respiratory sample exits the liquid trap filter compartment 16 and flows into the liquid collection chamber 20, while the gas sample leaves the inlet trap filter compartment 26 via the sample outlet port 18. In one embodiment, the low pressure port 22 can be connected to a vacuum pump to produce a low pressure within the collection chamber 20 by withdrawing air from the collection chamber through the outlet trap filter compartment 30.
The liquid separator 10 provided by the present invention, employs a gas permeable, liquid impermeable trap filter element 24 for separating liquid in contrast to a separation chamber, the operation of which is dependent upon the geometrical configuration of the separation chamber, as is the case for the water traps disclosed in the patents referenced above. Moreover, the gas permeable, liquid impermeable trap filter element 28, which is interposed between the collection chamber 20 and the low pressure port 22 as shown in FIG.
4, for example, is used to substantially prevent liquid from the collection chamber 20 from being drawn through the outlet trap filter compartment 30 and into the low pressure port 22.

Considering the liquid separator 10 in more detail, with reference also to FIGS. 5-7, the container 12 includes a base 40, a top 42 and a cover 44. In one embodiment, the base 40, top 42 and cover 44 are molded of a rigid transparent plastic, such as plexiglass.

The base 40, which defines the collection chamber 20, is a cup-like member which is closed at its lower end by a base member 46 and which has an open upper end defined by an upwardly projecting side wall 48. The side wall 48 includes a forward portion 50, a rearward portion 52 and an upper peripheral edge 54. The outer surface of the base member 46 includes a raised portion 56, which extends forwardly from near rearward portion 52, and a pair of recesses 58, located near forward portion 50, for a purpose to be shown.

The top 42 is mounted on the upper peripheral edge 54 of the base 40, as shown in FIG. 1, closing the upper end of the base 40 to form the closed container 12 including the collection chamber 20.
Referring to FIGS. 1, 2, 8, 9 and 11, the top 42 includes a base 60, a filter housing 62 and a pair of upwardly extending bosses 64 and 66. The filter housing is located near the forward portion 61 of the top 42 and defines the liquid trap filter chamber 16. The bosses 64 and 66 are located near the rearward portion 63 of the top 42 and define the sample outlet port 18 and the low pressure port 22, respectively.
The inlet trap filter compartment 26 of the liquid trap filter chamber 16 has a lower outlet 68 in fluid communication with the collection chamber 20. The lower outlet 68 is located forwardly of a back wall or barrier 76 of the inlet trap filter compartment 26. Similarly, the outlet trap filter compartment 30 of the liquid trap filter chamber 16 has a lower inlet 70 in fluid communication with the collection chamber 20. The lower inlet 70 is located forwardly of a back wall or barrier 86 of the outlet trap filter compartment 30.
The inlet trap filter compartment 26 has an upper outlet 72 located near the center of the cover 42. In one embodiment, the axis of the upper outlet 72 can be offset with respect to the axis of the inlet trap filter compartment 26 to bring the upper outlet 72 in line with the sample outlet port 18 while maximizing the active surface area of the trap filter element 24. The inlet trap filter compartment 26 further includes a support web 74 formed on the back wall 76 thereof. The support web 74 supports the trap filter element 24 within the inlet trap filter compartment 26 to prevent excessive stress on the trap filter element 24. The support web spaces the trap filter element 24 forwardly of the back wall providing an active area through which gas can flow. The support web 74 also prevents the trap filter element 24 from being drawn against the back wall 76 by vacuum. The back wall 76 defines the upper outlet 72 of the inlet trap filter compartment 26.

Similarly, the outlet trap filter compartment 30 has an upper outlet 82 (FIG. 9) located near the center of the cover 42. In one embodiment, the axis of the upper outlet 82 is offset with respect to the axis of the outlet trap filter compartment 30 to bring the upper outlet 82 in line with the low pressure port 22 while maximizing the active surface area of the trap filter element 28. The outlet trap filter compartment 30 includes a support web 84, similar in structure and function to support web 74, on the back wall 86. The support web 84 supports the trap filter element 28 within the outlet trap filter compartment 30, preventing excess stress on the trap filter element 28 and spaces the trap filter element 28 forwardly of the back wall 86, providing an active area through which gas can flow.
The support web 84 also prevents the trap filter element 28 from being drawn against the back wall 86 by vacuum.
The back wall 86 defines the upper outlet 82 for the outlet trap filter compartment 30. The surface of the top 42 surrounding the inlet and outlet trap filter compartments 26 and 30 can be stepped as indicated by reference numbers 90 and 91, respectively. The top 42 has a stepped inner edge 92 which extends around the periphery of the trap filter compartments 26 and 30.

