IP Library Granted Patent US 9,375,694
Granted Patent B2
US 9,375,694 · App. 14/222,217 · Granted Jun 28, 2016

Device with dilated oxidation zone for gasifying feedstock

Inventors: Deon John Potgieter (Monroe, LA); Billy Freeman Hopper (Carrollton, MS); Jeffrey Scott Brown (Leland, MS); Mark Oliver Loftin (Mobile, AL)
Assignee: PHG ENERGY, LLC
B01J6/008C10J3/26C10J3/42C10J3/723C10J3/726C10J3/74C10J2200/156C10J2300/092C10J2300/0916C10J2300/0956C10J2300/1846
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Quick Facts
Patent No.
US 9,375,694
App. No.
14/222,217
Granted
Jun 28, 2016
Kind
B2
Abstract

A downdraft gasifier that utilizes a plurality of vertically positioned tubes to create a pyrolysis zone, an oxidation zone beneath the pyrolysis zone and a reduction zone beneath the oxidation zone. The shape of the tubes eliminates the need for a restriction (hearth), which limits the maximum achievable throughput. A rotating and vertically adjustable grate is located beneath, but not attached to, the reduction zone of the gasifier.

Claims (53)

1. A gasifier comprising:

a plurality of conjoined and vertically positioned tubes having a proximal end and a distal end, wherein the proximal end provides an inlet and the distal end provides an outlet;

at least three contiguous reaction zones comprising a pyrolysis zone, followed by an oxidation zone with a dilated middle that is a Kline-Fogelman step, followed by a reduction zone; and

at least two separate rings of pressurized plano air inlets, configured to deliver adjustable volumes and pressures of oxidant streams,

wherein the at least two rings of plano air inlets are located around the perimeter of the oxidation zone,

further wherein at least one of the at least two rings of plano air inlets is located at the dilated middle, and

further wherein the gasifier is a downdraft gasifier used for gasification of feedstock.

2. The gasifier of claim 1 , further comprising an interior wall of the vertically positioned tubes made of silica carbide, silica oxide, aluminum oxide, ceramic or a refractory alloy.

3. The gasifier of claim 1 , further comprising at least one fill level indicator in the pyrolysis zone and an automatic feed mechanism that is activated when the at least one fill level indicator detects a low feedstock level.

4. The gasifier of claim 1 , wherein at least one of the at least two rings of plano air inlets is located around the dilated middle.

5. The gasifier of claim 1 , further comprising a pressure lock.

6. A gasifier comprising:

a plurality of conjoined and vertically positioned tubes having a proximal end and a distal end, wherein the proximal end provides an inlet and the distal end provides an outlet;

at least three contiguous reaction zones comprising a pyrolysis zone followed by an oxidation zone with a Kline-Fogelman step, followed by a reduction zone;

at least two separate rings of pressurized plano air inlets, configured to deliver adjustable volumes and pressures of oxidant streams, located around the perimeter of the oxidation zone,

wherein at least one of the at least two rings of plano air inlets is located at the Kline-Fogelman step, and

further wherein the gasifier is a downdraft gasifier used for gasification of feedstock.

7. The gasifier of claim 6 , the vertically positioned tubes further comprising an interior wall made of silica carbide, silica oxide, aluminum oxide, ceramic or a refractory alloy.

8. The gasifier of claim 6 , further comprising a grate positioned below the reduction zone.

9. The gasifier of claim 6 , further comprising at least one fill level indicator in the pyrolysis zone and an automatic feed mechanism that is activated when the at least one fill level indicator detects a low feedstock level.

10. The gasifier of claim 6 , further comprising a pressure lock.

11. A gasifier comprising:

a plurality of conjoined and vertically positioned tubes having a proximal end and a distal end, wherein the proximal end provides an inlet and the distal end provides an outlet;

at least three contiguous reaction zones comprising a pyrolysis zone, followed by an oxidation zone with a dilated middle, followed by a reduction zone;

at least two separate rings of pressurized piano air inlets, configured to deliver adjustable volumes and pressures of oxidant streams, located around the perimeter of the oxidation zone;

a vertically adjustable bypass; and

at least one biochar collection chute and a residue box under the bypass, the at least one biochar collection chute further comprising two or more producer gas vents,

wherein the gasifier is a downdraft gasifier used for gasification of feedstock.

12. The gasifier of claim 11 , the vertically positioned tubes further comprising an interior wall made of silica carbide, silica oxide, aluminum oxide, ceramic or a refractory alloy.

13. The gasifier of claim 11 , further comprising at least one fill level indicator in the pyrolysis zone and an automatic feed mechanism that is activated when the at least one fill level indicator detects a low feedstock level.

14. The gasifier of claim 11 , wherein at least one of the at least two rings of plano air inlets is located around the dilated middle.

15. The gasifier of claim 11 , further comprising a pressure lock.

16. A gasifier comprising:

A plurality of conjoined and vertically positioned tubes having a proximal end and a distal end, wherein the proximal end provides an inlet and the distal end provides an outlet;

at least three contiguous reaction zones comprising a pyrolysis zone, followed by an oxidation zone, followed by a reduction zone;

at least a higher ring and a lower ring of pressurized piano air inlets located around the perimeter of the oxidation zone;

a grate positioned below the reduction zone; and

at least one biochar collection chute and a residue box under the grate, the at least one biochar collection chute further comprising two or more producer gas vents,

wherein the gasifier is a downdraft gasifier used for gasification of feedstock.

17. The gasifier of claim 16 , the vertically positioned tubes further comprising an interior wall made of silica carbide, silica oxide, aluminum oxide, ceramic or a refractory alloy.

18. The gasifier of claim 16 , further comprising at least one fill level indicator in the pyrolysis zone and an automatic feed mechanism that is activated when the at least one fill level indicator detects a low feedstock level.

19. The gasifier of claim 16 , further comprising a pressure lock.

20. A gasifier comprising:

A plurality of conjoined and vertically positioned tubes having a proximal end and a distal end, wherein the proximal end provides an inlet and the distal end provides an outlet;

at least three contiguous reaction zones comprising a pyrolysis zone, followed by an oxidation zone, followed by a reduction zone;

at least two separate rings of pressurized plano air inlets, configured to deliver adjustable volumes and pressures of oxidant streams, located around the perimeter of the oxidation zone;

a grate;

a pseudo-seal of biochar for the distal end of the gasifier on top of the grate; and

at least one biochar collection chute and a residue box under the grate, the at least one biochar collection chute further comprising two or more producer gas vents, wherein the gasifier is a downdraft gasifier used for gasification of feedstock.

21. The gasifier of claim 20 , wherein at least one of the at least two rings of piano air inlets is located around a dilated portion of the oxidation zone.

22. The gasifier of claim 20 , the vertically positioned tubes further comprising an interior wall made of silica carbide, silica oxide, aluminum oxide, ceramic or a refractory alloy.

23. The gasifier of claim 20 , further comprising at least one fill level indicator in the pyrolysis zone and an automatic feed mechanism that is activated when the at least one fill level indicator detects a low feedstock level.

24. The gasifier of claim 20 , further comprising a pressure lock.

Assignments (1)
CHANGE OF NAME Recorded Aug 21, 2017
From: PHG ENERGY, LLC
To: ARIES GASIFICATION, LLC
Reel/Frame 043609/0174 →
Continuity (2)
Continuation 13751983 · Jan 28, 2013
Related Publication 20140219874A1 · Aug 7, 2014