Production Of Clean Hydrogen By Electrochemical Reforming Of Oxygenated Organic Compounds

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Production of Clean Hydrogen by Electrochemical Reforming of Oxygenated Organic Compounds

Production of Clean Hydrogen by Electrochemical Reforming of Oxygenated Organic Compounds
  • Author : Claude Lamy,Christophe Coutanceau,Steve Baranton
  • Publisher : Academic Press
  • Release Date : 2019-11-27
  • Total pages : 132
  • ISBN : 9780128215012
  • File Size : 20,9 Mb
  • Total Download : 459
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Production of Clean Hydrogen by Electrochemical Reforming of Oxygenated Organic Compounds provides a comprehensive overview of the thermodynamics and experimental results that allow the decomposition process of organic compounds leading to hydrogen to be carried out at working cell voltages much lower than those encountered in water electrolysis. The authors review different methods of synthesis and characterization of the catalysts needed to activate the electro-oxidation reaction and describe different electrolysis experiments that produce hydrogen in a Proton Exchange Membrane Electrolysis Cell (PEMEC). Other sections investigate the effect of the nature of the reactive molecules, the nature and structure of the catalysts, and more. By exploring the link between organic oxidation/conversion to hydrogen production, this book fills a gap in the existing literature and provides researchers in the field with an authoritative and comprehensive reference they can use when developing new sustainable processes and systems for hydrogen production. Explores, in detail, the decomposition process of organic compounds leading to hydrogen Presents foundational information, practical insights and pathways for future work in the development of proton exchange membrane electrolysis cell systems Includes results, experimental data and interpretations using different organic compounds, such as methanol, formic acid, ethanol, glycerol and biomass

Heterogeneous Catalysis

Heterogeneous Catalysis
  • Author : Moises Romolos Cesario,Daniel Araujo de Macedo
  • Publisher : Elsevier
  • Release Date : 2022-04-27
  • Total pages : 554
  • ISBN : 9780323856324
  • File Size : 38,7 Mb
  • Total Download : 301
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Heterogeneous Catalysis: Materials and Applications focuses on heterogeneous catalysis applied to the elimination of atmospheric pollutants as an alternative solution for producing clean energy and the valorization of chemical products. The book helps users understand the properties of catalytic materials and catalysis phenomena governing electrocatalytic/catalytic reactions, and – more specifically – the study of surface and interface chemistry. By clustering knowledge in these fields, the book makes information available to both the academic and industrial communities. Further, it shows how heterogeneous catalysis applications can be used to solve environmental problems and convert energy through electrocatalytic reactions and chemical valorization. Sections cover nanomaterials for heterogeneous catalysis, heterogeneous catalysis mechanisms, SOX adsorption, greenhouse gases conversion, reforming reactions for hydrogen production, valorization of hydrogen energy, energy conversion and biomass valorization. Addresses topics of increasing interest to society such as the valorization of biomass, the use of polluting gases to produce value-added products, and the optimization of catalytic materials for water splitting, fuel cells, and other devices Discusses pollutant adsorption by industrial fume desulphurization processes Helps improve processes for obtaining chemicals using nonconventional technologies

Hydrogen, Biomass and Bioenergy

Hydrogen, Biomass and Bioenergy
  • Author : Bruno G. Pollet,Jacob Joseph Lamb
  • Publisher : Academic Press
  • Release Date : 2020-06-26
  • Total pages : 186
  • ISBN : 9780081026465
  • File Size : 49,8 Mb
  • Total Download : 141
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Hydrogen and Bioenergy: Integration Pathways for Renewable Energy Applications focuses on the nexus between hydrogen and carbon compounds as energy carriers, with a particular focus on renewable energy solutions. This book explores opportunities for integrating hydrogen in the bioenergy value chain, such as adding hydrogen to upgrade biofuels and lower CO2 emissions during production. The book also takes the inverse path to examine hydrogen production by chemical and biological routes from various bioresources, including solid waste, wastewater, agricultural products and algae. This broad coverage of technologies and applications presents a unique resource for researchers and practitioners developing integrated hydrogen and bioenergy technologies. This book will also be useful for graduate students and new researchers, presenting an introductory resource in the areas of hydrogen and bioenergy. Energy planners and engineers will also benefit from this content when designing and deploying hydrogen infrastructure for power, heating and transportation. Provides a comprehensive picture of hydrogen generation from biomass, as well as other sources of hydrogen for power, heating, transportation and storage applications Explores the ways hydrogen can be utilized in combination with bio-derived hydrocarbon chains to produce a variety of substitutes for fossil fuel-based petrochemicals Fills the gap between theoretical knowledge and technology viability Analyzes how these technologies fit into an overall energy strategy targeted at expanding the renewable energy sector

