Claims
- 1. A material processing apparatus, comprising:
- (a) a casing having a top and bottom, a pair of opposite ends and a pair of opposite sides, said casing defining a pyrolysis chamber for receiving and pyrolyzing feed materials therein into fluid materials;
- (b) a mass of refractor material contained in said casing upon said bottom thereof and spaced below said top thereof, said refractory mass extending between said opposite ends and said opposite sides thereof, said refractory mass including an upper surface defining a bottom of said pyrolysis chamber and having a pair of opposite upper and lower ends, said upper surface being defined in an inclined orientation extending from said upper end thereof located adjacent to one of said opposite ends of said casing to a lower end thereof located in a spaced relation to the other of said opposite ends of said casing, said refractory mass having a front end extending below said lower end of said inclined upper surface and being spaced from said other of said opposite ends of said casing, said front end of said refractory mass and said other end of said casing defining an elongated cavity disposed in said pyrolysis chamber within said casing adjacent to and below said lower end of said upper inclined surface of said refractory mass in a position to receive residue of pyrolyzed feed materials from said lower end of said upper inclined surface, said refractory mass having flow passage means defined therein, a flow outlet defined at one end of said flow passage means and a flow inlet defined at an opposite end of said flow passage means and being formed in said front end of said refractory mass at a location above a bottom of the residue-receiving cavity and below said lower end of said upper inclined surface of said refractory mass and communicating with said pyrolysis chamber above said inclined upper surface via said residue-receiving cavity;
- (c) air flow inlet means connected in flow communication with said pyrolysis chamber for introducing air flow from exterior of said casing into said pyrolysis chamber; and
- (d) air flow generating means connected in flow communication with said flow outlet of said flow passage means in said refractory mass for drawing air flow into said casing from the exterior thereof via said air flow inlet means and therefrom through said pyrolysis chamber and for drawing fluid materials with said air flow from said pyrolysis chamber into said flow inlet of said flow passage means in said refractory mass via said residue-receiving cavity and then through said flow passage means and therefrom through said flow outlet thereof.
- 2. The apparatus as recited in claim 1, wherein said upper inclined surface has a generally flat configuration extending between said upper and lower ends thereof.
- 3. The apparatus as recited in claim 1, wherein said casing has an inlet in said top thereof through which materials can be delivered into said pyrolysis chamber and onto said upper surface of said refractory mass.
- 4. The apparatus as recited in claim 1, wherein said casing has an opening defined in one of said opposite sides thereof at an end of said cavity for providing access from the exterior of said casing into said cavity.
- 5. The apparatus as recited in claim 4, further comprising:
- an elongated residue collection pan disposed in said elongated cavity and removable through said opening in said one opposite side of said casing.
- 6. The apparatus as recited in claim 5, further comprising:
- means disposed below said collection pan and between said bottom of said casing and said collection pan for producing heating of said collection pan to elevate the temperature of materials therein.
- 7. The apparatus as recited in claim 1, wherein said casing has a pair of openings each being defined in one of said opposite sides of said casing at respective opposite ends of said cavity for providing access from the exterior of said casing into said cavity.
- 8. The apparatus as recited in claim 1, wherein said cavity extends between said bottom of said casing and said upper surface of said refractory mass.
- 9. The apparatus as recited in claim 1, further comprising:
- means disposed in communication with said pyrolysis chamber for producing heating in said pyrolysis chamber to cause said pyrolyzing of the feed materials into fluid materials.
- 10. The apparatus as recited in claim 9, wherein said means for producing heating in said pyrolysis chamber includes at least one heater unit disposed in said pyrolysis chamber above and extending in generally parallel relation to said channel in said refractory mass.
- 11. The apparatus as recited in claim 1, further comprising:
- means disposed in communication with said pyrolysis chamber for producing heating in said pyrolysis chamber to cause said pyrolyzing of the feed materials into fluid materials.