In one embodiment, the gas permeable, liquid impermeable trap filter elements 24 and 28 can be a membrane filter element such as GORE-TEX expanded polytetrafluoroethylene (PTFE) laminate having a one micron pore size on spunbonded polyester, with the PTFE
laminate surfaces 94 and 96 of trap filter elements 24 and 28, respectively, facing forwardly. In one embodiment, the trap filter elements 24 and 28 can be permanently bonded to the back walls 76 and 86. The cover 44 is mounted on the top 42, overlying the open side of the trap filter chamber 16, closing the trap filter chamber and can aid in holding the trap filter elements 24 and 28 in place in the inlet and outlet trap filter compartments. The cover 44 also separates the inlet trap filter compartment 26 from the outlet trap filter compartment 30.

The top 42 includes an interior conduit 78, shown in FIGS. 3 and 10, for example, which communicates the upper outlet 72 of the inlet trap filter compartment 26 with the sample outlet port 18. A further interior conduit 88 communicates the upper outlet 82 of the outlet trap filter compartment 30 with the low pressure port 22 as shown in FIG. 4, for example. The upper outlet 82 is communicated with the collection chamber 20 only through the trap filter element 28 and the lower inlet 70. There is no direct connection between the sample outlet port 18 and the collection chamber 20.
Also, the sample inlet 14 is communicated with the sample outlet port 18 only through the trap filter element 24. The top includes a baffle 87 which extends from the bottom of the cover 42, beneath the liquid trap filter chamber 16. The baffle 87 extends from near the forward portion 61 and to the rearward portion 63 of the top 42 and is located between the reservoir inlet or lower outlet port 68 (FIG. 8) of the inlet trap filter compartment and the lower inlet port 70 outlet trap filter compartment, providing a barrier therebetween.
The baffle 87 blocks the growth of any bubbles emanating from the trap reservoir inlet 68 before the bubbles can reach the trap reservoir outlet 70. The baffle 87 slows, down the bubbles so that the bubbles burst prior to reaching the trap reservoir outlet 70.
In one embodiment, the base 40 and the top 42 can be produced as independent components with the top 42 being permanently secured to the base 40 such that the container 12 is an integral, one-piece member. By way of example, the top 42 can be secured to the base 40 by ultrasonic welding techniques, or by any other bonding techniques, such as by the use of epoxy type cement or solvent type cement. Whatever the technique used, the junction between the base 40 and the top 42 should be leak proof and secure in the presence of water and 100%
humidity.
Referring to FIGS. 12-14, the cover 44 includes a flat, oval base 104 with a hollow cylindrical boss 102 projecting outwardly therefrom on one side 104 near one end 106 thereof, defining the inlet port 14. The boss 102 defines a female luer connection as indicated generally at 108. Referring also to FIG. 15, the boss 102 includes a through bore 110. The cover 44 includes annular steps 112 and 113 which mate with corresponding surfaces of the top 42 to provide sealing between the cover and the top for the trap filter inlet and the trap filter outlet compartments.
The cover 44 has two raised annular portions 114 and 116 on its opposite side 118. The annular portions 114 and 116 have concave, filter engaging surfaces 120 and 122 surrounded by an annular peripheral rims 121 and 123, respectively. One of the annular filter engaging portions 114 has a notch 124 in rim 121 near its lower end, which is located adjacent to and in fluid communication with a notch in the cover 42 that defines the lower outlet 68 of the inlet trap filter compartment 26, outwardly of the trap filter element 24. Liquid trapped at the forward side of the filter element can pass through the notch 124 to the lower outlet or trap reservoir outlet 68. Similarly, annular portion 116 has a notch 126 in rim 123 near its lower end which is located adjacent to and in fluid communication with a notch in the cover 42 that defines the lower inlet or trap reservoir outlet 70 of the outlet trap filter compartment 30. In one embodiment, the cover 44 can be secured to the top 42 by ultrasonic welding techniques, or by any other bonding techniques, such as by the use of epoxy type cement or solvent type cement. Whatever the technique used, the junction between the cover 44 and the top 42 should be leak proof and secure in the presence of water and 100% humidity.

Referring to FIG. 16, there is shown a mounting clip 130 which can be used to facilitate attachment of the liquid separator to a gas analyzer (not shown) with which it is used. The mounting clip 130 includes a base portion 132 with a pair of flexible arms 133,134 with hooked ends. The arms 133 and 134 are sized to engage the raised portion on the outer surface of the base member. The mounting clip 130 includes projections or posts 136 which are received in the recesses 58 (FIG. 6) in the outer surface of the base member 46. The mounting clip 130 can be made of a plastic material such as cycoloy, for example.

Referring to FIGS. 1, 6 and 16, the mounting clip 130 can be pressed onto the bottom of the base 40, with the posts 136 located in the recesses-58 and the arms 133 and 134 fitting around and resiliently engaging the raised bottom portion 56 of the base member 46. In another embodiment, one or both of the back outer corners 152 and 154 of the base 40 (FIGS. 3 and 6) can include a serrated surface and/or can project outwardly beyond the plane of the adjacent pair of sides 156,158 and 158,160, to provide a interference fit between the liquid separator and the manifold of a gas analyzer with which the liquid separator is used. In this embodiment, the retaining clip does not have to be used.