Thermochemical Processing of Biomass

Thermochemical Processing of Biomass
  • Author : Robert C. Brown
  • Publisher : John Wiley & Sons
  • Release Date : 2011-03-16
  • Total pages : 394
  • ISBN : 1119990998
  • File Size : 38,7 Mb
  • Total Download : 790
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Thermochemical pathways for biomass conversion offer opportunities for rapid and efficient processing of diverse feedstocks into fuels, chemicals and power. Thermochemical processing has several advantages relative to biochemical processing, including greater feedstock flexibility, conversion of both carbohydrate and lignin into products, faster reaction rates, and the ability to produce a diverse selection of fuels. Thermochemical Processing of Biomass examines the large number of possible pathways for converting biomass into fuels, chemicals and power through the use of heat and catalysts. The book presents a practical overview of the latest research in this rapidly developing field, highlighting the fundamental chemistry, technical applications and operating costs associated with thermochemical conversion strategies. Bridging the gap between research and practical application, this book is written for engineering professionals in the biofuels industry, as well as academic researchers working in bioenergy, bioprocessing technology and chemical engineering. Topics covered include: Combustion Gasification Fast Pyrolysis Hydrothermal Processing Upgrading Syngas and Bio-oil Catalytic Conversion of Sugars to Fuels Hybrid Thermochemical/Biochemical Processing Economics of Thermochemical Conversion For more information on the Wiley Series in Renewable Resources, visit www.wiley.com/go/rrs

Electrochemical Methods for Hydrogen Production

Electrochemical Methods for Hydrogen Production
  • Author : Keith Scott
  • Publisher : Royal Society of Chemistry
  • Release Date : 2019-11-25
  • Total pages : 403
  • ISBN : 9781839160073
  • File Size : 12,6 Mb
  • Total Download : 457
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The hydrogen economy is receiving increased attention due to concerns around the consequences of fossil fuel use, and hydrogen has great potential as a way to reduce reliance on traditional energy sources. Increased hydrogen supplies using cleaner methods are seen as essential for potential hydrogen based power systems for transportation and renewable energy conversion into fuel. Electrochemical Methods for Hydrogen Production provides a comprehensive picture of the various routes to use electricity to produce hydrogen using electrochemical science and technology. The book provides an overview of the fundamentals of electrochemical cells and performance characterisation, as well as a comparison of current applications. It also includes the various types of electrolysers currently used commercially and the range of new electrolysis processes, including photo-electrochemical, biological and thermal energy techniques. Edited by an expert in the field, this title will be of interest to graduate students and researchers in academia and industry working in energy, electrochemistry, physical chemistry and chemical engineering.

Electrochemical Methods for Hydrogen Production

Electrochemical Methods for Hydrogen Production
  • Author : Keith Scott
  • Publisher : Royal Society of Chemistry
  • Release Date : 2019-11-25
  • Total pages : 430
  • ISBN : 9781788013789
  • File Size : 20,9 Mb
  • Total Download : 714
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Increased hydrogen supplies using cleaner methods are seen as essential for potential hydrogen based power systems for transportation and renewable energy conversion into fuel. This book provides a comprehensive picture of the various routes to use electricity to produce hydrogen using electrochemical science and technology. Edited by an expert in the field, this title will be of interest to graduate students and researchers in academia and industry working in energy, electrochemistry, physical chemistry and chemical engineering.

Catalytic Materials for Hydrogen Production and Electro-oxidation Reactions

Catalytic Materials for Hydrogen Production and Electro-oxidation Reactions
  • Author : Moises R. Cesario,Cedric Gennequin,Edmond Abi-Aad,Daniel A. de Macedo
  • Publisher : Bentham Science Publishers
  • Release Date : 2018-12-03
  • Total pages : 278
  • ISBN : 9781681087580
  • File Size : 52,7 Mb
  • Total Download : 430
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The implementation of hydrogen production processes on an industrial scale requires a comprehensive understanding of the chemical proprieties of catalytic materials and the applications such materials in electrocatalysis. This volume presents information about catalytic materials for hydrogen production and hydrogen valorization in electro-oxidation reactions. Chapters emphasize on materials for classical steam, CO2 sorption enhanced steam reforming and dry reforming for hydrogen production. The hydrogen electro-oxidation reaction in anodes of Solid Oxide Fuel Cells (SOFCs) is also explained. Chapters have been contributed by experts in industrial chemistry, adding a valuable perspective for readers. This volume is essential to chemical engineering researchers and industrial professionals interested in hydrogen production systems and the science behind the materials driving the reactions in key processes.

