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Sustainable and Green Electrochemical Science and Technology

Sustainable and Green Electrochemical Science and Technology
Author: Keith Scott
Publisher: John Wiley & Sons
Total Pages: 456
Release: 2017-05-16
Genre: Science
ISBN: 111869810X

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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.


Green Sustainable Process for Chemical and Environmental Engineering and Science

Green Sustainable Process for Chemical and Environmental Engineering and Science
Author: Dr. Inamuddin
Publisher: Elsevier
Total Pages: 618
Release: 2023-01-13
Genre: Technology & Engineering
ISBN: 032399430X

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Green Sustainable Process for Chemical and Environmental Engineering and Science: Carbon Dioxide Capture and Utilization explores advanced technologies based on CO2 utilization. The book provides an overview on the conversion and utilization of CO2, extraction techniques, heterogeneous catalysis, green solvent, industrial approaches, and commodity products through energy-intensive processes. In addition, it highlights lifecycle assessment and biological and engineering strategies for CO2 utilization. Each chapter presents challenges in the processes and future perspectives for the application of CO2 conversion and utilization. Reviews carbon dioxide conversion and sequestration Provides literature on methods of carbon dioxide conversion and sequestration Discusses process, mechanism and materials used in carbon dioxide conversion and sequestration


Sustainable Batteries Hb

Sustainable Batteries Hb
Author:
Publisher:
Total Pages: 0
Release: 2025-01-31
Genre:
ISBN: 9781800616097

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This book is a comprehensive exploration of the synergy between green chemistry principles and electrochemical energy storage (EES) technologies and the importance of this relationship. It provides an in-depth analysis of mega-trends in the renewable energy industry and the imperative for advanced EES solutions with a particular focus on sustainable solutions for lithium-ion batteries (LIBs).Early chapters detail the material chemistry of LIBs and recent innovations in their components including anodes, cathodes, electrolytes and separators. Extending beyond LIBs, the book explores various alternative EES technologies including non-lithium mono- and multivalent-ion batteries, metal-air batteries, fuel cells, Li-S batteries, supercapacitors and sodium-ion batteries. Novel EES technologies are analyzed, with an eye to their associated challenges such as device utilization and recycling. The book concludes with a summary of future prospects and how we might overcome obstacles to implementing sustainable EES solutions, offering readers a nuanced perspective on the pivotal role of green chemistry in shaping the trajectory of next-generation electrochemical energy storage within the evolving renewable energy landscape.


Electrochemical Methods for Hydrogen Production

Electrochemical Methods for Hydrogen Production
Author: Keith Scott
Publisher: Royal Society of Chemistry
Total Pages: 430
Release: 2019-11-25
Genre: Science
ISBN: 1788013786

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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.


Electrochemical Science for a Sustainable Society

Electrochemical Science for a Sustainable Society
Author: Kohei Uosaki
Publisher: Springer
Total Pages: 259
Release: 2018-05-13
Genre: Science
ISBN: 9783319861296

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This book honors Professor. John O’M. Bockris, presenting authoritative reviews on some of the subjects to which he made significant contributions – i.e., electrocatalysis, fuel cells, electrochemical theory, electrochemistry of single crystals, in situ techniques, rechargeable batteries, passivity, and solar-fuels – and revealing the roles of electrochemical science and technology in achieving a sustainable society. Electrochemistry has long been an object of study and is now growing in importance, not only because of its fundamental scientific interest but also because of the central role it is expected to play in a future sustainable society. Professor John O’M. Bockris contributed greatly to various aspects of fundamental and applied electrochemistry – such as the structure of the double layer, kinetics and mechanism of the electrochemistry of hydrogen and oxygen, electrocatalysis, adsorption and electrochemical oxidation of small organic molecules, fuel cells, electrocrystallization, theoretical electrochemistry, new methods, photoelectrochemistry, bioelectrochemistry, corrosion and passivity, hydrogen in metals, ionic solutions and ionic liquids, and molten silicates and glasses, as well as socio-economic issues such as the hydrogen economy – for over half a century from 1945 until his retirement in 1997.


Science of Synthesis: Electrochemistry in Organic Synthesis

Science of Synthesis: Electrochemistry in Organic Synthesis
Author: L. Ackermann
Publisher: Thieme
Total Pages: 574
Release: 2021-12-10
Genre: Science
ISBN: 3132442135

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Applications of Electrochemistry in Synthesis Electrosynthesis represents an increasingly viable platform for molecular synthesis, which is currently undergoing a remarkable renaissance. The use of electricity can, for instance, avoid chemical redox reagents as well as the generation of byproducts derived thereof, setting the stage for improved resource economy. This volume is the defining reference work for this rapidly evolving research arena. It features a collection of the most practical and robust methods of organic electrosynthesis. It introduces the key concepts of electrochemistry and provides all relevant laboratory set-ups, enabling newcomers to the field the effective application of these powerful new tools to molecular syntheses. Innovative strategies that successfully realize topical challenging transformations by the art of electrosynthesis are presented. Pioneers and leaders in the field discuss both the practical and conceptual aspects of this rapidly evolving research field.


