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High Temperature Electrolysis In Large Scale Hydrogen Production


High Temperature Electrolysis In Large Scale Hydrogen Production
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High Temperature Electrolysis In Large Scale Hydrogen Production


High Temperature Electrolysis In Large Scale Hydrogen Production
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Author : Yu Bo
language : en
Publisher: Nova Science Publishers
Release Date : 2010

High Temperature Electrolysis In Large Scale Hydrogen Production written by Yu Bo and has been published by Nova Science Publishers this book supported file pdf, txt, epub, kindle and other format this book has been release on 2010 with High temperature electrolysis categories.


High temperature electrolysis (HTE), which is the highly efficient electrolysis of steam at high temperature and utilises the heat and electrical power supplied simultaneously by advanced nuclear reactor, provides a very promising way for massive production of hydrogen in the future. Operations at high temperatures reduce the electrical energy requirement for the electrolysis and also increase the thermal efficiency of the power-generating cycle. This book provides an overview of HTE technology including its key characteristics and challenges of SOEC development, as well as an introduction of the mechanism and system configuration of hydrogen production through HTE and detailed descriptions of thermo-hydrogen transformation efficiency.



Hydrogen Production From Nuclear Energy


Hydrogen Production From Nuclear Energy
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Author : Greg F Naterer
language : en
Publisher: Springer Science & Business Media
Release Date : 2013-03-28

Hydrogen Production From Nuclear Energy written by Greg F Naterer and has been published by Springer Science & Business Media this book supported file pdf, txt, epub, kindle and other format this book has been release on 2013-03-28 with Technology & Engineering categories.


With the resurgence of nuclear power around the world, and the increasingly important role of hydrogen as a clean energy carrier, the utilization of nuclear energy for large-scale hydrogen production will have a key role in a sustainable energy future. Co-generation of both electricity and hydrogen from nuclear plants will become increasingly attractive. It enables load leveling together with renewable energy and storage of electricity in the form of hydrogen, when electricity prices and demand are lowest at off-peak hours of nuclear plants, such as overnight. Hydrogen Production from Nuclear Energy provides an overview of the latest developments and methods of nuclear based hydrogen production, including electrolysis and thermochemical cycles. Particular focus is given to thermochemical water splitting by the copper-chlorine and sulphur-based cycles. Cycle configurations, equipment design, modeling and implementation issues are presented and discussed. The book provides the reader with an overview of the key enabling technologies towards the design and industrialization of hydrogen plants that are co-located and linked with nuclear plants in the future. The book includes illustrations of technology developments, tables that summarize key features and results, overviews of recent advances and new methods of nuclear hydrogen production. The latest results from leading authorities in the fields will be presented, including efficiencies, costs, equipment design, and modeling.



Hydrogen Production


Hydrogen Production
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Author : Agata Godula-Jopek
language : en
Publisher: John Wiley & Sons
Release Date : 2015-06-26

Hydrogen Production written by Agata Godula-Jopek and has been published by John Wiley & Sons this book supported file pdf, txt, epub, kindle and other format this book has been release on 2015-06-26 with Science categories.


Covering the various aspects of this fast-evolving field, this comprehensive book includes the fundamentals and a comparison of current applications, while focusing on the latest, novel achievements and future directions. The introductory chapters explore the thermodynamic and electrochemical processes to better understand how electrolysis cells work, and how these can be combined to build large electrolysis modules. The book then goes on to discuss the electrolysis process and the characteristics, advantages, drawbacks, and challenges of the main existing electrolysis technologies. Current manufacturers and the main features of commercially available electrolyzers are extensively reviewed. The final chapters then present the possible configurations for integrating water electrolysis units with renewable energy sources in both autonomous and grid-connected systems, and comment on some relevant demonstration projects. Written by an internationally renowned team from academia and industry, the result is an invaluable review of the field and a discussion of known limitations and future perspectives.



