IP Library Granted Patent US 10,310,100
Granted Patent B2
US 10,310,100 · App. 15/633,185 · Granted Jun 4, 2019

Radiation detector

Inventor: Rusi P. Taleyarkhan (Lafayette, IN)
Assignee: Purdue Research Foundation
G01T1/18G01T1/178G01T5/06H01J47/001
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 10,310,100
App. No.
15/633,185
Granted
Jun 4, 2019
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. When the fluid is tensioned the presence of radon can be determined by the formation of bubbles which give off detectable signals including a shock wave, light-beam cutoff, or a light burst, any of which can be measured to derive information on radon and progeny radioactivity levels in air or water.

Claims (22)

1. A method for detecting radon comprising:

obtaining a radon detecting device having a chamber holding a fluid;

placing a radon contaminated material in contact with the fluid by bubbling radon contaminated air thru a second fluid and mixing the second fluid with the chamber fluid, or thru the chamber fluid;

placing the fluid in a tensioned metastable state using an acoustic sound at alpha particle detection tension so that cavitation events occur in the fluid when alpha particles are present, and detecting radon.

2. The method for detecting radon of claim 1 wherein the chamber fluid is degassed.

3. The method for detecting radon of claim 1 further comprising placing the detecting device in a space in which radon detection is needed.

4. The method for detecting radon of claim 1 further comprising placing the detecting device in a laboratory space and detecting radon.

5. The method for detecting radon of claim 1 further comprising placing the detecting device in a dwelling in which radon detection is needed.

6. A radon detecting device comprising a chamber holding a fluid in a tensioned metastable state, wherein the chamber contains a fluid at between about 4 to about 9 barr of pressure at an alpha particle detection tension so that cavitation events occur in the fluid when alpha particles are present, and having a radon contaminated material in contact with the chamber fluid.

7. The detecting device of claim 6 wherein the device can measure radon at concentrations in the range of at least about 0.1 pCi/L in air and at and about 300 pCi/L in water.

8. The detecting device of claim 6 wherein the chamber fluid includes acetone and isopentane.

9. The detecting device of claim 6 wherein the chamber fluid includes acetone, isopentane and water.

10. A method for detecting radon comprising:

obtaining a radon detecting device having a chamber holding a fluid;

filtering a radon contaminated material;

placing the radon contaminated material in contact with the fluid;

placing the fluid in a tensioned metastable state using centrifugal motion at alpha particle detection tension so that cavitation events occur in the fluid when alpha particles are present; and detecting radon.

11. The method for detecting radon of claim 10 further comprising placing a radon contaminated material in contact with the chamber fluid by allowing radon contaminated air to diffuse into the chamber fluid.

12. The method for detecting radon of claim 10 further comprising filtering radon contaminated fluids prior to adding them to the chamber fluid and removing radon progeny.

13. The method for detecting radon of claim 10 further comprising precompressing the chamber fluid.

14. The method for detecting radon of claim 10 further comprising cooling the chamber fluid and bubbling ambient air through the chamber fluid to collect radon.

15. The method for detecting radon of claim 10 further comprising cooling the chamber fluid and sparging ambient air through the chamber fluid to collect radon.

Assignments (1)
CONFIRMATORY LICENSE Recorded May 28, 2019
From: PURDUE UNIVERSITY
To: UNITED STATES DEPARTMENT OF ENERGY
Reel/Frame 049299/0265 →
Continuity (3)
Continuation 14419808
Provisional Application 61679775 · Aug 5, 2012
Related Publication 20180348379A1 · Dec 6, 2018