Selective Hydrogen Separation by Palladium-based Composite Membranes

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Publisher :
ISBN 13 : 9788259577382
Total Pages : 20 pages
Book Rating : 4.5/5 (773 download)

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Book Synopsis Selective Hydrogen Separation by Palladium-based Composite Membranes by : Elin Aksnes

Download or read book Selective Hydrogen Separation by Palladium-based Composite Membranes written by Elin Aksnes and published by . This book was released on 1993 with total page 20 pages. Available in PDF, EPUB and Kindle. Book excerpt:

Pd-based Membranes

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Publisher : MDPI
ISBN 13 : 3038977020
Total Pages : 190 pages
Book Rating : 4.0/5 (389 download)

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Book Synopsis Pd-based Membranes by : Thijs Peters

Download or read book Pd-based Membranes written by Thijs Peters and published by MDPI. This book was released on 2019-03-26 with total page 190 pages. Available in PDF, EPUB and Kindle. Book excerpt: Palladium (Pd)-based membranes have received a great deal of attention from both academia and industry thanks to their ability to selectively separate hydrogen from gas streams. The integration of such membranes with appropriate catalysts in membrane reactors allows for hydrogen production with CO2 capture that can be applied in smaller bioenergy or combined heat and power (CHP) plants, as well as in large-scale power plants. Pd-based membranes are therefore regarded as a Key Enabling Technology (KET) to facilitate the transition towards a knowledge-based, low-carbon, and resource-efficient economy. This Special Issue of the journal Membranes on “Pd-based Membranes: Overview and Perspectives” contains nine peer-reviewed articles. Topics include manufacturing techniques, understanding of material phenomena, module and reactor design, novel applications, and demonstration efforts and industrial exploitation.

Palladium Membrane Technology for Hydrogen Production, Carbon Capture and Other Applications

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Publisher : Elsevier
ISBN 13 : 1782422412
Total Pages : 403 pages
Book Rating : 4.7/5 (824 download)

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Book Synopsis Palladium Membrane Technology for Hydrogen Production, Carbon Capture and Other Applications by : A Doukelis

Download or read book Palladium Membrane Technology for Hydrogen Production, Carbon Capture and Other Applications written by A Doukelis and published by Elsevier. This book was released on 2014-10-20 with total page 403 pages. Available in PDF, EPUB and Kindle. Book excerpt: Thanks to their outstanding hydrogen selectivity, palladium membranes have attracted extensive R&D interest. They are a potential breakthrough technology for hydrogen production and also have promising applications in the areas of thermochemical biorefining. This book summarises key research in palladium membrane technologies, with particular focus on the scale-up challenges. After an introductory chapter, Part one reviews the fabrication of palladium membranes. Part two then focuses on palladium membrane module and reactor design. The final part of the book reviews the operation of palladium membranes for synthesis gas/hydrogen production, carbon capture and other applications. Review of manufacture and design issues for palladium membranes Discussion of the applications of palladium membrane technology, including solar steam reforming, IGCC plants, NGCC plants, CHP plants and hydrogen production Examples of the technology in operation

High-Performance Palladium Based Membrane for Hydrogen Separation and Purification

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ISBN 13 :
Total Pages : pages
Book Rating : 4.:/5 (953 download)

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Book Synopsis High-Performance Palladium Based Membrane for Hydrogen Separation and Purification by :

