Claims
- 1. A process for producing hydrogen gas, comprising the steps of:
providing an aqueous solution in a vessel, said solution containing between 0.26 M and 19 M NaOH; introducing aluminum in said solution; reacting aluminum with water at a surface of said solution thereby generating a region of effervescence at said surface of said solution and a precipitate sinking from said region of effervescence to a bottom region of said vessel; and maintaining said region of effervescence separated from said precipitate at said bottom region of said vessel.
- 2. The process as claimed in claim 1, wherein said step of maintaining said region of effervescence separated from said precipitate includes the step of maintaining said region of effervescence at a distance of about 1 cm above said precipitate.
- 3. The process as claimed in claim 1, wherein said aqueous solution contains between about 5M and 10 M NaOH.
- 4. The process as claimed in claim 1, further comprising the step of causing a NaOH concentration in said aqueous solution to oscillate equal amounts up and down.
- 5. The process as claimed in claim 1, further comprising the step of causing a NaOH concentration in said aqueous solution to oscillate equal amounts between about 5M and 10M NaOH.
- 6. The process as claimed in claim 1, wherein said step of reacting aluminum with water at a surface of said solution comprises the additional step of retaining said aluminum on a floating screen.
- 7. The process as claimed in claim 1, further comprising the steps of;
maintaining constant an amount of NaOH in said vessel, and adding water and aluminum in said vessel according to a rate of consumption of said aluminum and said water in said step of reacting.
- 8. The process as claimed in claim 7, wherein said step of adding water is carried out when a temperature in said aqueous solution has reached a peak or 75° C.
- 9. The process as claimed in claim 7, wherein said step of adding water and aluminum in said vessel is carried out in sequence, with said aluminum being added first.
- 10. A process for causing a catalytic reaction of aluminum and water for producing hydrogen gas, comprising the steps of;
providing an aqueous solution in a vessel, said aqueous solution containing a portion of NaOH and a portion of water; introducing a portion of aluminum in said aqueous solution; reacting said portion of aluminum with said portion of water, thereby producing hydrogen gas; and while maintaining substantially constant said portion of NaOH in said vessel, adding additional portions of water and additional portions of aluminum in said vessel according to a rate of consumption of said aluminum and said water in said step of reacting.
- 11. The process as claimed in claim 10, wherein said aquieous solution contains NaOH at a concentration between 1.2 M and 19 M NaOH.
- 12. The process as claimed in claim 10, further comprising the step of accumulating precipitate in a bottom portion of said vessel, and said step of adding additional portions of water comprises the step of passing said additional portions of water through said precipitate.
- 13. The process as claimed in claim 10, wherein said step of reacting said portion of aluminum with said portion of water is carried out at a temperature between 4° C. and 170° C.
- 14. The process as claimed in claim 13, wherein said step of adding additional portion of water is carried out when a temperature in said solution has reached a peak or 75° C.
- 15. A process for simultaneously producing hydrogen gas and alumina, comprising the steps of;
providing an aqueous solution in a vessel, said aqueous solution containing between 0.26 M and 19 M NaOH; introducing aluminum is said aqueous solution; reacting aluminum with water in said aqueous solution and generating hydrogen gas and alumina; and recovering said hydrogen gas and said alumina.
- 16. The process as claimed in claim 15, wherein said step of reacting aluminum with water is carried out at a temperature between 4° C. and 170° C.
- 17. The process as claimed in claim 15, wherein said step of reacting comprises the step of reacting aluminum with water at a surface of said aqueous solution and said process further comprises the steps of;
causing alumina to sink to a bottom region of said vessel; and recovering hydrogen gas from said surface of said aqueous solution and said alumina from said bottom region of said vessel.
- 18. The process as claimed in claim 17, wherein said step of reacting aluminum with water at said surface of said solution comprises the additional step of retaining said aluminum on a floating screen at said surface of said solution.
- 19. The process as claimed in claim 15, further comprising the step of causing a NaOH concentration in said aqueous solution to oscillate equal amounts up and down.
- 20. The process as claimed in claim 19, further comprising the steps of;
maintaining constant an amount of NaOH in said vessel and adding water and aluminum in said vessel according to a rate of consumption of said aluminum and said water in said step of reacting.
Parent Case Info
[0001] This is a Continuation-In-Part of U.S. patent application Ser. No. 09/620,250 filed on Jul. 20, 2000.
Continuation in Parts (1)
|
Number |
Date |
Country |
Parent |
09620250 |
Jul 2000 |
US |
Child |
10319522 |
Dec 2002 |
US |