IP Library Granted Patent US 8,372,186
Granted Patent B2
US 8,372,186 · App. 12/541,384 · Granted Feb 12, 2013

Ductless fume hood gas monitoring and detection system

Inventor: Gregory J. Dobbyn (Raleigh, NC)
Assignee: Gregory J. Dobbyn
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Quick Facts
Patent No.
US 8,372,186
App. No.
12/541,384
Granted
Feb 12, 2013
Kind
B2
Abstract

A ductless fume hood suitable for the removal of various chemical materials including toxic and non-toxic gases, vapors, particles, dust and unpleasant odors from a fluid stream. The ductless fume hood uses electronic devices and software to enable real time monitoring of gas levels in parts per million.

Claims (29)

1. A ductless fume hood comprising:

a hood enclosure comprising a slideable window and a baffle, wherein the slideable window is open to a room for ingress of room air into the hood enclosure for combination with contaminated air generated in the hood enclosure to form an effluent stream;

optionally at least one high efficiency particulate air (HEPA) filter;

at least one chemical removal filter;

a detection system comprising a photo-ionization detector (PID);

an exhaust stack; and

a motor, wherein the motor draws the effluent stream serially through the baffle, the optional at least one HEPA filter and the at least one chemical filter for egress at the exhaust stack,

wherein the detection system comprises (i) a first gas valve that is positioned downstream of and communicatively connected to at least one of exhaust gas, interfilter gas, reference gas, room air and contaminant-free air, and (ii) a gas metering pump and a gas detection chamber communicatively connected and positioned downstream of the first gas valve.

2. The ductless fume hood of claim 1 , wherein the exhaust stack emits substantially clean air directly into the room.

3. The ductless fume hood of claim 1 , wherein the motor is positioned downstream of the optional HEPA filter and the at least one chemical filter and upstream of the exhaust stack.

4. The ductless fume hood of claim 1 , further comprising an operating system.

5. The ductless fume hood of claim 1 wherein the PID is communicatively connected to the gas detection chamber.

6. The ductless fume hood of claim 1 , further comprising a metal oxide sensor and an acid array sensor communicatively connected to the gas detection chamber.

7. The ductless fume hood of claim 1 , wherein the at least one chemical removal filter comprises at least sampling tube positioned therein.

8. The ductless fume hood of claim 7 , wherein the at least one sampling tube is communicatively connected to the first valve of the detection system.

9. The ductless fume hood of claim 1 , wherein the at least one chemical removal filter comprises at least two sampling tubes positioned in series in the direction of air flow.

10. The ductless fume hood of claim 9 , wherein the at least two sampling tubes are communicatively connected to a second valve which is communicatively connected to the first valve.

11. A process comprising removing at least one contaminant species from an effluent stream using the ductless fume hood of claim 1 .

12. An interfilter monitoring system comprising:

a filter enclosure;

at least one adsorbent material located in said filter enclosure;

at least one sampling tube located within the filter enclosure, wherein said at least one sampling tube or gap is communicatively connected to a second valve which is communicatively connected to a detection system, wherein the detection system comprises (i) a first gas valve that is positioned downstream of and communicatively connected to the second valve, (ii) a gas metering pump and a gas detection chamber communicatively connected and positioned downstream of the first gas valve, and (iii) a photo-ionization detector (PID).

13. The interfilter monitoring system of claim 12 , wherein the adsorbent material comprises at least one material selected from the group consisting of activated carbon, silica, alumina, potassium permanganate, and combinations thereof.

14. The interfilter monitoring system of claim 12 , wherein the adsorbent material comprises activated carbon and silica.

15. The interfilter monitoring system of claim 12 , comprising two, three, four, or five sampling tubes or gaps located within the filter enclosure in series in the direction of air flow.

16. A process of monitoring for the presence of at least one contaminant species in a gas sample withdrawn from a chemical filter, said process comprising:

positioning at least one sampling tube within a filter enclosure, wherein said filter enclosure includes at least one adsorbent material, and said at least one sampling tube or gap is communicatively connected to a detection system;

withdrawing the gas sample from within the filter enclosure and moving said sample to the detector;

measuring for the presence of the at least one contaminant species in the gas sample using the detector, wherein the detection system comprises (i) a first gas valve that is positioned downstream of and communicatively connected to the second valve, (ii) a gas metering pump and a gas detection chamber communicatively connected and positioned downstream of the first gas valve, and (iii) a photo-ionization detector (PID).

Continuity (1)
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