Pem Water Electrolysis


Pem Water Electrolysis
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Author : Dmitri Bessarabov
language : en
Publisher: Academic Press
Release Date : 2018-08-04

Pem Water Electrolysis written by Dmitri Bessarabov and has been published by Academic Press this book supported file pdf, txt, epub, kindle and other format this book has been release on 2018-08-04 with Science categories.


PEM Water Electrolysis, a volume in the Hydrogen Energy and Fuel Cell Primers series presents the most recent advances in the field. It brings together information that has thus far been scattered in many different sources under one single title, making it a useful reference for industry professionals, researchers and graduate students. Volumes One and Two allow readers to identify technology gaps for commercially viable PEM electrolysis systems for energy applications and examine the fundamentals of PEM electrolysis and selected research topics that are top of mind for the academic and industry community, such as gas cross-over and AST protocols. The book lays the foundation for the exploration of the current industrial trends for PEM electrolysis, such as power to gas application and a strong focus on the current trends in the application of PEM electrolysis associated with energy storage. Presents the fundamentals and most current knowledge in proton exchange membrane water electrolyzers Explores the technology gaps and challenges for commercial deployment of PEM water electrolysis technologies Includes unconventional systems, such as ozone generators Brings together information from many different sources under one single title, making it a useful reference for industry professionals, researchers and graduate students alike



The Pem Advantage A Guide To Green Hydrogen For Industries


The Pem Advantage A Guide To Green Hydrogen For Industries
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Author :
language : en
Publisher: ReneEnergy.com
Release Date : 2024-03-03

The Pem Advantage A Guide To Green Hydrogen For Industries written by and has been published by ReneEnergy.com this book supported file pdf, txt, epub, kindle and other format this book has been release on 2024-03-03 with Science categories.


Focusing on Proton Exchange Membrane (PEM) electrolysis, this book explores the advantages of this technology for industrial-scale green hydrogen production. It delves into the technical aspects of PEM electrolyzers, including their efficiency, scalability, and flexibility in operation. The guide also compares PEM electrolysis with other hydrogen production methods and discusses its potential for integration with renewable energy sources. It provides insights into the economic viability and future prospects of PEM technology in the green hydrogen landscape.



Electrochemical Power Sources Fundamentals Systems And Applications


Electrochemical Power Sources Fundamentals Systems And Applications
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Author : Tom Smolinka
language : en
Publisher: Elsevier
Release Date : 2021-10-25

Electrochemical Power Sources Fundamentals Systems And Applications written by Tom Smolinka and has been published by Elsevier this book supported file pdf, txt, epub, kindle and other format this book has been release on 2021-10-25 with Technology & Engineering categories.


Electrochemical Power Sources: Fundamentals, Systems, and Applications: Hydrogen Production by Water Electrolysis offers a comprehensive overview about different hydrogen production technologies, including their technical features, development stage, recent advances, and technical and economic issues of system integration. Allied processes such as regenerative fuel cells and sea water electrolysis are also covered. For many years hydrogen production by water electrolysis was of minor importance, but research and development in the field has increased significantly in recent years, and a comprehensive overview is missing. This book bridges this gap and provides a general reference to the topic. Hydrogen production by water electrolysis is the main technology to integrate high shares of electricity from renewable energy sources and balance out the supply and demand match in the energy system. Different electrochemical approaches exist to produce hydrogen from RES (Renewable Energy Sources). Covers the fundamentals of hydrogen production by water electrolysis Reviews all relevant technologies comprehensively Outlines important technical and economic issues of system integration Includes commercial examples and demonstrates electrolyzer projects



Electrochemical Hydrogen Technologies


Electrochemical Hydrogen Technologies
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Author : Hartmut Wendt
language : en
Publisher: Elsevier Publishing Company
Release Date : 1990

Electrochemical Hydrogen Technologies written by Hartmut Wendt and has been published by Elsevier Publishing Company this book supported file pdf, txt, epub, kindle and other format this book has been release on 1990 with Science categories.