Download or read book High-Performance Palladium Based Membrane for Hydrogen Separation and Purification written by and published by . This book was released on 2012 with total page pages. Available in PDF, EPUB and Kindle. Book excerpt: The mission of the DOE's Fuel Cell Technologies'Hydrogen Fuels R & D effort is to research, develop, and validate technologies for producing, storing, and delivering hydrogen in an efficient, clean, safe, reliable, and affordable manner. A key program technical milestone for hydrogen technology readiness is to produce hydrogen from diverse, domestic resources at $2.00-$3.00 per gallon of gasoline equivalent (gge) delivered, untaxed. Low-cost, high-temperature hydrogen separation membranes represent a key enabling technology for small-scale distributed hydrogen production units. Availability of such membranes with high selectivity and high permeability for hydrogen will allow their integration with hydrocarbon reforming and water gas shift reactions, potentially reducing the cost of hydrogen produced. Pd-metal-based dense membranes are known for their excellent hydrogen selectivity and permeability characteristics, however, utilization of these membranes has so far been limited to small scale niche markets for hydrogen purification primarily due to the relatively high cost of Pd-alloy tubes compared to pressure swing adsorption (PSA) units. This project was aimed at development of thin-film Pd-alloy membranes deposited on Pall Corporation's DOE-based AccuSep® porous metal tube substrates to form a composite hydrogen separation membrane for these applications. Pall's composite membrane development addressed the typical limitations of composite structures by developing robust membranes capable of withstanding thermal and mechanical stresses resulting from high temperature (400C), high pressure (400 psi steam methane reformer and 1000 psi coal) operations and thermal cycling involved in conventional hydrogen production. In addition, the Pd-alloy membrane composition was optimized to be able to offer the most stability in the typical synthesis gas environments produced by reforming of natural gas and bio-derived liquid fuels (BILI) validating the technical effectiveness and economic feasibility of the technology demonstrated. Results from this research added technology and product design information that offers the potential to significantly advance the commercial viability of hydrogen production.

Palladium Composite Membranes for Hydrogen Production and Separation

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Publisher : LAP Lambert Academic Publishing
ISBN 13 : 9783659104626
Total Pages : 148 pages
Book Rating : 4.1/5 (46 download)

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Book Synopsis Palladium Composite Membranes for Hydrogen Production and Separation by : Samhun Yun

Download or read book Palladium Composite Membranes for Hydrogen Production and Separation written by Samhun Yun and published by LAP Lambert Academic Publishing. This book was released on 2012-04 with total page 148 pages. Available in PDF, EPUB and Kindle. Book excerpt: In this work, we developed a new preparation technique for palladium composite membranes which results in an ultra-thin and defect-free selective layer with outstanding performance properties and long life. In the method, a palladium precursor and a reducing agent on opposite sides of a substrate of porous alumina hollow fibers were placed and used an electric field to cause migration of metal ions to the outer surface where they are reduced to form seeds at high concentration in a narrow spatial region. The ethanol steam reforming was conducted in a membrane reactor with the Pd membrane and the performance of this reactor was compared with results from a packed bed reactor under identical conditions. For all conditions studied, enhancement of ethanol conversion and hydrogen yield were observed in the membrane reactor compared to the packed bed reactor.

Fabrication and Characterization of Palladium/stainless Steel Composite Membrane for Hydrogen Separation

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Publisher :
ISBN 13 :
Total Pages : 168 pages
Book Rating : 4.:/5 (552 download)

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Book Synopsis Fabrication and Characterization of Palladium/stainless Steel Composite Membrane for Hydrogen Separation by : Syeda Junnar Ahmed

Download or read book Fabrication and Characterization of Palladium/stainless Steel Composite Membrane for Hydrogen Separation written by Syeda Junnar Ahmed and published by . This book was released on 2003 with total page 168 pages. Available in PDF, EPUB and Kindle. Book excerpt: Using an electroless plating technique, defect-free hydrogen-selective palladium membranes are prepared on porous stainless steel support for use in high temperature dehydrogenation/hydrogenation reactions. Scanning Electron Microscopy (SEM) and Energy Dispersive X-ray (EDX) are used to characterize the fabricated Pd-stainless steel composite membranes. The permeability of the membranes by pure hydrogen, nitrogen, and helium is measured with gas-permeation tests.

