Method and apparatus for processing of materials using high-temperature torch
A method and apparatus for reforming carbonaceous material into syngas containing hydrogen and CO gases is disclosed. In one embodiment, a hydrogen rich torch reactor is provided for defining a reaction zone proximate to torch flame. One input of the reactor receives input material to be processed. Further inputs may be provided, such as for example to introduce steam and/or gases such as methane, oxygen, hydrogen, or the like.
1. A method for processing input material, comprising:
directing an input feedstock into a reactor having at least one input for a combustible torch fuel to at least one torch nozzle, the at least one torch nozzle being adapted to generate at least one non-plasma flame within said reactor to define a combustion zone;
producing super heated steam in a boiler and superheater;
injecting the superheated steam into the reactor;
directing a primary output stream from said reactor vessel into at least one cooler operable to cool the primary reactor output stream and generate a secondary output stream;
directing the secondary output stream from the at least one cooler into a scrubber, the scrubber being operable to extract at least one gas from the secondary output stream.
2. A method in accordance with claim 1 , wherein the combustible torch fuel comprises hydrogen.
3. A method in accordance with claim 2 , wherein the combustible torch fuel further comprises methane.
4. A method in accordance with claim 2 , wherein the combustible torch fuel is combined with oxygen.
5. A method in accordance with claim 2 , further comprising selectively directing the input feedstock proximally to the tip of at least one flame and intersecting that flame at angle of 90 degrees plus or minus 60 degrees.
6. A method in accordance with claim 2 , wherein the scrubber is further operable to precipitate solid impurities from the primary reactor output stream.
7. A method in accordance with claim 1 , wherein the combustible torch fuel comprises less than ten percent (10%) nitrogen.
8. A method in accordance with claim 1 , further comprising preheating the input feedstock prior to directing the input feedstock into the reactor vessel.
9. A method in accordance with claim 8 further comprising heating the input feedstock with the superheated steam before directing the input feedstock to the reactor.