Electrochemical Power Sources: Fundamentals, Systems, and Applications

Electrochemical Power Sources: Fundamentals, Systems, and Applications
  • Author : Tom Smolinka,Jurgen Garche
  • Publisher : Elsevier
  • Release Date : 2021-10-25
  • Total pages : 512
  • ISBN : 9780128194256
  • File Size : 52,6 Mb
  • Total Download : 474
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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

Encyclopedia of Electrochemical Power Sources

Encyclopedia of Electrochemical Power Sources
  • Author : Jurgen Garche,Chris K. Dyer,Patrick T. Moseley,Zempachi Ogumi,David A. J. Rand,Bruno Scrosati
  • Publisher : Newnes
  • Release Date : 2013-05-20
  • Total pages : 4538
  • ISBN : 9780444527455
  • File Size : 21,7 Mb
  • Total Download : 206
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The Encyclopedia of Electrochemical Power Sources is a truly interdisciplinary reference for those working with batteries, fuel cells, electrolyzers, supercapacitors, and photo-electrochemical cells. With a focus on the environmental and economic impact of electrochemical power sources, this five-volume work consolidates coverage of the field and serves as an entry point to the literature for professionals and students alike. Covers the main types of power sources, including their operating principles, systems, materials, and applications Serves as a primary source of information for electrochemists, materials scientists, energy technologists, and engineers Incorporates nearly 350 articles, with timely coverage of such topics as environmental and sustainability considerations

Electrocatalysis 7

Electrocatalysis 7
  • Author : S. Minteer,P. Atanassov,M. Shao
  • Publisher : The Electrochemical Society
  • Release Date : 2015-12-28
  • Total pages : 39
  • ISBN : 9781607686521
  • File Size : 55,7 Mb
  • Total Download : 876
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PDF book entitled Electrocatalysis 7 written by S. Minteer,P. Atanassov,M. Shao and published by The Electrochemical Society which was released on 2015-12-28 with total hardcover pages 39, the book become popular and critical acclaim.

Hydrogen Production and Energy Transition

Hydrogen Production and Energy Transition
  • Author : Marcel Van de Voorde
  • Publisher : Walter de Gruyter GmbH & Co KG
  • Release Date : 2021-09-06
  • Total pages : 582
  • ISBN : 9783110594058
  • File Size : 50,7 Mb
  • Total Download : 304
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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.

PEM Water Electrolysis

PEM Water Electrolysis
  • Author : Dmitri Bessarabov,Pierre Millet
  • Publisher : Academic Press
  • Release Date : 2018-08-04
  • Total pages : 138
  • ISBN : 9780081028315
  • File Size : 53,6 Mb
  • Total Download : 795
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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

Hydrogen Production Technologies

Hydrogen Production Technologies
  • Author : Mehmet Sankir,Nurdan Demirci Sankir
  • Publisher : John Wiley & Sons
  • Release Date : 2017-03-20
  • Total pages : 656
  • ISBN : 9781119283652
  • File Size : 12,8 Mb
  • Total Download : 180
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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.

Handbook of Industrial Chemistry and Biotechnology

Handbook of Industrial Chemistry and Biotechnology
  • Author : James A. Kent
  • Publisher : Springer Science & Business Media
  • Release Date : 2013-01-13
  • Total pages : 1562
  • ISBN : 9781461442592
  • File Size : 36,9 Mb
  • Total Download : 334
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Substantially revising and updating the classic reference in the field, this handbook offers a valuable overview and myriad details on current chemical processes, products, and practices. No other source offers as much data on the chemistry, engineering, economics, and infrastructure of the industry. The Handbook serves a spectrum of individuals, from those who are directly involved in the chemical industry to others in related industries and activities. It provides not only the underlying science and technology for important industry sectors, but also broad coverage of critical supporting topics. Industrial processes and products can be much enhanced through observing the tenets and applying the methodologies found in chapters on Green Engineering and Chemistry (specifically, biomass conversion), Practical Catalysis, and Environmental Measurements; as well as expanded treatment of Safety, chemistry plant security, and Emergency Preparedness. Understanding these factors allows them to be part of the total process and helps achieve optimum results in, for example, process development, review, and modification. Important topics in the energy field, namely nuclear, coal, natural gas, and petroleum, are covered in individual chapters. Other new chapters include energy conversion, energy storage, emerging nanoscience and technology. Updated sections include more material on biomass conversion, as well as three chapters covering biotechnology topics, namely, Industrial Biotechnology, Industrial Enzymes, and Industrial Production of Therapeutic Proteins.