Referring to FIGS. 1-4, the self-sealing, hydrophilic line filters 34 and 36 can be similar to those disclosed in United States Patent No. 4,924,860, which is incorporated herein by reference for its teaching as to self-sealing filters. Filter plugs 140 and 142 can be pressed into the top of the bosses 64 and 66 and be glued or otherwise secured to the bosses to maintain the line filters 34 and 36 in place. The filter plugs 140 and 142 can be made of a plastic material such as plexiglass, for example.

As more fully.described in United States Patent No.
4,924,860 referenced above, the self-sealing filters 34 and 36 preferably comprise a cellulose extract disposed in the plastic material to seal the pores when it comes into contact with a liquid, such as water. The self-sealing filters 34 and 36 are normally "open". The filters 34 and 36 ensure that no fluid contamination is able to reach the gas monitoring system with which the gas/liquid separator 10 is used. For example, in the event the collection chamber 20 becomes filled with collected water and water rises to a level sufficient to allow the water to come into contact with the self-sealing filters 34 and 36, the filters 34 and 36 immediately become non-porous, thereby sealing the respective conduits as to both liquid flow and gas flow therethrough. As is described in detail in United States Patent No. 4,924,860, the filters 34 and 36 operate as a water sensor which signals undesired water presence to a suitable control system for appropriate action. In this way, liquid, including water and mucous secretions, are reliably prevented from entering the gas analyzer. This is an important advantage, because considerable time and expense can be required to clean a gas analyzer once contaminated by liquid.
Referring to FIGS. 1, 3, and 4, the operation of the liquid separator 10 is apparent from the foregoing detailed description, and accordingly, the following is a brief description of the operation. A vacuum is applied to the low pressure port 22, drawing air out of the collection chamber 20 through the outlet trap filter compartment 30. The low pressure port 22 is normally in fluid communication with the outlet side of the outlet trap filter compartment 30 through conduit 88 and the upper outlet 82. The inlet side of the outlet trap filter compartment 30, in turn, is communicated with the collection chamber 20 through lower inlet 70. However the trap filter element 28 in the outlet trap filter compartment 30 substantially blocks the passage of liquid from the collection chamber 20 to the low pressure port 22.

A sample respiratory gas of exhaled air is introduced into the gas/liquid sample inlet port 14 and passed into the inlet trap filter compartment. The trap filter element 24 in inlet trap filter compartment 26 separates liquid from the sample respiratory gas.
Liquid from the sample falls by gravity to the bottom of the inlet trap filter compartment 26 and flows through the lower outlet 68 into the liquid collection chamber 20. The gas sample, passed through the filter element 24, passes through the upper outlet 72 and conduit 78 to the sample outlet port 18 from which the gas sample can be applied to a gas analyzer (not shown).
The container 12 is transparent to allow a care giver to know when the collection chamber 20 is close to being filled so that the liquid separator 10 can be changed. In the event the liquid separator 10 becomes over filled and can no longer perform its function, the self-sealing filter 34 and 36, disposed in the sample outlet port 18 and low pressure outlet 22 become substantially non-porous, thereby blocking the exit ports of the liquid separator 10.
The liquid separator 10 can be used in a conventional gas analyzer in which the physical sealing effect provided by the self-sealing filters 34 and 36 protects the gas analyzer from liquid contamination.
However, the liquid separator 10 is preferably used in a gas analyzer, such as that disclosed in United States Patent No. 4,924,860, referenced above, which monitors pressures in a conduit coupled to the low pressure port and a conduit coupled to the sample outlet port to detect sealing by the self-sealing filter.

While preferred embodiments have been illustrated and described, it should be understood that changes and modifications can be made thereto without departing from the invention in its broadest aspects. Various features of the invention are defined in the following claims.

Claims (29)

