IP Library Granted Patent US 7,776,127
Granted Patent B2
US 7,776,127 · App. 12/048,597 · Granted Aug 17, 2010

Use of a channel induction furnace to process at least one of a molten metal product, a vapor phase metal product and a slag product from a variety of feed materials

Assignee: Heritage Environmental Services, LLC
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Quick Facts
Patent No.
US 7,776,127
App. No.
12/048,597
Granted
Aug 17, 2010
Kind
B2
Abstract

A method of operating a channel induction furnace to process a feed material and obtain therefrom at least one of a molten metal product, a vapor phase metal product and a slag product. The method involves the use a variety of feed materials that contribute to the molten metal product and/or the vapor phase metal product and/or the slag product and/or function as a binder for briquetting or pelletizing the feed material.

Claims (58)

1. A method of continuously processing at least one of a molten metal product, a vapor phase metal product and a slag product from at least one waste material which comprises:

providing a furnace having a headspace, opposite ends and containing a molten metal bath;

operating the furnace so that the surface of the molten metal bath is not under turbulent conditions;

forming and maintaining a slag layer on the molten metal bath;

feeding at least one waste material into the furnace at one of the opposite ends and into the slag layer that floats on the molten metal bath so that the at least one waste material is engulfed by the slag layer;

allowing the at least one waste material to react in the furnace to replenish the slag layer that floats on the molten metal bath and produce at least one of a molten metal product that passes into the molten metal bath, and a vapor phase metal product that passes into the headspace of the furnace;

removing a portion of the slag layer as a slag product from another of the opposite ends of the furnace so as to cause the slag layer and the at least one waste material fed into the slag layer to move across the surface of the molten metal bath; and

continuously maintaining the thickness of the slag layer at a level so that the thickness is sufficient to support the at least one waste material in the slag layer.

2. A method of continuously processing at least one of a molten metal product, a vapor phase metal product and a slag product from at least one waste material according to claim 1 , wherein the at least one waste material is selected from the group consisting of EAF dust from a stainless steel process, stainless steel sludge, spent catalysis and mixtures thereof.

3. A method of continuously processing at least one of a molten metal product, a vapor phase metal product and a slag product from at least one waste material which comprises:

providing a furnace having a headspace, opposite ends and containing a molten metal bath;

operating the furnace so that the surface of the molten metal bath is not under turbulent conditions;

forming and maintaining a slag layer on the molten metal bath;

feeding at least one waste material into the furnace at one of the opposite ends and into the slag layer that floats on the molten metal bath so that the at least one waste material is engulfed by the slag layer; and

allowing the at least one waste material to react in the furnace to replenish the slag layer that floats on the molten metal bath and to produce at least one of a molten metal product that passes into the molten metal bath, and a vapor phase metal product that passes into the headspace of the furnace;

removing a portion the slag layer as a slag product from another of the opposite ends of the furnace so as to cause the slag layer and the at least one waste material fed into the slag layer to move across the surface of the molten metal bath; and

continuously maintaining the thickness of the slag layer at a level so that the thickness is sufficient to support the at least one waste material in the slag layer,

wherein the at least one waste material comprises of a source of iron and a reductant.

4. A method of continuously processing at least one of a molten metal product, a vapor phase metal product and a slag product from at least one waste material according to claim 3 , wherein the at least one waste material is selected from the group consisting of blast furnace dusts, iron borings, steel borings, iron stampings, steel stampings, kish fines, iron carbonate and mixtures thereof.

5. A method of continuously processing at least one of a molten metal product, a vapor phase metal product and a slag product from at least one waste material according to claim 3 , wherein the at least one waste material is selected from the group consisting of mill scale, waste iron oxides and mixtures thereof.

6. A method of continuously processing at least one of a molten metal product, a vapor phase metal product and a slag product from at least one waste material according to claim 3 , wherein the at least one waste material is selected from the group consisting of silica carbide, silica wastes, silicon wastes and mixtures thereof.

7. A method of continuously processing at least one of a molten metal product, a vapor phase metal product and a slag product from at least one waste material which comprises:

providing a furnace having a headspace, opposite ends and containing a molten metal bath;

operating the furnace so that the surface of the molten metal bath is not under turbulent conditions;

forming and maintaining a slag layer on the molten metal bath;

feeding at least one waste material into the furnace at one of the opposite ends and into the slag layer that floats on the molten metal bath so that the at least one waste material is engulfed by the slag layer;

allowing the at least one waste material to react in the furnace to replenish the slag layer that floats on the molten metal bath and produce at least one of a molten metal product that passes into the molten metal bath, and a vapor phase metal product that passes into the headspace of the furnace;

removing a portion the slag layer as a slag product from another of the opposite ends of the furnace so as to cause the slag layer and the at least one waste material fed into the slag layer to move across the surface of the molten metal bath; and

continuously maintaining the thickness of the slag layer at a level so that the thickness is sufficient to support the at least one waste material in the slag layer,

wherein the at least one waste material comprises of a source of iron and a minor source of slag.