Chemistry and Industry

Chemistry and Industry
  • Author : Anonim
  • Publisher : Unknown
  • Release Date : 2009
  • Total pages : 229
  • ISBN : UCSD:31822036935468
  • File Size : 47,9 Mb
  • Total Download : 920
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PDF book entitled Chemistry and Industry written by Anonim and published by Unknown which was released on 2009 with total hardcover pages 229, the book become popular and critical acclaim.

Sustainable and Green Electrochemical Science and Technology

Sustainable and Green Electrochemical Science and Technology
  • Author : Prof Keith Scott
  • Publisher : John Wiley & Sons
  • Release Date : 2017-05-16
  • Total pages : 408
  • ISBN : 9781118698105
  • File Size : 24,6 Mb
  • Total Download : 835
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Sustainable and Green Electrochemical Science and Technology brings together the basic concepts of electrochemical science and engineering and shows how these are applied in an industrial context, emphasising the major role that electrochemistry plays within society and industry in providing cleaner, greener and more sustainable technologies. Electrochemistry has many applications for sustainability; it can be used to store energy, synthesise materials and chemicals, to generate power and to recycle valuable resources. Coverage includes Electrochemistry, Electrocatalysis and Thermodynamics Electrochemical Cells, Materials and Reactors Carbon Dioxide Reduction and Electro-Organic Synthesis Hydrogen production and Water Electrolysis Inorganic Synthesis Electrochemical Energy Storage and Power Sources Electrochemical processes for recycling and resource recovery Fuel Cell Technologies This book is targeted at both industrial and academic readers, providing a good technological reference base for electrochemistry. It will enable the reader to build on basic principles of electrochemistry, and takes these through to cell design for various and diverse applications.

Proton Exchange Membrane Fuel Cells

Proton Exchange Membrane Fuel Cells
  • Author : Hui Li,Shanna Knights,Zheng Shi,John W. Van Zee,Jiujun Zhang
  • Publisher : CRC Press
  • Release Date : 2010-04-14
  • Total pages : 436
  • ISBN : 1439806799
  • File Size : 20,5 Mb
  • Total Download : 695
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Large-scale commercialization of proton exchange membrane fuel cell (PEMFC) technology has been hindered by issues of reliability, durability, and cost, which are all related to the degradation of fuel cell performance. This degradation often has root causes in contamination from fuel, air streams, or system components. With contributions from international scientists and engineers active in PEMFC research, Proton Exchange Membrane Fuel Cells: Contamination and Mitigation Strategies discusses the impacts of contamination and the contamination mitigation strategies to improve fuel cell performance and durability. The book covers the nature, sources, and electrochemistry of contaminants; their effects on fuel cell performance and lifetime; and the mechanisms of contamination. Exploring the major findings from experimental and theoretical studies in contamination-related research, the expert contributors present methods and tools used for diagnosing various contamination phenomena, along with strategies for mitigating the adverse effects of contamination. They also describe key issues in the future R&D of fuel cell contamination and control. Helping to facilitate pioneering PEMFC R&D and accelerate sustainable commercialization, this book contains the latest research efforts and novel developments as well as important new directions in PEMFC contamination. It offers a comprehensive overview of nearly every aspect of fuel cell contamination, from fundamentals to applications.

Electrochemical Applications of Metal-Organic Frameworks

Electrochemical Applications of Metal-Organic Frameworks
  • Author : Sushma Dave,Rojalin Sahu,B. C. Tripathy
  • Publisher : Elsevier
  • Release Date : 2022-08-22
  • Total pages : 290
  • ISBN : 9780323907859
  • File Size : 19,7 Mb
  • Total Download : 320
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Electrochemical Applications of Metal -Organic Frameworks: Advances and Future Potential brings together the basics of Metal-Organic Frameworks (MOFs and it's chemistry and electrochemistry), giving the reader an understanding of the complexities and possibilities of MOF electrochemistry. Providing in-depth coverage of various methods of the synthesis of MOFs for their electrochemical applications, the morphological and electrochemical properties of these materials are discussed along with their future development. Sections cover electrochemical applications of MOFs in batteries, supercapacitors, fuel cells, as anti-corrosive materials, sensors and in electrocatalysis, and more. Recent developments in MOFs that can hold active molecules such as enzymes, bacteria, nanoparticles and promote electrochemical activity are included. This book will be of great interest to researchers and professionals working in industry and academia or anyone interested in the applications of MOF in industrial processes. Provides in-depth coverage of the various methods of synthesis for metal-organic frameworks and their applications in electrochemistry Describes MOF based research in emerging technologies, including solid-state electrolytes and battery operation in extreme environments Provides an instructive roadmap for future MOF research in advanced energy storage devices