What is claimed is:
1. A liquid separator for a gas analyzer, said liquid separator comprising:
a closed container including a sample inlet port, a sample outlet port, and a low pressure port;
said container defining a liquid collection chamber and a liquid trap filter chamber, said liquid trap filter chamber including an inlet compartment interposed between said sample inlet port and said sample outlet port for receiving a gas sample introduced into said sample inlet port, said inlet compartment having an upper outlet communicated with said sample outlet port and a lower outlet communicated with said liquid collection chamber;
a first liquid trap filter element, said first filter element being a thin, generally flat member contained and supported within said inlet compartment, interposed between said sample inlet port and said sample outlet port for separating liquid from the gas sample, liquid separated from the gas sample passing through said lower outlet to said collection chamber, said first filter element oriented vertically within said inlet compartment to maximize active surface area of said first filter element;
said liquid trap filter chamber further including an outlet compartment interposed between said collection chamber and said low pressure port, said outlet compartment having an inlet communicated with said collection chamber and an outlet communicated with said low pressure port; and a second liquid trap filter element, said second filter element being a thin, generally flat member that is separate from said first filter element, said second filter element contained and supported within said outlet compartment interposed between said inlet and said outlet of said outlet compartment, said second filter element oriented vertically within said outlet compartment to maximize active surface area of said second filter element.
2. The liquid separator according to claim 1, wherein said inlet compartment includes a back wall interposed between said first filter element and said sample outlet port, said back wall of said inlet compartment defining said upper outlet, said first filter element overlying said back wall of said inlet compartment.
3. The liquid separator according to claim 2, wherein said liquid trap filter chamber includes a cover which encloses said first filter element within said inlet compartment.
4. The liquid separator according to claim 3, wherein said cover includes at least one concave filter engaging surface engaging said first filter element to trap said first filter element between said cover and said back wall of said inlet compartment.
5. The liquid separator according to claim 1, wherein said first filter element comprises a membrane bearing a polytetrafluoroethylene laminate.
6. The liquid separator according to claim 1, wherein said outlet compartment includes a back wall interposed between said second filter element and said low pressure port, said back wall of said outlet compartment defining said outlet of said outlet compartment, said second filter element overlying said back wall of said outlet compartment.
7. The liquid separator according to claim 1, wherein said second filter element comprises a membrane bearing a polytetrafluoroethylene laminate.
8. The liquid separator according to claim 1, and including a self-sealing filter in at least one of said sample outlet port and said low pressure port.
9. A liquid separator for a gas analyzer, said liquid separator comprising:
a sample inlet port;

