Claims
- 1. A ceramic membrane reactor for syngas production comprising:a reaction chamber; an inlet in the reaction chamber for natural gas intake; a plurality of oxygen permeating u-shaped ceramic membrane slabs inside the reaction chamber; each slab having a plurality of passages for transporting air through the reaction chamber; a first manifold affixed to the reaction chamber for intake of air connected to an entrance of the slab passages; a second manifold affixed to the reactor for removing the oxygen depleted air, the second manifold connected an exit of the slab passages; and an outlet in the reaction chamber for removing syngas.
- 2. The reactor of claim 1 wherein the natural gas pressure is in a range of approximately 14.7 to 1000 psi.
- 3. The reactor of claim 1 wherein the air is at atmospheric pressure.
- 4. The reactor of claim 1 wherein the slabs are composed of a dense ceramic comprising a crystalline mixed metal oxide exhibiting the ability to separate oxygen from a gaseous mixture and transport the oxygen through the membrane.
- 5. The reactor of claim 1 wherein the second manifold for removing the oxygen depleted air is suspended within the first manifold for air intake.
- 6. The reactor of claim 1 wherein the ceramic slabs are attached to the first manifold for air intake and second manifold for air outlet.
- 7. The reactor of claim 1 wherein the ceramic slabs are suspended from the first manifold for air intake.
- 8. A ceramic membrane reactor for syngas production comprising:a reaction chamber; an inlet in the reaction chamber for natural gas in a pressure range of approximately 14.7 to 1000 psi; a plurality of oxygen permeating u-shaped ceramic membrane slabs inside the reaction chamber; each slab having a plurality of passages for transporting air through the reaction chamber; a first manifold affixed to the reaction chamber for intake of atmospheric air connected to an entrance to the slab passages; a second manifold affixed to the reactor for removing the oxygen depleted air, the second manifold connected an exit of the slab passengers; and an outlet in the reaction chamber for removing syngas.
- 9. The reactor of claim 8 wherein the slabs are composed of a dense ceramic comprising a crystalline mixed metal oxide exhibiting the ability to separate oxygen from a gaseous mixture and transport the oxygen through the membrane.
- 10. The reactor of claim 8 wherein the second manifold for removing the oxygen depleted air is suspended within the first manifold for air intake.
- 11. The reactor of claim 8 wherein the ceramic slabs are attached to the first manifold for air intake and second manifold for air outlet.
- 12. The reactor of claim 8 wherein the ceramic slabs are suspended from the first manifold for air intake.
- 13. A ceramic membrane reactor for syngas production comprising:a reaction chamber; an inlet in the reaction chamber for natural gas in a pressure range of approximately 14.7 to 1000 psi; a plurality of oxygen permeating unshaped ceramic membrane slabs inside the reaction chamber, said slabs composed of a dense ceramic comprising a crystalline mixed metal oxide exhibiting the ability to separate oxygen from a gaseous mixture and transport the oxygen through the membrane; each slab having a plurality of passages for transporting air through the reaction chamber; a first manifold affixed to one end of the reaction chamber for intake of atmospheric air connected to the slabs; a second manifold affixed to the reactor for removing the oxygen depleted air; and an outlet in the reaction chamber for removing syngas.
- 14. The reactor of claim 13 wherein the second manifold for removing the oxygen depleted air is suspended within the first manifold for air intake.
CONTRACTUAL ORIGIN OF THE INVENTION
The U.S. Government has rights in this invention pursuant to Contract No. W-31-109-ENG-38 between the U.S. Department of Energy and the University of Chicago representing Argonne National Laboratory
US Referenced Citations (6)