Recent Technologies for Waste to Clean Energy and its Utilization

Recent Technologies for Waste to Clean Energy and its Utilization
  • Author : Dan Bahadur Pal
  • Publisher : Springer Nature
  • Release Date : 2023-04-19
  • Total pages : 270
  • ISBN : 9789811937842
  • File Size : 10,7 Mb
  • Total Download : 460
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This book refers to the various biomass valorisation in various fields like bio-fuel; biodiesel; hydrogen production; energy application, environmental pollution using recent clean technologies. Clean energy technology refers to any process, product or service that reduces negative environmental impacts through significant energy efficiency improvements, sustainable use of resources or environmental protection activities. It covers all aspects of new and renewable clean energy production technology. The concept of eco-efficiency involves both ecological and economic aspects of sustainable agriculture. This book is of interest to teachers, researchers, scientists, capacity builders and policymakers. Also the book serves as additional reading material for undergraduate and graduate students of agriculture, forestry, ecology, soil science, and environmental sciences.

Waste Biorefinery

Waste Biorefinery
  • Author : Thallada Bhaskar,Sunita Varjani,Ashok Pandey,Eldon R. Rene
  • Publisher : Elsevier
  • Release Date : 2021-02-24
  • Total pages : 536
  • ISBN : 9780128218945
  • File Size : 33,5 Mb
  • Total Download : 509
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Waste Biorefinery: Value Addition through Resources Utilization provides scientific and technical information surrounding the most advanced and innovative processing technologies used for the conversion of biogenic waste to biofuels, energy products and biochemicals. The book covers recent developments and achievements in the field of biochemical, thermo-chemical and hybrid methods and the necessities and potentials generated by different kinds of residual streams, including biomass in presumably more decentralized biorefineries. An assortment of case-studies from developing and developed countries illustrate the topics presented, covering energy, chemicals, fuels, food for animal recovery from different waste matrices, and more. Finally, the advantages and limitations of different technologies are discussed, considering local energy demand, government policies, environmental impacts and education in bioenergy. This book will serve as an excellent resource for science graduates, chemical engineers, environmental engineers, biotechnologists and industrial experts in these areas. Provides information on the most advanced and innovative processes for biomass conversion Covers information on biochemical and thermochemical processes and product developments surrounding the principles of biorefining Presents information on the integration of processes and technologies for the production of biofuels, energy products and biochemicals

Microbial Electrochemical Technologies

Microbial Electrochemical Technologies
  • Author : Sonia M. Tiquia-Arashiro,Deepak Pant
  • Publisher : CRC Press
  • Release Date : 2020-01-06
  • Total pages : 497
  • ISBN : 9780429944994
  • File Size : 34,7 Mb
  • Total Download : 809
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This book encompasses the most updated and recent account of research and implementation of Microbial Electrochemical Technologies (METs) from pioneers and experienced researchers in the field who have been working on the interface between electrochemistry and microbiology/biotechnology for many years. It provides a holistic view of the METs, detailing the functional mechanisms, operational configurations, influencing factors governing the reaction process and integration strategies. The book not only provides historical perspectives of the technology and its evolution over the years but also the most recent examples of up-scaling and near future commercialization, making it a must-read for researchers, students, industry practitioners and science enthusiasts. Key Features: Introduces novel technologies that can impact the future infrastructure at the water-energy nexus. Outlines methodologies development and application of microbial electrochemical technologies and details out the illustrations of microbial and electrochemical concepts. Reviews applications across a wide variety of scales, from power generation in the laboratory to approaches. Discusses techniques such as molecular biology and mathematical modeling; the future development of this promising technology; and the role of the system components for the implementation of bioelectrochemical technologies for practical utility. Explores key challenges for implementing these systems and compares them to similar renewable energy technologies, including their efficiency, scalability, system lifetimes, and reliability.