a sample outlet port;
an inlet compartment having an upper outlet communicated with said sample outlet port and a lower outlet communicated with a liquid collection chamber, said inlet compartment having an inlet front wall and an inlet back wall extending generally parallel to said inlet front wall, said inlet back wall defining said upper outlet;
a first gas permeable, liquid impermeable filter element, said first filter element being a thin, generally flat member contained and supported within said inlet compartment interposed between and extending parallel to said inlet front wall and said inlet back wall and interposed between said sample inlet port and said upper outlet for separating liquid from the gas sample;
a support web on said inlet back wall spacing said first filter element forwardly of said inlet back wall;
said liquid collection chamber for receiving liquid passed through said lower outlet of said inlet compartment;
an outlet compartment interposed between said collection chamber and a low pressure outlet, said outlet compartment having an inlet communicated with said collection chamber and an outlet communicated with said low pressure port, said outlet compartment having an outlet front wall and an outlet back wall extending generally parallel to said outlet front wall, said outlet back wall defining said upper outlet; and a second gas permeable, liquid impermeable filter element said second filter element being a thin, generally flat member contained and supported within said outlet compartment interposed between and extending parallel to said outlet front wall and said outlet back wall and interposed between said inlet and said outlet of said outlet compartment;
and a support web on said outlet back wall spacing said second filter element forwardly of said outlet back wall.
10. The liquid separator according to claim 9, including a self-sealing filter in at least one of said sample outlet port and said low pressure port.
11. The liquid separator according to claim 9, wherein said first-mentioned and said second filter elements each comprises a membrane bearing a polytetrafluoroethylene laminate.
12. A liquid separator for a gas analyzer, said liquid separator comprising:
a sample inlet port;
a sample outlet port;
a liquid collection chamber; an inlet compartment for receiving a gas sample introduced into said sample inlet port, said inlet compartment having an upper outlet communicated with said sample outlet port and a lower outlet communicated with said collection chamber, said inlet compartment having an inlet back wall defining said upper outlet;
a first gas permeable, liquid impermeable filter element contained within said inlet compartment, said first filter element being a generally flat member overlying said inlet back wall and interposed between said sample inlet port and said upper outlet for separating liquid from the gas sample;
a support web on said inlet back wall supporting said first filter element within said inlet compartment spaced forwardly of said inlet back wall;
liquid separated from said gas sample being passed through said lower outlet of said inlet trap filter compartment to said collection chamber;
a low pressure port;
an outlet compartment interposed between said collection chamber and said low pressure port, said outlet compartment having an inlet communicated with said collection chamber and an outlet communicated with said low pressure port, said outlet compartment having an outlet back wall defining said outlet of said outlet compartment;
and a second gas permeable, liquid impermeable filter element contained within said outlet compartment, said second filter element being a generally flat member overlying said outlet back wall and interposed between said inlet and said outlet of said outlet compartment; and a support web on said outlet back wall supporting said second filter element within said outlet compartment spaced forwardly of said outlet back wall.
13. A liquid separator for a gas analyzer, said liquid separator comprising:
a sample inlet port;
a sample outlet port;
an inlet compartment for receiving a gas sample introduced into said sample inlet port, said inlet compartment having an upper outlet communicated with said sample outlet port and a lower outlet, said inlet compartment having an inlet back wall defining said upper outlet;
a first gas permeable, liquid impermeable filter element contained within said inlet compartment, said first filter element being a flat member generally circular in shape and overlying said inlet back wall, interposed between said sample inlet port and said upper outlet for separating liquid from the gas sample;
a support web on said inlet back wall supporting said first filter element within said inlet compartment spaced forwardly of said inlet back wall, providing an active area through which gas can flow to said upper outlet;
a liquid collection chamber receiving liquid passed through said lower outlet of said inlet trap filter compartment;
a low pressure port;
an outlet compartment interposed between said collection chamber and said low pressure port, said outlet compartment having an inlet communicated with said collection chamber and a low pressure outlet communicated with said low pressure port, said outlet compartment having an outlet back wall defining said low pressure outlet; and a second gas permeable, liquid impermeable filter element contained within said outlet compartment, said second filter element being a flat member generally circular in shape and overlying said outlet back wall, interposed between said inlet and said low pressure outlet of said outlet compartment; and a support web on said outlet back wall supporting said second filter element within said outlet compartment spaced forwardly of said outlet back wall, providing an active area through which gas can flow to said low pressure outlet.
14. A liquid separator for a gas analyzer, said liquid separator comprising:
a sample inlet port;
a sample outlet port;
a liquid trap filter chamber including an inlet compartment interposed between said sample inlet port and said sample outlet port for receiving a gas sample introduced into said sample inlet port, said inlet compartment having an upper outlet communicated with said sample outlet port and a lower outlet;
a first gas permeable, liquid impermeable filter element contained within said inlet compartment interposed between said sample inlet port and said upper outlet for separating liquid from the gas sample;
a liquid collection chamber receiving liquid passed through said lower outlet of said inlet trap filter compartment; a low pressure port;
an outlet compartment interposed between said collection chamber and said low pressure port, said outlet compartment having an inlet communicated with said collection chamber and an outlet communicated with said low pressure port;
a second gas permeable, liquid impermeable filter element contained within said outlet compartment interposed between said inlet and said outlet of said outlet compartment; and a baffle located within said collection chamber, said baffle extending downwardly from a lower surface of said liquid trap filter chamber, located between said lower outlet of said inlet compartment and said inlet of said outlet compartment, providing a barrier between said lower outlet of said inlet compartment and said inlet of said outlet compartment along said lower surface of said liquid collection chamber.
15. A liquid separator for a gas analyzer, said liquid separator comprising:
a closed container including a sample inlet port having an axis, a sample outlet port, and a low pressure port; said container defining a liquid collection chamber and a liquid trap filter chamber, said liquid trap filter chamber including an inlet compartment interposed between said sample inlet port and said sample outlet port for receiving a gas sample introduced into said sample inlet port, said inlet compartment having an upper outlet communicated with said sample outlet port and a lower outlet communicated with said liquid collection chamber; said inlet compartment having an inner wall extending perpendicular to the axis of said sample inlet port, said inner wall defining said upper outlet, and a liquid trap filter element contained in said inlet compartment, interposed between said sample inlet port and said sample outlet port, for separating liquid from the gas sample, said filter element being a generally flat membrane member extending generally parallel to said inner wall of said inlet compartment and overlying said inner wall of said inlet compartment, interposed between said sample inlet port and said upper outlet; and a support on said inner wall, supporting a center portion of said flat membrane member within said inlet compartment, spaced apart from said inner wall and providing an active area through which gas can flow;
liquid separated from the gas sample passing through said lower outlet to said collection chamber.
16. The liquid separator according to claim 15, wherein inner wall of said inlet compartment is interposed between said filter element and said sample outlet port, said inner wall defining said upper outlet, said filter element overlying said inner wall.
17. The liquid separator according to claim 15, wherein said liquid trap filter chamber includes a cover which encloses said filter element within said inlet compartment.
18. The liquid separator according to claim 17, wherein said cover includes at least one concave filter engaging surface engaging said filter element to trap said filter element between said cover and said inner wall.
19. The liquid separator according to claim 15, wherein said filter element comprises a membrane bearing a polytetrafluoroethylene laminate.
20. The liquid separator according to claim 15, wherein said liquid trap filter chamber includes an outlet compartment interposed between said collection chamber and said low pressure port, said outlet compartment having an inner wall defining said upper outlet, said outlet compartment having an inlet communicated with said collection chamber and an outlet communicated with said low pressure port, and a further liquid trap filter element contained in said outlet compartment, said further filter element being a generally flat member overlying said inner wall of said outlet compartment, interposed between said inlet and said outlet of said outlet compartment.
21. The liquid separator according to claim 20, wherein inner wall of said outlet compartment defines said outlet port of said outlet compartment.
22. The liquid separator according to claim 20, wherein said further filter element comprises a membrane bearing a polytetrafluoroethylene laminate.
23. The liquid separator according to claim 17, and including a self-sealing filter in at least one of said sample outlet port and said low pressure port.
24. A liquid separator for a gas analyzer, said liquid separator comprising:
a sample inlet port having an axis;
a sample outlet port;

