Claims
- 1. In a process wherein gaseous hydrogen and nitrogen are supplied to and reacted with one another in a reaction zone, wherein they undergo exothermic reaction to produce ammonia at an elevated temperature and pressure, the resulting ammonia is separated and recovered from unconverted gaseous hydrogen and nitrogen at substantially reaction pressure and at reduced temperature in a separation zone and unconverted gaseous hydrogen and nitrogen are recycled to the reaction zone and fresh feed gaseous hydrogen and nitrogen are supplied to said reaction zone, the improvement which comprises passing said gaseous reaction product ammonia admixed with unconverted gaseous reactants directly from said reaction zone at said elevated temperature and pressure into indirect heat exchange with relatively cooler unconverted gaseous reactants from said separation zone in a first heat exchange zone, thereby heating said unconverted gaseous reactants, further heating resulting unconverted gaseous reactants to a temperature higher than said reaction zone temperature by indirect heat exchange with a heating medium in a second heat exchange zone, thereafter expanding resulting heated unconverted reactants in a heat engine with the production of power therefrom, cooling and recompressing said reactants and supplying said recompressed unconverted reactants to said reaction zone.
- 2. In a process wherein gaseous hydrogen and nitrogen are supplied to and reacted with one another in a reaction zone, wherein they undergo exothermic reaction to produce ammonia at an elevated temperature and pressure, the resulting ammonia is separated and recovered from unconverted gaseous hydrogen and nitrogen at substantially reaction pressure and at reduced temperature in a separation zone and unconverted gaseous hydrogen and nitrogen are recycled to the reaction zone and fresh feed gaseous hydrogen and nitrogen are supplied to said reaction zone, the improvement which comprises passing said gaseous reaction product ammonia admixed with unconverted gaseous reactants directly from said reaction zone at said elevated temperature and pressure into indirect heat exchange with relatively cooler unconverted gaseous reactants from said separation zone in a first heat exchange zone, thereby heating said unconverted gaseous reactants, further heating resulting unconverted gaseous reactants to a temperature higher than said reaction zone temperature by indirect heat exchange with a heating medium in a second heat exchange zone, thereafter expanding resulting heated unconverted reactants in a heat engine with the production of power therefrom, cooling and recompressing said reactants and supplying said recompressed unconverted reactants to said reaction zone, a portion of the unconverted gaseous reactants from the separation step being recycled directly to said reaction zone, thus by-passing the heat exchange zones.
- 3. In a process wherein gaseous hydrogen and nitrogen are supplied to and reacted with one another in a reaction zone, wherein they undergo exothermic reaction to produce ammonia at an elevated temperature and pressure, the resulting ammonia is separated and recovered from unconverted gaseous hydrogen and nitrogen at substantially reaction pressure and at reduced temperature in a separation zone and unconverted gaseous hydrogen and nitrogen are recycled to the reaction zone and fresh feed gaseous hydrogen and nitrogen are supplied to said reaction zone, the improvement which comprises passing said gaseous reaction product ammonia admixed with unconverted gaseous reactants directly from said reaction zone at said elevated temperature and pressure into indirect heat exchange with relatively cooler unconverted gaseous reactants from said separation zone in a first heat exchange zone, thereby heating said unconverted gaseous reactants, further heating resulting unconverted gaseous reactants to a temperature higher than said reaction zone temperature by indirect heat exchange with a heating medium in a second heat exchange zone, thereafter expanding resulting heated unconverted reactants in a heat engine with the production of power therefrom, cooling and recompressing said reactants and supplying said recompressed unconverted reactants to said reaction zone, a portion of the recompressed unconverted gaseous reactants being passed directly to said first heat exchange zone into indirect heat exchange with gaseous reaction product and unconverted gaseous reactants from the reaction zone in admixture with unconverted gaseous reactants from said separation zone and thus recycled to said heat engine while by-passing said reaction zone.
Parent Case Info
This is a continuation of application Ser. No. 765,475, filed Feb. 4, 1977, now abandoned.
US Referenced Citations (3)
Number |
Name |
Date |
Kind |
3484197 |
Finneran et al. |
Dec 1969 |
|
3705009 |
Dougherty |
Dec 1972 |
|
4045960 |
Cornelius et al. |
Sep 1977 |
|
Continuations (1)
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Number |
Date |
Country |
Parent |
765475 |
Feb 1977 |
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