Process And Apparatus For The Production Of Hydrogen By Steam Reforming Of Hydrocarbon PDF Download

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Process and Apparatus for the Production of Hydrogen by Steam Reforming of Hydrocarbon

Process and Apparatus for the Production of Hydrogen by Steam Reforming of Hydrocarbon
Author:
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Total Pages:
Release: 2000
Genre:
ISBN:

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In the steam reforming of hydrocarbon, particularly methane, under elevated temperature and pressure to produce hydrogen, a feed of steam and hydrocarbon is fed into a first reaction volume containing essentially only reforming catalyst to partially reform the feed. The balance of the feed and the reaction products of carbon dioxide and hydrogen are then fed into a second reaction volume containing a mixture of catalyst and adsorbent which removes the carbon dioxide from the reaction zone as it is formed. The process is conducted in a cycle which includes these reactions followed by countercurrent depressurization and purge of the adsorbent to regenerate it and repressurization of the reaction volumes preparatory to repeating the reaction-sorption phase of the cycle.


Method And Apparatus For Converting Hydrocarbon Fuel Into Hydrogen Gas And Carbon Dioxide

Method And Apparatus For Converting Hydrocarbon Fuel Into Hydrogen Gas And Carbon Dioxide
Author:
Publisher:
Total Pages:
Release: 2000
Genre:
ISBN:

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A hydrocarbon fuel reforming method is disclosed suitable for producing synthesis hydrogen gas from reactions with hydrocarbons fuels, oxygen, and steam. A first mixture of an oxygen-containing gas and a first fuel is directed into a first tube 108 to produce a first reaction reformate. A second mixture of steam and a second fuel is directed into a second tube 116 annularly disposed about the first tube 108 to produce a second reaction reformate. The first and second reaction reformates are then directed into a reforming zone 144 and subject to a catalytic reforming reaction. In another aspect of the method, a first fuel is combusted with an oxygen-containing gas in a first zone 108 to produce a reformate stream, while a second fuel under steam reforming in a second zone 116. Heat energy from the first zone 108 is transferred to the second zone 116.


Process And Apparatus To Accomplish Autothermal Or Steam Reforming Via A Reciprocating Compression Device

Process And Apparatus To Accomplish Autothermal Or Steam Reforming Via A Reciprocating Compression Device
Author:
Publisher:
Total Pages:
Release: 2004
Genre:
ISBN:

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The invention provides a method and apparatus for producing a synthesis gas from a variety of hydrocarbons. The apparatus (device) consists of a semi-batch, non-constant volume reactor to generate a synthesis gas. While the apparatus feeds mixtures of air, steam, and hydrocarbons into a cylinder where work is performed on the fluid by a piston to adiabatically raise its temperature without heat transfer from an external source.


Sustainable Strategies for the Upgrading of Natural Gas: Fundamentals, Challenges, and Opportunities

Sustainable Strategies for the Upgrading of Natural Gas: Fundamentals, Challenges, and Opportunities
Author: E.G. Derouane
Publisher: Springer Science & Business Media
Total Pages: 464
Release: 2005-06-01
Genre: Science
ISBN: 9781402033094

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Energy and feedstock materials for the chemical industry are in increasing demand and, with constraints related to the availability and use of oil, the energy and chemical industry is undergoing considerable changes. In recent years, major restructuring has occurred in the oil, petrochemical, and chemical industry, with increasing attention devoted to the use of natural gas, methane in particular, as a chemical feedstock rather than just as a fuel. The conversion of remote natural gas into liquid fuels or other transportable chemicals is a challenge to industrial catalysis. Few processes exist so far with the major ones involving the conversion of natural gas to synthesis gas by steam reforming, CO2 reforming, or partial oxidation, followed by the syntheses of methanol, hydrocarbons (Fischer-Tropsch synthesis), or ammonia. In this book, a comprehensive overview of the field of processing natural gas is given, through a series of chapters written by leading scientists and engineers in the field. New developments are discussed and current work relevant to the area is shown by a series of recent works by researchers working in this and related fields.


