IP Library Granted Patent US 8,847,608
Granted Patent B2
US 8,847,608 · App. 13/234,433 · Granted Sep 30, 2014

System and method for a nondestructive on-line testing of samples

Inventor: Uri Rapoport (Moshav Ben Shemen, IL)
G01N24/085
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Quick Facts
Patent No.
US 8,847,608
App. No.
13/234,433
Granted
Sep 30, 2014
Kind
B2
Abstract

A non-destructive on-line system for detecting a presence of a material in a sample of a substance, including: an MRI device; a flow conduit encompassed by the tunable RF coil of the MRI device and having an input duct and an output duct; a flow of the sample through the flow conduit; a signal detector for detecting frequency-dependent output signals from the MRI device as a function of a frequency variation of the RF tunable coil within a frequency range of an RF resonant frequency of a standard sample of the substance, and a processing unit.

Claims (38)

1. A non-destructive on-line system for detecting a presence of a material a substance comprising:

an MRI device comprising a tunable RF coil and a signal detector, said signal detector is configured for detecting frequency-dependent output signals as a function of a frequency variation of the RF tunable coil within a frequency range of an RF resonant frequency of a standard sample of said substance;

a flow conduit encompassed by said tunable RF coil and having an input duct and an output duct to allow a flow of said substance therethrough; and

a processing unit,

wherein said processing unit is configured to:

receive said frequency-dependent output signals from said detector;

determine an impedance frequency variation from said frequency-dependent output signals and at least one operational parameter of the MRI device;

determine RF frequency variation of inductance and RF variation of reactance from said impedance frequency variation; and

compare at least one of the RF frequency variation of the inductance and the RF frequency variation of the electrical reactance with an RF frequency variation of a corresponding inductance or reactance of said standard sample of said substance such that said comparison determines said material content of said substance.

2. The non-destructive on-line method according to claim 1 , wherein said frequency range is approximately from said resonant frequency minus 100 MHz to said resonant frequency plus 100 MHz.

3. The non-destructive on-line method according to claim 1 , wherein said material comprises water.

4. The non-destructive on-line system according to claim 1 , wherein said output signal comprises either a voltage signal or an RF voltage signal.

5. The non-destructive on-line system according to claim 1 , wherein said processing unit is further configured to optimize a production process of said sample.

6. The system according to claim 1 , adapted to measure and control the sample undergoing a modification said modification is selected from the group consisting of a physical modification, biological modification, chemical modification and any combination thereof.

7. The non-destructive on-line system according to claim 1 , wherein said substance is selected from the group consisting of tomato puree, tomato ketchup, tomato paste, tomato sauce, tomato beverage, tomato soup, tomato concentrate, apple puree, apple paste, apple sauce, apple beverage, apple concentrate, potato puree, potato paste, potato sauce, potato beverage, potato concentrate.

8. The non-destructive on-line system according to claim 1 , adapted to measure and to control water pollution by at least one contaminant said at least one contaminant is selected from organic contaminants, inorganic contaminants and any combination thereof.

9. The non-destructive on-line system according to claim 1 , adapted to measure an acidity parameter in a food product.

10. The non-destructive on-line system according to claim 1 , wherein said substance is selected from the group consisting of water-miscible fluids, water-immiscible fluids, aggregated solutions, dispersions, emulsions, solution, slurry, polymer, solid and powder and any combination thereof.

11. The non-destructive on-line according to claim 1 , wherein said processor provides a Smith Chart of said impedance frequency variation as a function of said RF frequency and wherein said RF frequency variation of inductance and said RF variation of reactance are determined by use of said Smith Chart.

12. The non-destructive on-line system according to claim 1 , wherein said sample comprises either a fluid state or a solid state.

13. A non-destructive on-line method for detecting a material in a sample of a substance comprising:

providing an MRI device comprising a tunable RF coil;

providing a flow conduit encompassed by the tunable RF coil of said MRI device;

providing a flow of said sample through said flow conduit;

detecting frequency-dependent output signals from said MRI device as a function of a frequency variation of the RF tunable coil within a frequency range of an RF resonant frequency of a standard sample of said substance, and

determining an impedance frequency variation from said frequency-dependent output signals and at least one predetermined MRI operational parameter;

determining an RF frequency variation of inductance and/or reactance of said substance from said impedance frequency variation;

comparing said RF frequency variation of said inductance and/or reactance of said substance with an RF frequency variation of a corresponding inductance and/or reactance of the standard sample of said substance,

wherein said comparison determines said material content of said sample.

14. A non-destructive on-line system for detecting a presence of a material in a sample of a substance comprising:

an MRI device comprising a tunable RF coil and a signal detector, said signal detector is configured for detecting frequency-dependent output signals as a function of a frequency variation of the RF tunable coil within a frequency range of an RF resonant frequency of a standard sample of said substance;

a container encompassed by said tunable RF coil containing said sample of a substance; and

a processing unit,

wherein said processing unit is configured to:

receive said frequency-dependent output signals from said detector;

determine an impedance frequency variation from said frequency-dependent output signals and at least one operational parameter of the MRI device;

determine RF frequency variation of inductance and RF variation of reactance from said impedance frequency variation; and

compare at least one of the RF frequency variation of the inductance and the RF frequency variation of the electrical reactance with an RF frequency variation of a corresponding inductance or reactance of said standard sample of said substance such that said comparison determines said material content of said sample of a substance.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 20, 2016
From: RAPOPORT, URI
To: ASPECT AI LTD.
Reel/Frame 039794/0168 →
Continuity (3)
Continuation In Part 12377980
Provisional Application 60838887 · Aug 21, 2006
Related Publication 20120038371A1 · Feb 16, 2012