Claims
- 1. A process for catalytically reforming a naphtha which comprises the steps of:
- (a) passing a feed gas stream comprising hydrogen and a C.sub.2 to C.sub.6 hydrocarbon through an absorption zone operated under conditions effective to remove the C.sub.2 to C.sub.6 hydrocarbon, including countercurrent contact with a stripping zone liquid effluent stream, and thereby forming a hydrogen-rich gas stream and an absorption zone liquid effluent stream;
- (b) passing the absorption zone liquid effluent stream into a stripping zone operated at conditions effective to cause the removal of the C.sub.2 to C.sub.6 hydrocarbon from the absorption zone liquid effluent stream, including countercurrent contact with a gaseous stripping media, and thereby forming the stripping zone liquid effluent stream and an off-gas stream comprising hydrogen and the C.sub.2 to C.sub.6 hydrocarbons;
- (c) admixing the hydrogen-rich gas stream with a naphtha feed stream to form a reforming zone feed stream;
- (d) passing the reforming zone feed stream through a reforming zone and thereby forming a reforming zone effluent stream;
- (e) cooling and effecting a partial condensation of the reforming zone effluent stream and passing the reforming zone effluent stream into a vapor-liquid separation zone operated at conditions effective to form a condensate stream and a separation zone gas stream;
- (f) passing the condensate stream to a product recovery zone; and,
- (g) passing the separation zone gas stream into a lower portion of the stripping zone as the gaseous stripping media.
- 2. A process for catalytically reforming a naphtha which comprises the steps of:
- (a) passing a feed gas stream comprising hydrogen and C.sub.2 to C.sub.4 paraffins through an absorption zone operated under conditions effective to remove C.sub.2 to C.sub.4 paraffins, including countercurrent contact with a stripping zone liquid effluent stream, and thereby forming a hydrogen-rich gas stream and an absorption zone liquid effluent stream;
- (b) passing the absorption zone liquid effluent stream into a stripping zone operated at conditions effective to cause the removal of C.sub.2 to C.sub.4 paraffins from the absorption zone liquid effluent stream, including countercurrent contact with a gaseous stripping media, and thereby forming the stripping zone liquid effluent stream and an off-gas stream comprising hydrogen and C.sub.2 to C.sub.4 paraffins;
- (c) admixing the hydrogen-rich gas stream with a naphtha feed stream to form a reforming zone feed stream;
- (d) passing the reforming zone feed stream through a reforming zone as a vapor and thereby forming a reforming zone effluent stream;
- (e) cooling and effecting a partial condensation of the reforming zone effluent stream and passing the reforming zone effluent stream into a first vapor-liquid separation zone operated at conditions effective to form a first condensate stream and a first separation zone gas stream;
- (f) passing the first condensate stream to a product recovery zone;
- (g) cooling and then passing the first separation zone gas stream into a second vapor-liquid separation zone operated at conditions effective to form a second condensate stream and a second separation zone gas stream; and,
- (h) heating the second separation zone gas stream by indirect heat exchange against the first separation zone gas stream and passing the second separation zone gas stream into a lower portion of the stripping zone as the gaseous stripping media.
CROSS-REFERENCE TO RELATED APPLICATION
This application is a Continuation-In-Part of my prior copending application Ser. No. 706,858 which was filed on July 19, 1976, now U.S. Pat. No. 4,058,452 the teachings of which are incorporated herein by reference.
US Referenced Citations (1)
Number |
Name |
Date |
Kind |
4058452 |
Loboda |
Nov 1977 |
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Continuation in Parts (1)
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Number |
Date |
Country |
Parent |
706858 |
Jul 1976 |
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