The Palladium Hydrogen System

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Publisher :
ISBN 13 :
Total Pages : 206 pages
Book Rating : 4.3/5 (91 download)

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Book Synopsis The Palladium Hydrogen System by : F. A. Lewis

Download or read book The Palladium Hydrogen System written by F. A. Lewis and published by . This book was released on 1967 with total page 206 pages. Available in PDF, EPUB and Kindle. Book excerpt:

Palladium/Copper Alloy Composite Membranes for High Temperature Hydrogen Separation from Coal-Derived Gas Streams

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Publisher :
ISBN 13 :
Total Pages : 14 pages
Book Rating : 4.:/5 (871 download)

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Book Synopsis Palladium/Copper Alloy Composite Membranes for High Temperature Hydrogen Separation from Coal-Derived Gas Streams by :

Download or read book Palladium/Copper Alloy Composite Membranes for High Temperature Hydrogen Separation from Coal-Derived Gas Streams written by and published by . This book was released on 2003 with total page 14 pages. Available in PDF, EPUB and Kindle. Book excerpt: For hydrogen from coal gasification to be used economically, processing approaches that produce a high purity gas must be developed. Palladium and its alloys, nickel, platinum and the metals in Groups 3 to 5 of the Periodic Table are all permeable to hydrogen. Hydrogen permeable metal membranes made of palladium and its alloys are the most widely studied due to their high hydrogen permeability, chemical compatibility with many hydrocarbon containing gas streams, and infinite hydrogen selectivity. Our Pd composite membranes have demonstrated stable operation at 450 C for over 70 days. Coal derived synthesis gas will contain up to 15000 ppm H2S as well as CO, CO2, N2 and other gases. Highly selectivity membranes are necessary to reduce the H2S concentration to acceptable levels for solid oxide and other fuel cell systems. Pure Pd-membranes are poisoned by sulfur, and suffer from mechanical problems caused by thermal cycling and hydrogen embrittlement. Recent advances have shown that Pd-Cu composite membranes are not susceptible to the mechanical, embrittlement, and poisoning problems that have prevented widespread industrial use of Pd for high temperature H2 separation. These membranes consist of a thin (≤ 5 [mu]m) film of metal deposited on the inner surface of a porous metal or ceramic tube. With support from this DOE Grant, we have fabricated thin, high flux Pd-Cu alloy composite membranes using a sequential electroless plating approach. Thin, Pd60Cu40 films exhibit a hydrogen flux more than ten times larger than commercial polymer membranes for H2 separation, resist poisoning by H2S and other sulfur compounds typical of coal gas, and exceed the DOE Fossil Energy target hydrogen flux of 80 ml/cm2 · min = 0.6 mol/m2 · s for a feed pressure of 40 psig. Similar Pd-membranes have been operated at temperatures as high as 750 C. We have developed practical electroless plating procedures for fabrication of thin Pd-Cu composite membranes at any scale.

PALLADIUM/COPPER ALLOY COMPOSITE MEMBRANES FOR HIGH TEMPERATURE HYDROGEN SEPARATION.

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ISBN 13 :
Total Pages : pages
Book Rating : 4.:/5 (684 download)

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Book Synopsis PALLADIUM/COPPER ALLOY COMPOSITE MEMBRANES FOR HIGH TEMPERATURE HYDROGEN SEPARATION. by :

