IP Library Granted Patent US 8,357,223
Granted Patent B2
US 8,357,223 · App. 13/452,730 · Granted Jan 22, 2013

Waste treatment furnace and method

Inventor: Luis Cobos Jimenez (San Sebastian, ES)
Assignee: Fundacion Tecnalia Research and Innovation
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 8,357,223
App. No.
13/452,730
Granted
Jan 22, 2013
Kind
B2
Abstract

This invention relates to a waste treatment furnace and method comprising: Generating a molten metal bed, which moves in a forward direction, such as to define a closed circuit in a cyclical and continuous manner, the surface of said bed comprising at least one essentially-slag-free segment. Loading waste onto the aforementioned essentially-slag-free segment, the waste being dragged by the molten metal bed such that it floats in the mentioned forward direction. Retaining the waste on the surface of the molten metal bed as it moves in the mentioned forward direction. Treating the waste under the effect of the constant and continuous heat exchange generated by the movement of the molten metal bed beneath the waste retained thereon.

Claims (22)

1. A waste treatment method, comprising:

generating a molten metal bed, which moves in a forward direction, such as to define a closed circuit in a cyclical and continuous manner, the surface of said bed comprising at least one essentially-slag-free segment;

loading waste comprising a metal fraction that is soluble in the molten metal bed at the temperature of the molten metal bed, onto the aforementioned essentially-slag-free segment, the waste being dragged by the molten metal bed such that it floats in the mentioned forward direction;

retaining the waste on the surface of the molten metal bed as it moves in the forward direction;

treating the waste under the effect of constant and continuous heat exchange generated by movement of the molten metal bed beneath the waste retained thereon, the waste treatment being carried out substantially on the molten metal surface, without need to immerse the waste in the molten metal, such that the treatment of the waste begins after the loading of the waste and is completed while retained, the treatment comprising the incorporation of the metal fraction of the waste that is soluble at the temperature of the molten metal bed to the molten metal bed;

further heating near the retaining of the waste in order to accelerate treatment thereof; and

extracting the slag carried out in a zone of said circuit located after the zone of retaining and treating the waste and before the loading zone of the waste corresponding to the next cycle.

2. The waste treatment method of claim 1 , wherein the waste comprises a volatilizable fraction.

3. The waste treatment method of claim 1 , wherein the volatilizable fraction comprises a metal part.

4. The waste treatment method of claim 1 , comprising a volatilizable fraction treatment and extraction phase.

5. The waste treatment method of claim 1 , wherein the waste comprises a fraction that is non-soluble at the temperature of the molten metal bed and non-volatilizable.

6. The waste treatment method of claim 5 , wherein the waste treatment causes incorporation of the fraction that is non-soluble at the temperature of the molten metal bed and non-volatilizable to the molten metal bed in the form of slag.

7. The waste treatment method of claim 1 , further comprising loading of the waste in a continuous manner

8. The waste treatment method of claim 1 , comprising heating the molten metal bed in order to obtain a homogeneous temperature in the essentially-slag-free segment.

9. The waste treatment method of claim 8 , wherein the heating of the molten metal bed occurs by plasma techniques.

10. The waste treatment method of claim 8 , wherein the heating of the molten metal bed occurs by an electric arc.

11. The waste treatment method of claim 1 , comprising a discretional tapping phase for tapping part of the molten metal bed.

12. The waste treatment method of claim 1 , wherein the molten metal bed has a higher specific surface area in the heating and treatment areas relative to the total molten metal bed mass when loading the waste and when retaining and treating the waste.

13. The waste treatment method of claim 1 , wherein the molten metal bed is formed by ferrous metals.

14. The waste treatment method of claim 1 , wherein the molten metal bed is formed by non-ferrous metals.

15. The waste treatment method of claim 1 , wherein the waste is selected from the group consisting of: steelmaking dust, aluminum slag or chips, precious metals, waste with radiological activity, rolling sludge and scale, electronic scrap, ashes, and asbestos.

16. The waste treatment method of claim 1 , wherein the waste is in the form of pellets or briquettes.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 20, 2013
From: FUNDACION TECNALIA RESEARCH & INNOVATION
To: DIGIMET 2013, S.L.
Reel/Frame 031692/0958 →
MERGER Recorded Dec 17, 2012
From: FUNDACION INASMET
To: FUNDACION TECNALIA RESEARCH & INNOVATION
Reel/Frame 029485/0898 →
Continuity (2)
Division 12162034
Related Publication 20120198964A1 · Aug 9, 2012