IP Library Granted Patent US 9,689,995
Granted Patent B2
US 9,689,995 · App. 14/419,808 · Granted Jun 27, 2017

Radiation detector

Inventor: Rusi P. Taleyarkhan (Lafayette, IN)
Assignee: Purdue Research Foundation
G01T1/18G01T1/178G01T5/06H01J47/001
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Quick Facts
Patent No.
US 9,689,995
App. No.
14/419,808
Granted
Jun 27, 2017
Kind
B2
Abstract

Alpha particle detecting devices are disclosed that have a chamber that can hold a fluid in a tensioned metastable state. The chamber is tuned with a suitable fluid and tension such that alpha emitting materials such as radon and one or more of its decay products can be detected. The devices can be portable and can be placed in areas, such as rooms in dwellings or laboratories and used to measure radon in these areas, in situ and in real time. The disclosed detectors can detect radon at and below 4 pCi/L in air; also, at and below 4,000 pCi/L or 300 pCi/L in water.

Claims (19)

1. A radon detecting device comprising a chamber holding a fluid in a tensioned metastable state wherein the chamber contains the fluid alpha particle detection tension so that cavitation events occur in the fluid when alpha particles are present, wherein a radon contaminated material is placed in contact with the fluid.

2. The detecting device of claim 1 wherein the device is in a closed space and can directly measure alpha particles in situ.

3. The detecting device of claim 1 wherein the device is portable.

4. The detecting device of claim 1 wherein the device can measure radon at concentrations in the range of about 0.1 to about 4 pCi/L in air and at and below 4,000 pCi/L or 300 pCi/L in water.

5. The detecting device of claim 1 wherein the pressure in the fluid can be generated acoustically.

6. The detecting device of claim 1 wherein the pressure in the fluid can be generated with centrifugal force.

7. The detecting device of claim 1 wherein the chamber comprises acetone.

8. The detecting device of claim 1 wherein the chamber comprises hexane.

9. The detecting device of claim 1 wherein the chamber comprises ethanol.

10. The detecting device of claim 1 wherein the chamber comprises methanol.

11. The detecting device of claim 1 wherein the chamber comprises isopentane.

12. The detecting device of claim 1 wherein the fluid comprises a mixture of organic fluids.

13. The detecting device of claim 1 wherein the device further comprises a check valve positioned between a meniscus and centerline to allow passive accumulation of radon from a surrounding air environment.

14. The detecting device of claim 1 wherein the chamber comprises a liquid containing alpha particles.

15. The detecting device of claim 1 further comprising a detector in audible communication with the fluid for detecting audible signals in the fluid.

16. The detecting device of claim 1 further comprising a light detector that is capable of detecting light signals in the fluid.

17. The detecting device of claim 1 comprising a timer to detect the amount of time to cavitation events after the fluid reaches alpha particle detection tension.

18. A method for detecting radon comprising placing the detecting device of claim 1 in a space in which radon detection is needed, and detecting radon.

19. A system for detecting alpha particles comprising the radon detecting device of claim 1 , a tensioning mechanism, and a detection system.

Assignments (2)
CONFIRMATORY LICENSE Recorded May 28, 2019
From: PURDUE UNIVERSITY
To: UNITED STATES DEPARTMENT OF ENERGY
Reel/Frame 049299/0263 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 10, 2015
From: TALEYARKHAN, RUSI
To: PURDUE RESEARCH FOUNDATION
Reel/Frame 035121/0946 →
Continuity (2)
Provisional Application 61679775 · Aug 5, 2012
Related Publication 20150212212A1 · Jul 30, 2015