Download or read book PALLADIUM/COPPER ALLOY COMPOSITE MEMBRANES FOR HIGH TEMPERATURE HYDROGEN SEPARATION. written by and published by . This book was released on 2005 with total page pages. Available in PDF, EPUB and Kindle. Book excerpt: This report summarizes progress made during the first year of research funding from DOE Grant No. DE-FG26-03NT41792 at the Colorado School of Mines. The period of performance was September 1, 2003 through August of 2004. Composite membranes, consisting of a thin Pd alloy film supported on a porous substrate have been investigated as a means of reducing the membrane cost and improving H[sub 2] flux. An electroless plating technique was utilized to deposit subsequent layers of palladium and copper over zirconia and alumina-based microfilters. The composite membranes thus made were annealed and tested at temperatures ranging from 250 to 500 C, under very high feed pressures (up to 450 psig) using pure gases and gaseous mixtures containing H[sub 2], CO, CO[sub 2], H[sub 2]O and H[sub 2]S, with the purpose of determining the effects these variables had on the H[sub 2] permeation rate, selectivity and percent recovery. The inhibition caused by CO/CO[sub 2] gases on a 7 [micro]m thick Pd-Cu composite membrane was less than 17% over a wide range of compositions at 350 C. H[sub 2]S caused a strong inhibition of the H[sub 2] flux of the same Pd-Cu composite membrane, which is accentuated at levels of 100 ppm or higher. The membrane was exposed to 50 ppm three times without permanent damage. At higher H[sub 2]S levels, above 100 ppm the membrane suffered some physical degradation and its performances was severely affected. The use of sweep gases improved the hydrogen flux and recovery of a Pd-Cu composite membrane. Recently, we have been able to dramatically reduce the thickness of these Pd alloy membranes to approximately one micron. This is significant because at this thickness, it is the cost of the porous support that controls the materials cost of a composite Pd alloy membrane, not the palladium inventory. Very recent results show that the productivity of our membranes is very high, essentially meeting the DOE pure hydrogen flux target value set by the DOE Hydrogen Program. These results were obtained when a 1.3-micron-thick Pd[sub 95]Cu[sub 5] (composition given in mass %) alloy film was coated on a Pall Corporation Membralox[reg-sign] T1-70 tubular ceramic substrate. The flux of this membrane would be even higher if the alloy composition was 40 wt. % Cu.

Low Cost Hydrogen/novel Membranes Technology for Hydrogen Separation from Synthesis Gas, Phase 1. [Palladium-silver/poly(etherimide), Polysulfone/poly(dimethylsiloxane)/poly(ether-esteramide)composite Membranes].

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Author :
Publisher :
ISBN 13 :
Total Pages : 10 pages
Book Rating : 4.:/5 (16 download)

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Book Synopsis Low Cost Hydrogen/novel Membranes Technology for Hydrogen Separation from Synthesis Gas, Phase 1. [Palladium-silver/poly(etherimide), Polysulfone/poly(dimethylsiloxane)/poly(ether-esteramide)composite Membranes]. by :

Download or read book Low Cost Hydrogen/novel Membranes Technology for Hydrogen Separation from Synthesis Gas, Phase 1. [Palladium-silver/poly(etherimide), Polysulfone/poly(dimethylsiloxane)/poly(ether-esteramide)composite Membranes]. written by and published by . This book was released on 1987 with total page 10 pages. Available in PDF, EPUB and Kindle. Book excerpt: During this quarter, work continued on the development of high-flux palladium-silver membranes for the separation of hydrogen from carbon dioxide. Palladium-silver/poly(etherimide) composite membranes were prepared by a vacuum sputtering technique. The influence of different poly(etherimide) support membranes on the performance of palladium-silver membranes was investigated. All membranes tested showed a hydrogen/carbon dioxide selectivity lower than that of the uncoated poly(etherimide)/poly(dimethylsiloxane) membranes. This is probably due to damage of the skin layer of the asymmetric poly(etherimide) support membranes during the palladium-silver electron bombardment. Polysulfone/poly(dimethylsiloxane)/poly(ether-ester-amide) composite membranes were also prepared. Membrane samples consistently showed a carbon dioxide/hydrogen selectivity of 9 to 10 and a normalized carbon dioxide flux of 2 to 4 × 10−4 cm3 (STP)/cm2{center dot}sec{center dot}cmHg. These are extremely good values, superior to any commercially available membranes for this separation. 2 figs., 4 tabs.

