IP Library Granted Patent US 11,298,641
Granted Patent B2
US 11,298,641 · App. 16/422,546 · Granted Apr 12, 2022

Mercury capture systems and methods of making and using the same

Inventors: Adam Mitchell Kiefer (Macon, GA); Laura Waneta Lackey (Macon, GA)
Assignee: THE CORPORATION OF MERCER UNIVERSITY
B01D45/08B01D53/002
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Quick Facts
Patent No.
US 11,298,641
App. No.
16/422,546
Granted
Apr 12, 2022
Kind
B2
Abstract

Mercury capture systems are disclosed. Methods of making and using mercury capture systems are also disclosed.

Claims (26)

1. A mercury capture system that captures mercury escaping from a gold or silver amalgam during heating of the amalgam, said mercury capture system comprising:

at least one conduit extending between (i) a mercury vapor source comprising a heated gold or silver amalgam and (ii) a first outlet of said mercury capture system;

a fan positioned at the first outlet of said mercury capture system; and

a mercury vapor collecting vessel (i) positioned between and (ii) in fluid communication with the mercury vapor source and the first outlet of said mercury capture system,

wherein the mercury capture system reduces an amount of mercury within a first outlet fluid passing through the at least one conduit from proximate the mercury vapor source and exiting the first outlet of said mercury capture system to a level of less than about 100,000 ng/m 3 of the first outlet fluid,

wherein said at least one conduit comprises a middle connecting section positioned between the mercury vapor source and the mercury vapor collecting vessel, and

wherein said middle connecting section comprises a baffle box, said baffle box comprising one or more baffle plates therein, and each baffle plate comprising a plurality of apertures extending through and providing multiple air flow channels through a given baffle plate.

2. The mercury capture system of claim 1 , wherein said at least one conduit comprises a mercury scrubber section positioned between the mercury vapor collecting vessel and the first outlet of said mercury capture system, the mercury scrubber section comprising one or more baffle assemblies positioned along a length of the mercury scrubber section.

3. The mercury capture system of claim 2 , wherein said mercury capture system comprises a second outlet in fluid communication with the mercury vapor collecting vessel.

4. The mercury capture system of claim 2 , wherein said mercury scrubber section extends vertically between the mercury vapor collecting vessel and the first outlet of said mercury capture system.

5. The mercury capture system of claim 2 , wherein said middle connecting section extends diagonally downward from a furnace section outlet to a scrubber inlet along the mercury scrubber section.

6. The mercury capture system of claim 5 , wherein the scrubber inlet is positioned above the mercury vapor collecting vessel along the mercury scrubber section.

7. The mercury capture system of claim 1 , wherein said fan is coaxially positioned within a cross-sectional exit area of the first outlet of said mercury capture system.

8. The mercury capture system of claim 1 , wherein said mercury vapor collecting vessel is positioned directly below and in-line with said fan.

9. The mercury capture system of claim 2 , wherein said mercury scrubber section comprises a reduced diameter portion positioned between the mercury vapor collecting vessel and the first outlet of said mercury capture system.

10. The mercury capture system of claim 3 , wherein said second outlet is at one end of said mercury scrubber section proximate the mercury vapor collecting vessel.

11. The mercury capture system of claim 2 , wherein said first outlet is an outlet of the mercury scrubber section.

12. The mercury capture system of claim 1 , wherein (i) a lower surface of the baffle box and (ii) a lower surface of any portion of the middle connecting section between the baffle box and an outlet of the middle connecting section forms a diagonally downward extending line into a scrubber inlet of the mercury scrubber section or the mercury vapor collecting vessel.

13. The mercury capture system of claim 1 , further comprising one or more conductive or induction heating elements.

14. The mercury capture system of claim 2 , wherein each of the one or more baffle assemblies comprises at least one pair of baffle sheets separated from one another by at least one baffle spacer.

15. The mercury capture system of claim 1 , wherein the mercury capture system reduces an amount of mercury within the first outlet fluid passing through the at least one conduit from proximate the mercury vapor source and exiting the first outlet of said mercury capture system to a level of less than about 35,000 ng/m 3 of first outlet fluid.

16. The mercury capture system of claim 1 , wherein the mercury capture system captures from about 85.0 wt % to about 98.0 wt % of the mercury initially present in the heated gold or silver amalgam processed using the mercury capture system.

17. The mercury capture system of claim 1 , wherein the mercury capture system has an overall height of less than about 10.0 feet (ft), an overall length of less than about 12.0 ft, and an overall width of less than about 4.0 ft.

18. A method of using the mercury capture system of claim 1 to capture mercury escaping from a gold or silver amalgam during heating of the amalgam, said method comprising:

positioning the mercury capture system near a mercury vapor source comprising a heated gold or silver amalgam; and

turning on the fan.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 13, 2019
From: KIEFER, ADAM MITCHELL; LACKEY, LAURA WANETA
To: THE CORPORATION OF MERCER UNIVERSITY
Reel/Frame 049458/0368 →
Continuity (2)
Provisional Application 62675886 · May 24, 2018
Related Publication 20190358570A1 · Nov 28, 2019