an inlet compartment having an inlet in fluid communication with said sample inlet port for receiving a gas sample introduced into said sample inlet port, said inlet compartment having an upper outlet communicated with said sample outlet port, said inlet compartment having an inner wall extending perpendicular to the axis of said sample inlet port, said inner wall defining said upper outlet;
a liquid collection chamber in fluid communication with said inlet compartment for receiving liquid from said inlet compartment;
a low pressure port;
an outlet compartment interposed between said collection chamber and said low pressure port, said outlet compartment having an inlet communicated with said collection chamber and an outlet communicated with said low pressure port; and a gas permeable, liquid impermeable filter element contained in said inlet compartment, said filter element being a generally flat membrane member extending generally parallel to said inner wall of said inlet compartment and overlying said inner wall, interposed between said inlet and outlet of said inlet compartment for substantially preventing flow of liquid while allowing the flow of gas from said inlet to said outlet of said inlet compartment;
a support on said inner wall of said inlet compartment supporting a center portion of said flat membrane member within said inlet compartment, spaced apart from said inner wall and providing an active area through which gas can flow.
25. The liquid separator according to claim 24, and including a further filter element contained in said outlet compartment interposed between said inlet of said outlet compartment and said outlet of said outlet compartment for substantially preventing the passage of liquid through said outlet compartment to said low pressure port.
26. The liquid separator according to claim 24, and including a cover separating said inlet and outlet compartments.
27. A liquid separator according to claim 24, wherein said filter element comprises a membrane bearing a polytetrafluoroethylene laminate.
28. The liquid separator according to claim 24, including a self-sealing filter in at least one of said sample outlet port and said low pressure port.
29. A liquid separator for a gas analyzer, said liquid separator comprising:
a sample inlet port having an axis;
a sample outlet port;
a liquid collection chamber;
an inlet compartment for receiving a gas sample introduced into said sample inlet port, said inlet compartment having an upper outlet communicated with said sample outlet port and a lower outlet communicated with said liquid collection chamber, said inlet compartment having an inner wall extending perpendicular to the axis of said sample inlet port, said inner wall of said inlet compartment defining said upper outlet;
a first gas permeable, liquid impermeable filter element contained in said inlet compartment interposed between said sample inlet port and said upper outlet for separating liquid from the gas sample, said first filter element being a first generally flat membrane member extending generally parallel to said inner wall of said inlet compartment and overlying said inner wall;
a support on said inner wall of said inlet compartment, supporting a center portion of said first flat membrane member within said inlet compartments, spaced apart from said inner wall of said inlet compartment and providing an active area through which gas can flow;
said liquid collection chamber receiving liquid passed through said lower outlet of said inlet trap filter compartment;

a low pressure port;

an outlet compartment interposed between said liquid collection chamber and said low pressure port, said outlet compartment having an inlet communicated with said collection chamber and an outlet communicated with said low pressure port, said outlet compartment having an inner wall defining said outlet of said outlet compartment;
a second gas permeable, liquid impermeable filter element contained in said outlet compartment interposed between said inlet and said outlet of said outlet compartment, said second filter element being a second generally flat membrane member extending generally parallel to said inner wall of said outlet compartment and overlying said inner wall of said outlet compartment; and a support on said inner wall of said outlet compartment, supporting a center portion of said second filter element within said outlet compartments, spaced apart from said inner wall of said outlet compartment and providing an active area through which gas can flow.
CA2463057A 2001-10-19 2002-10-17 Gas/liquid separator including a liquid trap filter Expired - Fee Related CA2463057C (en)

Applications Claiming Priority (3)

Application Number Priority Date Filing Date Title
US10/045,415 2001-10-19
US10/045,415 US20030075049A1 (en) 2001-10-19 2001-10-19 Gas/liquid separator including a liquid trap filter
PCT/US2002/033092 WO2003035224A1 (en) 2001-10-19 2002-10-17 Gas/liquid separator including a liquid trap filter

Publications (2)

Publication Number Publication Date
CA2463057A1 CA2463057A1 (en) 2003-05-01
CA2463057C true CA2463057C (en) 2010-12-21

Family

ID=21937747

Family Applications (1)

Application Number Title Priority Date Filing Date
CA2463057A Expired - Fee Related CA2463057C (en) 2001-10-19 2002-10-17 Gas/liquid separator including a liquid trap filter

Country Status (13)

Country Link
US (4) US20030075049A1 (en)
EP (1) EP1441838B1 (en)
JP (1) JP4080428B2 (en)
AT (1) ATE471201T1 (en)
AU (1) AU2002347917B2 (en)
CA (1) CA2463057C (en)
CY (1) CY1110776T1 (en)
DE (1) DE60236750D1 (en)
DK (1) DK1441838T3 (en)
ES (1) ES2347538T3 (en)
MX (1) MXPA04003645A (en)
PT (1) PT1441838E (en)
WO (1) WO2003035224A1 (en)