Palladium and Palladium-copper Composite Membranes for Hydrogen Separation

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Publisher :
ISBN 13 :
Total Pages : 197 pages
Book Rating : 4.:/5 (249 download)

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Book Synopsis Palladium and Palladium-copper Composite Membranes for Hydrogen Separation by : Stephen Nick Paglieri

Download or read book Palladium and Palladium-copper Composite Membranes for Hydrogen Separation written by Stephen Nick Paglieri and published by . This book was released on 1999 with total page 197 pages. Available in PDF, EPUB and Kindle. Book excerpt:

Development of Palladium Composite Membranes for Hydrogen Separation

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Publisher :
ISBN 13 :
Total Pages : pages
Book Rating : 4.:/5 (129 download)

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Book Synopsis Development of Palladium Composite Membranes for Hydrogen Separation by : S. N. Paglieri

Download or read book Development of Palladium Composite Membranes for Hydrogen Separation written by S. N. Paglieri and published by . This book was released on 2003 with total page pages. Available in PDF, EPUB and Kindle. Book excerpt:

PALLADIUM/COPPER ALLOY COMPOSITE MEMBRANES FOR HIGH TEMPERATURE HYDROGEN SEPARATION.

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Publisher :
ISBN 13 :
Total Pages : 13 pages
Book Rating : 4.:/5 (316 download)

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Book Synopsis PALLADIUM/COPPER ALLOY COMPOSITE MEMBRANES FOR HIGH TEMPERATURE HYDROGEN SEPARATION. by : J. Douglas Way

Download or read book PALLADIUM/COPPER ALLOY COMPOSITE MEMBRANES FOR HIGH TEMPERATURE HYDROGEN SEPARATION. written by J. Douglas Way and published by . This book was released on 2004 with total page 13 pages. Available in PDF, EPUB and Kindle. Book excerpt: This report summarizes progress made during the first year of research funding from DOE Grant No. DE-FG26-03NT41792 at the Colorado School of Mines. The period of performance was September 1, 2003 through August of 2004. Composite membranes, consisting of a thin Pd alloy film supported on a porous substrate have been investigated as a means of reducing the membrane cost and improving H{sub 2} flux. An electroless plating technique was utilized to deposit subsequent layers of palladium and copper over zirconia and alumina-based microfilters. The composite membranes thus made were annealed and tested at temperatures ranging from 250 to 500 C, under very high feed pressures (up to 450 psig) using pure gases and gaseous mixtures containing H{sub 2}, CO, CO{sub 2}, H{sub 2}O and H{sub 2}S, with the purpose of determining the effects these variables had on the H{sub 2} permeation rate, selectivity and percent recovery. The inhibition caused by CO/CO{sub 2} gases on a 7 {micro}m thick Pd-Cu composite membrane was less than 17% over a wide range of compositions at 350 C. H{sub 2}S caused a strong inhibition of the H{sub 2} flux of the same Pd-Cu composite membrane, which is accentuated at levels of 100 ppm or higher. The membrane was exposed to 50 ppm three times without permanent damage. At higher H{sub 2}S levels, above 100 ppm the membrane suffered some physical degradation and its performances was severely affected. The use of sweep gases improved the hydrogen flux and recovery of a Pd-Cu composite membrane. Recently, we have been able to dramatically reduce the thickness of these Pd alloy membranes to approximately one micron. This is significant because at this thickness, it is the cost of the porous support that controls the materials cost of a composite Pd alloy membrane, not the palladium inventory. Very recent results show that the productivity of our membranes is very high, essentially meeting the DOE pure hydrogen flux target value set by the DOE Hydrogen Program. These results were obtained when a 1.3-micron-thick Pd{sub 95}Cu{sub 5} (composition given in mass %) alloy film was coated on a Pall Corporation Membralox{reg_sign} T1-70 tubular ceramic substrate. The flux of this membrane would be even higher if the alloy composition was 40 wt. % Cu.