The focus of this book is on electrochemical hydrogen technologies and fuel cell technologies in particular. Precipitated by the energy crisis in 1973, intensive work has been done world-wide on hydrogen technologies. Water electrolysis was the main objective. The steady increase of combustion of fossil fuels, with the ensuing CO 2 content in the environment, has led to a greater need to change the use of energy conversion and consumption. Hydrogen, based on nuclear and renewable energies, could become indispensable for energy storage and long range transport. Only electrolysis allows the conversion of electrical energy into hydrogen with high efficiency. Prior to the introduction of non-polluting but very expensive methods for energy harvesting and conversion, it is first necessary to ascertain how to save energy and to refurbish energy conversion systems to obtain the highest efficiencies with the lowest CO 2 emissions, e.g. in large scale electricity generation.Collected here in 7 chapters are the contributions of internationally known electrochemical engineers who work actively in this rapidly developing field. The relevant work reviewed extends from fundamental findings in the field of technical electrocatalysis of hydrogen and oxygen reactions to water electrolysis, chlor-alkali electrolysis (which is still practically the most important process for electrolytic hydrogen generation), thermochemical hybrid cycles and on finally to fuel cells. The latter in their advanced form of heavy, high-temperature cells promise to become the basis for highly efficient electric power plants for converting the chemical energy of fossil fuels, or hydrogen from fossil combustibles like methane, or coal into electricity with system efficiencies greater than 55%.The material presented in this volume should prove of immense value to electrochemical engineers, producers of electrolyzers and fuel cells, electrical engineers and political/technical decision makers. It will also be of use to academic teachers lecturing on electrochemistry and advanced technologies.



High Temperature Electrolysis


High Temperature Electrolysis
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Author : Miguel Angel Laguna-Bercero
language : en
Publisher:
Release Date : 2023

High Temperature Electrolysis written by Miguel Angel Laguna-Bercero and has been published by this book supported file pdf, txt, epub, kindle and other format this book has been release on 2023 with categories.


This book explores the potential of solid oxide electrolysis cells (SOEC) in the field of hydrogen production. It describes this technology in detail, including fundamentals, state-of-the-art the technology, materials development, current limitations, recent trends and industrial applications. It clarifies SOECs role in decarbonizing the energy sector, drawing on contributions from experts in the field.



Hydrogen Production Technologies


Hydrogen Production Technologies
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Author : Mehmet Sankir
language : en
Publisher: John Wiley & Sons
Release Date : 2017-03-20

Hydrogen Production Technologies written by Mehmet Sankir and has been published by John Wiley & Sons this book supported file pdf, txt, epub, kindle and other format this book has been release on 2017-03-20 with Science categories.


The book is organized in three parts. Part I shows how the catalytic and electrochemical principles involve hydrogen production technologies. Part II is devoted to biohydrogen production and introduces gasification and fast pyrolysis biomass, dark fermentation, microbial electrolysis and power production from algae. The last part of the book is concerned with the photo hydrogen generation technologies. Recent developments in the area of semiconductor-based nanomaterials, specifically semiconductor oxides, nitrides and metal-free semiconductors based nanomaterials for photocatalytic hydrogen production are extensively discussed in this part.



Hydrogen Production And Energy Transition


Hydrogen Production And Energy Transition
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Author : Marcel Van de Voorde
language : en
Publisher: Walter de Gruyter GmbH & Co KG
Release Date : 2021-09-07

Hydrogen Production And Energy Transition written by Marcel Van de Voorde and has been published by Walter de Gruyter GmbH & Co KG this book supported file pdf, txt, epub, kindle and other format this book has been release on 2021-09-07 with Technology & Engineering categories.


Carbon neutral hydrogen technologies play a key role in preventing climate change. Maximizing production of hydrogen in a clean and efficient manner is critical to the hydrogen economy. This book describes most of the potential hydrogen processing technologies and presents the state-of the- art and future developments of modern hydrogen technologies. Attention has been given to the theoretical aspects, thermodynamics, process calculations, and modeling approaches, new technologies and reports of multiple successful new pilot systems. The book should appeal to a brad readership and ideal for students of materials science, chemistry, physics; for researchers, chemical- and mechanical engineering, for industrialists, policymakers, economics, safety agencies and governments.