Families Citing this family (31)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE60104551T2 (en) * 2001-10-08 2004-12-23 Instrumentarium Corp. Water separator for a gas analyzer
US20030075049A1 (en) * 2001-10-19 2003-04-24 Larsen Michael T. Gas/liquid separator including a liquid trap filter
JP2006522729A (en) * 2003-04-11 2006-10-05 バイオテル・カンパニー・リミテッド Oxygen rich gas supply device
US7559911B2 (en) 2003-09-05 2009-07-14 Gambro Lundia Ab Blood chamber for extracorporeal blood circuits and a process for manufacturing the blood chamber
US8333707B2 (en) * 2004-09-03 2012-12-18 Koninklijke Philips Electronics N.V. Patient monitor with fluid port protection
US7424889B2 (en) * 2005-04-13 2008-09-16 The General Electric Company Carbon dioxide absorber canister attachment
US8084154B2 (en) * 2007-02-08 2011-12-27 Karl Frederick Scheucher Battery pack safety and thermal management apparatus and method
US20090120214A1 (en) * 2007-11-12 2009-05-14 Gross Karl J Liquid Sample Holder
DE102009024040B4 (en) * 2009-06-05 2020-09-10 Drägerwerk AG & Co. KGaA Water trap with improved protective function
US9211182B2 (en) 2009-11-20 2015-12-15 E2, Llc Anti-reflux devices and methods for treating gastro-esophageal reflux disease (GERD)
JP5206997B2 (en) * 2010-01-28 2013-06-12 日本光電工業株式会社 Gas analyzer
CA2790706A1 (en) * 2010-02-22 2011-08-25 Criticare Systems, Inc. Inline water trap
EP2457506B1 (en) * 2010-11-26 2015-09-02 General Electric Company Liquid separation apparatus for removing a liquid from a respiratory gas and respiratory gas analyzing system
JP2012163544A (en) 2011-01-21 2012-08-30 Nippon Koden Corp Liquid separation apparatus and respiratory gas measuring apparatus
CN102221418B (en) * 2011-06-03 2012-07-04 华中科技大学 System for measuring water-wind counter flow humid air parameter
US8608816B2 (en) * 2012-01-10 2013-12-17 Buffalo Filter Llc Fluid filtration device and system
US9415160B2 (en) * 2012-05-21 2016-08-16 Buffalo Filter Llc Fluid filtration device and system
JP5956279B2 (en) * 2012-08-08 2016-07-27 株式会社日立産機システム Gas-liquid separator and ink jet recording apparatus provided with the same
CN103170189B (en) * 2013-03-07 2016-01-20 南京熊猫电子制造有限公司 Inert gas-shielded arc welding gas cleaning plant
US9428043B2 (en) 2013-11-07 2016-08-30 Fca Us Llc Liquid vapor separator drain valve
CN104491997B (en) * 2014-12-10 2017-11-17 郑运婷 PM2.5 automatic disinfection mouth masks
CN104491998A (en) * 2014-12-10 2015-04-08 郑运婷 Application method of PM2.5 (particulate matter 2.5) disinfection mask
CN105784600A (en) * 2014-12-17 2016-07-20 浙江微兰环境科技有限公司 Spectral absorption water quality monitoring apparatus
CN105013253A (en) * 2015-07-09 2015-11-04 重庆科技学院 Defogging filter separator
EP4043084A1 (en) * 2016-04-01 2022-08-17 Mallinckrodt Pharmaceuticals Ireland Limited Apparatus for filtering liquid particles from inspiratory gas flow of a patient breathing circuit affiliated with a ventilator and/or nitric oxide delivery system
FI3954421T3 (en) * 2016-05-03 2024-02-21 Mallinckrodt Pharmaceuticals Ireland Ltd Apparatus for detecting liquid level in a trap bowl
US10758855B2 (en) * 2017-11-29 2020-09-01 Megadyne Medical Products, Inc. Smoke evacuation system fluid trap
US11234754B2 (en) 2017-11-29 2022-02-01 Megadyne Medical Products, Inc. Smoke evacuation device
US10758856B2 (en) 2017-11-29 2020-09-01 Megadyne Medical Products, Inc. Filter medium compression system for smoke evacuation
USD912762S1 (en) 2017-11-29 2021-03-09 Megadyne Medical Products, Inc. Fluid trap
US11439785B2 (en) * 2018-12-28 2022-09-13 General Electric Company Methods and systems for removing liquid from a sample

