IP Library Granted Patent US 7,513,940
Granted Patent B2
US 7,513,940 · App. 11/223,805 · Granted Apr 7, 2009

Air sampling apparatus and method

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Quick Facts
Patent No.
US 7,513,940
App. No.
11/223,805
Granted
Apr 7, 2009
Kind
B2
Abstract

A sampling system includes a collection module including a gas handler, and a flow controller in communication with the gas handler of the collection module. The flow controller controls the gas handler to move a selected volume of gas through the collection module.

Claims (89)

1. A sampling system comprising:

a collection module configured to hold a liquid solvent;

a gas handler coupled to the collection module, the gas handler having a fan positioned proximate a level of the liquid solvent and wherein operation of the fan moves the liquid solvent within the collection module and moves a selected volume of gas through the collection module;

and

a flow controller in communication with the gas handler of the collection module, the flow controller to collect a sample in the liquid solvent by controlling the gas handler.

2. The sampling system of claim 1 wherein the collection module further comprises a collection bowl, wherein the gas handler is positioned proximate the collection bowl.

3. The sampling system of claim 1 wherein the collection module further comprises:

a collection bowl having an opening therein:

a tubular gas inlet that passes through the opening, the tubular gas inlet including:

a first end terminating outside of the collection bowl; and

a second end terminating inside of the collection bowl, the second end terminating between the top and bottom of the collection bowl.

4. A sampling system comprising:

a collection module including a gas handler; and

a flow controller in communication with the gas handler of the collection module, the flow controller controlling the gas handler to move a selected volume of gas through the collection module; and

wherein the collection module further comprises:

a collection bowl having an opening therein:

a tubular gas inlet that passes through the opening, the tubular gas inlet including:

a first end terminating outside of the collection bowl; and

a second end terminating inside of the collection bowl, the second end terminating between the top and bottom of the collection bowl; and

wherein a portion of the gas handler is positioned about the circumference of the second end of the tubular gas inlet.

5. The sampling system of claim 3 wherein the gas handler is positioned to direct a portion of the gas passing through the tubular inlet toward a surface of the collection bowl.

6. A sampling system comprising:

a collection module including a gas handler; and

a flow controller in communication with the gas handler of the collection module, the flow controller controlling the gas handler to move a selected volume of gas through the collection module; and

wherein the collection module further comprises:

a collection bowl having an opening therein:

a tubular gas inlet that passes through the opening, the tubular gas inlet including:

a first end terminating outside of the collection bowl; and

a second end terminating inside of the collection bowl, the second end terminating between the top and bottom of the collection bowl; and

wherein the collection bowl and tubular gas inlet are joined to allow the collection bowl to hold a liquid.

7. The sampling system of claim 3 wherein the collection bowl includes a concave surface.

8. The sampling system of claim 3 further comprising a frame attached to the collection bowl, the gas mover attached to the frame.

9. The sampling system of claim 1 wherein the gas handler includes a squirrel cage fan.

10. The sampling system of claim 1 wherein flow controller includes a feedback control loop.

11. The sampling system of claim 1 further comprising:

a microprocessor; and

memory in communication with the microprocessor:

a lookup table stored within the memory, wherein the microprocessor refers to the lookup table to control the gas handler.

12. A sampling system comprising:

a collection module comprising:

a concave collector bowl having an air inlet terminating within the collector bowl and configured to hold a liquid solvent;

a motor attached to the collector bowl;

a squirrel cage fan coupled to the motor, the squirrel cage fan positioned proximate a level of liquid solvent within the collector bowl and near the air inlet; and

a flow controller in communication with the motor, the flow controller controlling the motor to move the liquid solvent within the collection module and to move a selected volume of gas through the collection module.

13. The sampling system of claim 12 wherein the flow controller further comprises a microprocessor, the microprocessor including an instruction set for controlling the motor and attached squirrel cage fan.

