IP Library Granted Patent US 9,496,059
Granted Patent B2
US 9,496,059 · App. 14/707,693 · Granted Nov 15, 2016

Method for storing radiocontaminated waste matter and container therefor

Inventor: Ai Van Tran (Fujinomiya, JP)
Assignee: CORELEX SAN-EI CO., LTD.
G21F5/005G21F1/045
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Quick Facts
Patent No.
US 9,496,059
App. No.
14/707,693
Granted
Nov 15, 2016
Kind
B2
Abstract

A method for securely and safely storing radiocontaminated waste matter and a container therefor are provided. Radiocontaminated waste matter and PSC are mixed and then retained and stored in a tetragonal cylindrical container tank 1 made of steel sheet, concrete, or PSC-containing concrete, so that the spatial gamma radiation dosage of the environment around the tank 1 becomes about the same as that of an environment or place which receives no fall-out radioactive substances. When a mixture of radiocontaminated waste matter and PSC is ashed, and the ash thus obtained is again mixed with PSC, and then loaded and stored in said container tank, the spatial gamma radiation dosage around said container tank is to be similar to that of an environment or place which receives no fall-out radioactive substances, and simultaneously both 134 Cs and 137 Cs are decreased, and as a result radiocontaminated waste matter can be securely and safely loaded and stored for a long-period of time.

Claims (19)

1. A method for storing radiocontaminated waste matter, the method comprising the steps of:

mixing paper sludge-derived sintered carbonized porous grains with radiocontaminated waste matter;

filling said mixture of the paper sludge-derived sintered carbonized porous grains and the radiocontaminated waste matter into a container provided with a lid and a bottom base plate, the container being made of a same material as the lid and the bottom base plate.

2. The method for storing_radiocontaminated wasted matter according to claim 1 , wherein the container is made of concrete, and the thickness and a density of the container are 60 to 65 mm and 2.0 to 2.4 g/cm 3 , respectively.

3. The method for storing radiocontaminated waste matter according to claim 1 , wherein the material of the container includes the paper sludge-derived sintered carbonized porous grains, and a thickness and a density of the container are 60 to 65 mm and 1.8 to 2.4 g/cm 3 , respectively.

4. The method for storing radiocontaminated waste matter according to claim 2 , wherein the material of the container includes the paper sludge-derived sintered carbonized porous grains, and the thickness and the density of the container are 60 to 65 mm and 1.8 to 2.4 g/cm 3 , respectively.

5. The method for storing radiocontaminated waste matter according to claim 3 , wherein the material of the container includes gravel, and the content of the paper sludge-derived sintered carbonized porous grains is 15% to 35% of the gravel.

6. The method for storing radiocontaminated waste matter according to claim 4 , wherein the material of the container includes gravel, and the content of the paper sludge-derived sintered carbonized porous grains is 15% to 35% of the gravel.

7. The method for storing radiocontaminated waste matter according to claim 1 , wherein the container is made of steel sheet, and a thickness and a density of the container are 10 to 15 mm and 7.0 to 7.8 g/cm 3 , respectively.

8. The method for storing radiocontaminated waste matter according to claim 1 , wherein said mixture is ashed at 750° C. to 950° C. for 30 to 100 minutes before being filled into the container.

9. The method for storing radiocontaminated waste matter according to claim 2 , wherein said mixture is ashed at 750° C. to 950° C. for 30 to 100 minutes before being filled into the container.

10. The method for storing radiocontaminated waste matter according to claim 3 , wherein the mixture is ashed at 750° C. to 950° C. for 30 to 100 minutes before being filled into the container.

11. The method for storing radiocontaminated waste matter according to claim 4 , wherein said mixture is ashed at 750° C. to 950° C. for 30 to 100 minutes before being filled into the container.

12. The method for storing radiocontaminated waste matter according to claim 5 , wherein said mixture is ashed at 750° C. to 950° C. for 30 to 100 minutes before being filled into the container.

13. The method for storing radiocontaminated waste matter according to claim 6 , wherein said mixture is ashed at 750° C. to 950° C. for 30 to 100 minutes before being filled into the container.

14. The method for storing radiocontaminated waste matter according to claim 7 , wherein said mixture is ashed at 750° C. to 950° C. for 30 to 100 minutes before being filled into the container.

15. The method for storing radiocontaminated waste matter according to claim 8 , wherein an ash obtained by ashing said mixture is mixed with the paper sludge-derived sintered carbonized porous grains before being filled into the container.

16. The method for storing radiocontaminated waste matter according to claim 1 , wherein a shape of the container is polygonal cylindrical with at least four corners or circular cylindrical.

17. A container for the method to shield radiocontaminated waste matter according to claim 1 , wherein the paper sludge-derived sintered carbonized porous grains and the radiocontaminated waste matter are mixed together before being filled into the container.

Assignments (2)
CHANGE OF NAME Recorded Mar 16, 2016
From: SAN-EI REGULATOR CO., LTD.
To: CORELEX SAN-EI CO., LTD.
Reel/Frame 038118/0812 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 8, 2015
From: TRAN, AI VAN
To: SAN-EI REGULATOR CO., LTD.
Reel/Frame 035599/0396 →
Priority Claims (1)
JP 2014-098671 · May 12, 2014 · national
Continuity (1)
Related Publication 20150325320A1 · Nov 12, 2015