Preparation of Pd-Ag/PSS Composite Membranes for Hydrogen Separation

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Publisher :
ISBN 13 :
Total Pages : 121 pages
Book Rating : 4.:/5 (566 download)

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Book Synopsis Preparation of Pd-Ag/PSS Composite Membranes for Hydrogen Separation by :

Download or read book Preparation of Pd-Ag/PSS Composite Membranes for Hydrogen Separation written by and published by . This book was released on 2004 with total page 121 pages. Available in PDF, EPUB and Kindle. Book excerpt:

Hydrogen Permselective Palladium/porous Stainless Steel Composite Membrane Reactor for Shifting Equilibrium of Steam Methane Reforming

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Publisher :
ISBN 13 :
Total Pages : 344 pages
Book Rating : 4.:/5 (574 download)

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Book Synopsis Hydrogen Permselective Palladium/porous Stainless Steel Composite Membrane Reactor for Shifting Equilibrium of Steam Methane Reforming by : Mohammed Shahidur Rahman

Download or read book Hydrogen Permselective Palladium/porous Stainless Steel Composite Membrane Reactor for Shifting Equilibrium of Steam Methane Reforming written by Mohammed Shahidur Rahman and published by . This book was released on 2003 with total page 344 pages. Available in PDF, EPUB and Kindle. Book excerpt: Fabricates asymmetric dense Pd/porous stainless steel composite membranes by depositing palladium on the outer surface of the tubular support using the electroless plating method combined with an osmotic pressure field. Analyzes the surface morphology, microstructure, permeability and selectivity of the palladium-based composite membranes. Investigates steam reforming of methane by equilibrium shift as well as the usefulness of the composite membranes in membrane-reactor configuration for simultaneous production and separation of hydrogen. Offers numerical solutions to various models.

Teorija i matematiceskoe modelirovanie obemnych integralnych schem, OIS, SVC i KVC. Vsesojuznaja Skola Seminar ; 4

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Publisher :
ISBN 13 :
Total Pages : pages
Book Rating : 4.:/5 (258 download)

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Book Synopsis Teorija i matematiceskoe modelirovanie obemnych integralnych schem, OIS, SVC i KVC. Vsesojuznaja Skola Seminar ; 4 by :

Download or read book Teorija i matematiceskoe modelirovanie obemnych integralnych schem, OIS, SVC i KVC. Vsesojuznaja Skola Seminar ; 4 written by and published by . This book was released on 1989 with total page pages. Available in PDF, EPUB and Kindle. Book excerpt:

Membranes for Membrane Reactors

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Publisher : John Wiley & Sons
ISBN 13 : 0470977574
Total Pages : 661 pages
Book Rating : 4.4/5 (79 download)

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Book Synopsis Membranes for Membrane Reactors by : Angelo Basile

Download or read book Membranes for Membrane Reactors written by Angelo Basile and published by John Wiley & Sons. This book was released on 2010-12-20 with total page 661 pages. Available in PDF, EPUB and Kindle. Book excerpt: A membrane reactor is a device for simultaneously performing a reaction and a membrane-based separation in the same physical device. Therefore, the membrane not only plays the role of a separator, but also takes place in the reaction itself. This text covers, in detail, the preparation and characterisation of all types of membranes used in membranes reactors. Each membrane synthesis process used by membranologists is explained by well known scientists in their specific research field. The book opens with an exhaustive review and introduction to membrane reactors, introducing the recent advances in this field. The following chapters concern the preparation of both organic and inorganic, and in both cases, a deep analysis of all the techniques used to prepare membrane are presented and discussed. A brief historical introduction for each technique is also included, followed by a complete description of the technique as well as the main results presented in the international specialized literature. In order to give to the reader a summary look to the overall work, a conclusive chapter is included for collecting all the information presented in the previous chapters. Key features: Fills a gap in the market for a scientific book describing the preparation and characterization of all the kind of membranes used in membrane reactors Discusses an important topic - there is increasing emphasis on membranes in general, due to their use as energy efficient separation tools and the ‘green’ chemistry opportunities they offer Includes a review about membrane reactors, several chapters concerning the preparation organic, inorganic, dense, porous, and composite membranes and a conclusion with a comparison among the different membrane preparation techniques