Family Cites Families (20)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US123456A (en) * 1872-02-06 Improvement in blackboards
US4465485A (en) * 1981-03-06 1984-08-14 Becton, Dickinson And Company Suction canister with unitary shut-off valve and filter features
US4546778A (en) 1983-05-26 1985-10-15 Critikon, Inc. Moisture detector for respiratory monitoring systems
US4579568A (en) 1983-10-11 1986-04-01 Biochem International Inc. Gas analyzer separator
US4713095A (en) 1986-10-16 1987-12-15 Criticare Systems, Inc. Liquid separator for gas analyzer
FI76488C (en) * 1987-05-05 1988-11-10 Instrumentarium Oy ROERVATTENAVSKILJARE TILL EN GASANALYSATOR.
US4921642A (en) * 1987-12-03 1990-05-01 Puritan-Bennett Corporation Humidifier module for use in a gas humidification assembly
US5233996A (en) * 1988-05-20 1993-08-10 Boc Health Care, Inc. Patient interfacing system and method to prevent water contamination
US4924860A (en) * 1988-08-26 1990-05-15 Criticare Systems, Inc. Water trap and associated control system
US4985055A (en) 1988-12-19 1991-01-15 The Boc Group, Inc. Liquid/gas separation device
US5049170A (en) * 1990-09-11 1991-09-17 Andros Incorporated Filter assembly for gas analyzer
FI92138C (en) 1991-12-20 1994-10-10 Instrumentarium Oy Apparatus for separating a liquid component from the breathing air which is led to an analysis unit
US5368021A (en) 1992-04-09 1994-11-29 Criticare Systems, Inc. System for handling and monitoring respiratory waste streams
JPH0972830A (en) 1995-09-07 1997-03-18 Suzuki Motor Corp Exhalation concentrating and capturing apparatus
US5826575A (en) 1997-03-13 1998-10-27 Nellcor Puritan Bennett, Incorporated Exhalation condensate collection system for a patient ventilator
SE9801532D0 (en) * 1998-04-30 1998-04-30 Aerocrine Ab Device for the collection of exhaled air samples
SE9803047D0 (en) 1998-09-09 1998-09-09 Siemens Elema Ab Moisture and bacterial barrier for medical components
DE10014829B4 (en) * 2000-03-24 2006-04-27 Koninklijke Philips Electronics N.V. Water trap, in particular for respiratory gas monitoring devices
US20030075049A1 (en) * 2001-10-19 2003-04-24 Larsen Michael T. Gas/liquid separator including a liquid trap filter
US6783573B2 (en) * 2002-09-27 2004-08-31 Welch Allyn Protocol, Inc. Gas sampling system

Also Published As

Publication number Publication date
ATE471201T1 (en) 2010-07-15
US20040089155A1 (en) 2004-05-13
DK1441838T3 (en) 2010-08-02
JP4080428B2 (en) 2008-04-23
CA2463057A1 (en) 2003-05-01
US20030075049A1 (en) 2003-04-24
PT1441838E (en) 2010-09-14
US20090013873A1 (en) 2009-01-15
EP1441838A1 (en) 2004-08-04
EP1441838B1 (en) 2010-06-16
US7819954B2 (en) 2010-10-26
US20050263004A1 (en) 2005-12-01
AU2002347917B2 (en) 2009-01-15
CY1110776T1 (en) 2015-06-10
JP2005507073A (en) 2005-03-10
DE60236750D1 (en) 2010-07-29
MXPA04003645A (en) 2005-11-08
WO2003035224A1 (en) 2003-05-01
ES2347538T3 (en) 2010-11-02
US7402197B2 (en) 2008-07-22
EP1441838A4 (en) 2006-07-05
US6923847B2 (en) 2005-08-02

Similar Documents

Publication Publication Date Title
US7402197B2 (en) Gas/liquid separator including a liquid trap filter
AU2002347917A1 (en) Gas/liquid separator including a liquid trap filter
US4487606A (en) Suction canister with shut-off valve and smoke filter
US4465485A (en) Suction canister with unitary shut-off valve and filter features
US5238655A (en) Apparatus for collecting blood sample
US5472605A (en) Filtration device useable for removal of leukocytes and other blood components
US4459139A (en) Disposable filter device and liquid aspirating system incorporating same
JPH09500809A (en) Self-prepared filter device
JP2005507073A5 (en)
US20010045387A1 (en) Plasma-or serum-collecting device
US6117214A (en) Water trap for a sample gas flow
JPH03209146A (en) Throw-away concentrator for use in multiple concentration
CN108547805B (en) Oil tank breather and oil tank
US6773493B2 (en) Water separator for a gas analyzer
JP3664286B2 (en) Blood filtration unit
JPH0663132A (en) Liquid processor
JP3963563B2 (en) Blood collection tube
JPS6015558Y2 (en) plasma separator
CA2095370C (en) Apparatus for collecting blood sample
JPH0730084Y2 (en) filter
AU708609B2 (en) A filtration device usable for removal of leukocytes and other blood components

Legal Events

Date Code Title Description
EEER Examination request
MKLA Lapsed

Effective date: 20171017

MKLA Lapsed

Effective date: 20171017