14. A sampling system comprising:

a collection module further comprising:

a concave collector bowl having an air inlet terminating within the collector bowl;

a frame attached to the collector bowl;

a motor attached to the frame;

a squirrel cage fan coupled to the motor, the squirrel cage fan positioned within the collector bowl near the one end of the air inlet terminating within the bowl; and

a flow controller in communication with the motor, the flow controller controlling the motor and attached squirrel cage fan to move a selected volume of gas through the collection module; and

wherein the flow controller further comprises:

a microprocessor, the microprocessor including an instruction set for controlling the motor and attached squirrel cage fan; and

a memory unit in communication with the microprocessor, the memory unit including a lookup table relating a volume of gas moved by the squirrel cage fan to the revolutions per minute of the squirrel cage fan.

15. A sampling system comprising:

a collection module further comprising:

a concave collector bowl having an air inlet terminating within the collector bowl;

a frame attached to the collector bowl;

a motor attached to the frame;

a squirrel cage fan coupled to the motor, the squirrel cage fan positioned within the collector bowl near the one end of the air inlet terminating within the bowl; and

a flow controller in communication with the motor, the flow controller controlling the motor and attached squirrel cage fan to move a selected volume of gas through the collection module; and

wherein the sampling system further comprises:

a gas volume measurement device; and

wherein the flow controller further comprises a feedback control system for controlling the motor and attached squirrel cage fan in response to an input from the gas volume measurement device.

16. The sampling system of claim 15 wherein the gas volume measurement device is an impeller positioned in a gas outlet of the sampling system.

17. A sampling system comprising:

a collection module further comprising:

a concave collector bowl having an air inlet terminating within the collector bowl;

a frame attached to the collector bowl;

a motor attached to the frame;

a squirrel cage fan coupled to the motor, the squirrel cage fan positioned within the collector bowl near the one end of the air inlet terminating within the bowl; and

a flow controller in communication with the motor, the flow controller controlling the motor and attached squirrel cage fan to move a selected volume of gas through the collection module; and

wherein the sampling system further comprises:

a differential pressure sensor; and

wherein the flow controller further comprises a feedback control system for controlling the motor and attached squirrel cage fan in response to an input from the differential pressure sensor.

18. The sampling system of claim 3 wherein a portion of the gas handler is positioned about the circumference of the second end of the tubular gas inlet.

19. The sampling system of claim 3 wherein the collection bowl and tubular gas inlet are joined to allow the collection bowl to hold the liquid solvent.

20. The sampling system of claim 1 wherein the liquid solvent includes at least one of de-ionized water, a phosphate buffer solution, a solvent formulated to dissolve a toxic industrial chemical (TIC), and a solvent formulated to preserve a biological agent.

21. The sampling system of claim 12 wherein the flow controller further comprises:

a microprocessor, the microprocessor including an instruction set for controlling the motor and attached squirrel cage fan; and

a memory unit in communication with the microprocessor, the memory unit including a lookup table relating a volume of gas moved by the squirrel cage fan to the revolutions per minute of the squirrel cage fan.

22. The sampling system of claim 12 wherein the sampling system further comprises:

a gas volume measurement device; and

wherein the flow controller further comprises a feedback control system for controlling the motor and attached squirrel cage fan in response to an input from the gas volume measurement device.

23. The sampling system of claim 22 wherein the gas volume measurement device is an impeller positioned in a gas outlet of the sampling system.

24. The sampling system of claim 12 wherein the sampling system further comprises:

a differential pressure sensor; and

wherein the flow controller further comprises a feedback control system for controlling the motor and attached squirrel cage fan in response to an input from the differential pressure sensor.

Assignments (3)
RELEASE OF LIEN IN INTELLECTUAL PROPERTY Recorded Jul 26, 2011
From: LB I GROUP INC.
To: ORTHOVITA, INC. (FOR ITSELF AND AS SUCCESSOR BY MERGER TO VITA LICENSING, INC. AND PARTISYN CORP.); ORTHOVITA INTERNATIONAL SERVICES, INC.; VITA SPECIAL PURPOSE CORP.
Reel/Frame 026648/0422 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 18, 2011
From: RURAL TECHNOLOGIES, INC.
To: HEALTH DIAGNOSTICS TOOLS, LLC
Reel/Frame 026607/0542 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 3, 2006
From: MILEHAM, RUSSELL D.
To: RURAL TECHNOLOGIES, INC.
Reel/Frame 017569/0355 →