- 12. The apparatus as recited in claim 11, wherein said means for producing heating in said pyrolysis chamber includes a plurality of elongated electric heater units disposed in said pyrolysis chamber and extending in generally parallel relation to said upper inclined surface of said refractory mass.
- 13. The apparatus as recited in claim 12, wherein said heater units are disposed along respective opposite sides of said casing.
- 14. A material processing apparatus, comprising:
- (a) a casing having a top and bottom, a pair of opposite ends and a pair of opposite sides, said casing defining a pyrolysis chamber for receiving and pyrolyzing feed materials therein into fluid materials;
- (b) a mass of refractory material contained in said casing upon said bottom thereof and spaced below said top thereof, said refractory mass extending between said opposite ends and said opposite sides thereof, said refractory mass including an upper surface defining a bottom of said pyrolysis chamber and having a pair of opposite upper and lower ends, said upper surface being defined in an inclined orientation extending from said upper end thereof located .adjacent to one of said opposite ends of said casing to a lower end thereof located in a spaced relation to the other of said opposite ends of said casing, said refractory mass having a front end extending below said lower end of said inclined upper surface and being spaced from said other of said opposite ends of said casing, said front end of said refractory mass and said other end of said casing defining an elongated cavity disposed in said pyrolysis chamber within said casing adjacent to and below said lower end of said upper inclined surface of said refractory mass, said cavity extending between said bottom of said casing and said upper surface on said refractory mass in a position to receive residue of pyrolyzed feed materials from said lower end of said upper inclined surface, said refractory mass having flow passage means defined therein, a flow outlet defined at one end of said flow passage means and a flow inlet defined at an opposite end of said flow passage means and being formed in said front end of said refractory mass at a location above a bottom of the residue-receiving cavity and below said lower end of said upper inclined surface of said refractory mass and communicating with said pyrolysis chamber above said inclined upper surface via said residue-receiving cavity;
- (c) air flow inlet means connected in flow communication with said pyrolysis chamber for introducing air flow from exterior of said casing into said pyrolysis chamber; and
- (d) air flow generating means connected in flow communication with said flow outlet of said flow passage means in said refractory mass for drawing air flow into said casing from the exterior thereof via said air flow inlet means and therefrom through said pyrolysis chamber and for drawing fluid materials with said air flow from said pyrolysis chamber into said flow inlet of said flow passage means in said refractory mass via said residue-receiving cavity and then through said flow passage means and therefrom through said flow outlet thereof;
- (e) an elongated residue collection pan disposed in said elongated cavity and removable through said opening in said one opposite side of said casing; and
- (f) means disposed in communication with said pyrolysis chamber for producing heating in said pyrolysis chamber to cause said pyrolyzing of the feed materials into the fluid materials.
- 15. The apparatus as recited in claim 14, wherein said casing has an opening defined in one of said opposite sides thereof at an end of said cavity for providing access from the exterior of said casing into said channel.
- 16. The apparatus as recited in claim 14, wherein said means for producing heating in said pyrolysis chamber includes at least one heater unit disposed in said pyrolysis chamber above and extending in generally parallel relation to said channel in said refractory mass.
- 17. The apparatus as recited in claim 14, wherein said means for producing heating in said pyrolysis chamber includes a plurality of elongated electric heater units disposed in said pyrolysis chamber and extending in generally parallel relation to said upper inclined surface of said refractory mass.
- 18. The apparatus as recited in claim 17, wherein said heater units are disposed along respective opposite sides of said casing.
- 19. The apparatus as recited in claim 14, further comprising:
- means disposed below said collection pan and between said bottom of said casing and said collection pan for producing heating of said collection pan to elevate the temperature of materials therein.
Parent Case Info
This is a continuation of application Ser. No. 08/123,455 filed on Sep. 17, 1993.
US Referenced Citations (20)
Continuations (1)
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Number |
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123455 |
Sep 1993 |
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