Synthetic Fuels

Synthetic Fuels
Author: United States. Patent and Trademark Office. Office of Technology Assessment and Forecast
Publisher:
Total Pages: 242
Release: 1979
Genre: Synthetic fuels
ISBN:

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Apparatus for Converting Hydrocarbon Fuel Into Hydrogen Gas and Carbon Dioxide

Apparatus for Converting Hydrocarbon Fuel Into Hydrogen Gas and Carbon Dioxide
Author:
Publisher:
Total Pages:
Release: 2002
Genre:
ISBN:

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Hydrocarbon fuel reformer 100 suitable for producing synthesis hydrogen gas from reactions with hydrocarbons fuels, oxygen, and steam. A first tube 108 has a first tube inlet 110 and a first tube outlet 112. The first tube inlet 110 is adapted for receiving a first mixture including an oxygen-containing gas and a first fuel. A partially oxidized first reaction reformate is directed out of the first tube 108 into a mixing zone 114. A second tube 116 is annularly disposed about the first tube 108 and has a second tube inlet 118 and a second tube outlet 120. The second tube inlet 118 is adapted for receiving a second mixture including steam and a second fuel. A steam reformed second reaction reformate is directed out of the second tube 116 and into the mixing zone 114. From the mixing zone 114, the first and second reaction reformates may be directed into a catalytic reforming zone 144 containing a reforming catalyst 147.


Apparatus and Method for Simultaneous Recovery of Hydrogen from Water and from Hydrocarbons

Apparatus and Method for Simultaneous Recovery of Hydrogen from Water and from Hydrocarbons
Author:
Publisher:
Total Pages:
Release: 2000
Genre:
ISBN:

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Apparatus and method for simultaneous recovery of hydrogen from water and from hydrocarbon feed material. The feed material is caused to flow over a heated catalyst which fosters the water-gas shift reaction (H.sub. 2 O+COH.sub. 2 +CO.sub. 2) and the methane steam reforming reaction (CH.sub. 4 +H.sub. 2 O3 H.sub. 2 +CO). Both of these reactions proceed only to partial completion. However, by use of a Pd/Ag membrane which is exclusively permeable to hydrogen isotopes in the vicinity of the above reactions and by maintaining a vacuum on the permeate side of the membrane, product hydrogen isotopes are removed and the reactions are caused to proceed further toward completion. A two-stage palladium membrane reactor was tested with a feed composition of 28% CQ.sub. 4, 35% Q.sub. 2 O (where Q=H, D, or T), and 31% Ar in 31 hours of continuous operation during which 4.5 g of tritium were processed. Decontamination factors were found to increase with decreasing inlet rate. The first stage was observed to have a decontamination factor of approximately 200, while the second stage had a decontamination factor of 2.9.times. 10.sup. 6. The overall decontamination factor was 5.8.times. 10.sup. 8. When a Pt/.alpha.-Al.sub. 2 O.sub. 3 catalyst is employed, decoking could be performed without catalyst degradation. However, by adjusting the carbon to oxygen ratio of the feed material with the addition of oxygen, coking could be altogether avoided.


Process to Accomplish Autothermal Or Steam Reforming Via a Reciprocating Compression Device

Process to Accomplish Autothermal Or Steam Reforming Via a Reciprocating Compression Device
Author:
Publisher:
Total Pages:
Release: 2005
Genre:
ISBN:

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The invention provides a method and apparatus for producing a synthesis gas from a variety of hydrocarbons. The apparatus (device) consists of a semi-batch, non-constant volume reactor to generate a synthesis gas. While the apparatus feeds mixtures of air, steam, and hydrocarbons into a cylinder where work is performed on the fluid by a piston to adiabatically raise its temperature without heat transfer from an external source.


Fossil Energy Update

Fossil Energy Update
Author:
Publisher:
Total Pages: 806
Release: 1976
Genre: Fossil fuels
ISBN:

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