8. A method of continuously processing at least one of a molten metal product, a vapor phase metal product and a slag product from at least one waste material which comprises:

providing a furnace having a headspace, opposite ends and containing a molten metal bath;

operating the furnace so that the surface of the molten metal bath is not under turbulent conditions;

forming and maintaining a slag layer on the molten metal bath;

feeding at least one waste material into the furnace at one of the opposite ends and into the slag layer that floats on the molten metal bath so that the at least one waste material is engulfed by the slag layer;

allowing the at least one waste material to react in the furnace to replenish the slag layer that floats on the molten metal bath and produce at least one of a molten metal product that passes into the molten metal bath, and a vapor phase metal product that passes into the headspace of the furnace;

removing a portion the slag layer as a slag product from another of the opposite ends of the furnace so as to cause the slag layer and the at least one waste material fed into the slag layer to move across the surface of the molten metal bath; and

continuously maintaining the thickness of the slag layer at a level so that the thickness is sufficient to support the at least one waste material in the slag layer,

wherein the at least one waste material comprises of a source of slag conditioner and a reductant.

9. A method of continuously processing at least one of a molten metal product, a vapor phase metal product and a slag product from at least one waste material which comprises:

providing a furnace having a headspace, opposite ends and containing a molten metal bath;

operating the furnace so that the surface of the molten metal bath is not under turbulent conditions;

forming and maintaining a slag layer on the molten metal bath;

feeding at least one waste material into the furnace at one of the opposite ends and into the slag layer that floats on the molten metal bath so that the at least one waste material is engulfed by the slag layer;

allowing the at least one waste material to react in the channel induction furnace to replenish the slag layer that floats on the molten metal bath and produce at least one of a molten metal product that passes into the molten metal bath, and a vapor phase metal product that passes into the headspace of the furnace,

removing a portion of the slag layer as a slag product from another of the opposite ends of the furnace so as to cause the slag layer and the at least one waste material fed into the slag layer to move across the surface of the molten metal bath; and

continuously maintaining the thickness of the slag layer at a level so that the thickness is sufficient to support the at least one waste material in the slag layer,

wherein the at least one waste material comprises of a binder and a source of volatile metal.

10. A method of continuously processing at least one of a molten metal product, a vapor phase metal product and a slag product from at least one waste material according to claim 9 , wherein the at least one waste material is waste paint.

11. A method of continuously processing at least one of a molten metal product, a vapor phase metal product and a slag product from at least one waste material which comprises:

providing a furnace having a headspace, opposite ends and containing a molten metal bath;

operating the furnace so that the surface of the molten metal bath is not under turbulent conditions;

forming and maintaining a slag layer on the molten metal bath;

feeding at least one waste material into furnace at one of the opposite ends and into the slag layer that floats on the molten metal bath so that the at least one waste material is engulfed by the slag layer;

allowing the at least one waste material to react in the furnace to replenish the slag layer that floats on the molten metal bath and produce at least one of a molten metal product that passes into the molten metal bath, and a vapor phase metal product that passes into the headspace of the furnace;

removing a portion slag layer as a slag product from another of the opposite ends of the furnace so as to cause the slag layer and the at least one waste material fed into the slag layer to move across the surface of the molten metal bath; and

continuously maintaining the thickness of the slag layer at a level so that the thickness is sufficient to support the at least one waste material in the slag layer,

wherein the at least one waste material is formed into one of a briquette and a pellet using a binder selected from the group consisting of waste paint, cola syrup, soft drink syrup and mixtures thereof.

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 23, 2021
From: HERITAGE RESEARCH GROUP
To: HERITAGE RESEARCH GROUP, LLC
Reel/Frame 057264/0328 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 23, 2015
From: HERITAGE ENVIRONMENTAL SERVICES LLC
To: HERITAGE RESEARCH GROUP
Reel/Frame 034801/0577 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 20, 2009
From: BRATINA, JAMES E.; ROBERTS, THOMAS EDWARD
To: HERITAGE ENVIRONMENTAL SERVICES, LLC
Reel/Frame 022290/0295 →
Continuity (1)
Related Publication 20090229408A1 · Sep 17, 2009