Electrochemical Science and Technology

Electrochemical Science and Technology
Author: Keith Oldham
Publisher: John Wiley & Sons
Total Pages: 420
Release: 2011-11-21
Genre: Science
ISBN: 1119966841

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Electrochemistry is a discipline of wide scientific and technological interest. Scientifically, it explores the electrical properties of materials and especially the interfaces between different kinds of matter. Technologically, electrochemistry touches our lives in many ways that few fully appreciate; for example, materials as diverse as aluminum, nylon, and bleach are manufactured electrochemically, while the batteries that power all manner of appliances, vehicles, and devices are the products of electrochemical research. Other realms in which electrochemical science plays a crucial role include corrosion, the disinfection of water, neurophysiology, sensors, energy storage, semiconductors, the physics of thunderstorms, biomedical analysis, and so on. This book treats electrochemistry as a science in its own right, albeit resting firmly on foundations provided by chemistry, physics, and mathematics. Early chapters discuss the electrical and chemical properties of materials from which electrochemical cells are constructed. The behavior of such cells is addressed in later chapters, with emphasis on the electrodes and the reactions that occur on their surfaces. The role of transport to and from electrodes is a topic that commands attention, because it crucially determines cell efficiency. Final chapters deal with voltammetry, the methodology used to investigate electrode behavior. Interspersed among the more fundamental chapters are chapters devoted to applications of electrochemistry: electrosynthesis, power sources, “green electrochemistry”, and corrosion. Electrochemical Science and Technology is addressed to all who have a need to come to grips with the fundamentals of electrochemistry and to learn about some of its applications. It will constitute a text for a senior undergraduate or graduate course in electrochemistry. It also serves as a source of material of interest to scientists and technologists in various fields throughout academia, industry, and government – chemists, physicists, engineers, environmentalists, materials scientists, biologists, and those in related endeavors. This book: Provides a background to electrochemistry, as well as treating the topic itself. Is accessible to all with a foundation in physical science, not solely to chemists. Is addressed both to students and those later in their careers. Features web links (through www.wiley.com/go/EST) to extensive material that is of a more tangential, specialized, or mathematical nature. Includes questions as footnotes to support the reader’s evolving comprehension of the material, with fully worked answers provided on the web. Provides web access to Excel® spreadsheets which allow the reader to model electrochemical events. Has a copious Appendix of relevant data.


Green Sustainable Process for Chemical and Environmental Engineering and Science

Green Sustainable Process for Chemical and Environmental Engineering and Science
Author: Dr. Inamuddin
Publisher: Elsevier
Total Pages: 510
Release: 2020-08-29
Genre: Technology & Engineering
ISBN: 0128227605

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Green Sustainable Process for Chemical and Environmental Engineering and Science: Sustainable Organic Synthesis provides an in-depth overview in the area of organic, pharmaceutical, engineering and environmental sciences, with a focus on the purification and extraction of fine chemicals, alternative green solvents, medicinal, analytical drugs, and bioactive compounds utilizing green chemistry protocols. It also focuses on the nanocatalysis, biocatalysis, solvent-free, recyclable organocatalysis, solid-supported reagents, heterogeneous polymer reusable catalysis, and CO2 conversion to commercial chemicals, utilizing industrial strategies such as flow-reactor, microwave, ultrasonics, ball-mill, photochemical and electrochemical methods. Covers a broad overview of sustainable organic synthesis Outlines eco-friendly organic synthesis using novel techniques and chemical processes, i.e., photochemical, electrochemical, microwave, bio-strategies, etc. Gives a detailed account of green, large-scale techniques in organic synthesis and their applications in pharmaceutical production Presents cutting-edge, recent advances in industrial pharmaceuticals and the technologies involved in medicinal and organic chemistry Provides a systematic discussion of each technology in organic synthesis, including main parameters and challenges


New Horizons in Electrochemical Science and Technology

New Horizons in Electrochemical Science and Technology
Author: National Research Council
Publisher: National Academies Press
Total Pages: 164
Release: 1987-02-01
Genre: Technology & Engineering
ISBN: 0309037352

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Modern technology depends heavily on advances in the electrochemical field, but this field may not be receiving the research attention and funding it needs. This new book addresses this issue. It reviews the status of current electrochemical knowledge, recommends areas of future research and development, identifies new technological opportunities in electrochemistry, delineates opportunities for interdisciplinary research, and outlines the socioeconomic impact of electrochemical advances.


Electrochemical Energy Storage for Renewable Sources and Grid Balancing

Electrochemical Energy Storage for Renewable Sources and Grid Balancing
Author: Patrick T. Moseley
Publisher: Newnes
Total Pages: 493
Release: 2014-10-27
Genre: Technology & Engineering
ISBN: 0444626107

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Electricity from renewable sources of energy is plagued by fluctuations (due to variations in wind strength or the intensity of insolation) resulting in a lack of stability if the energy supplied from such sources is used in ‘real time’. An important solution to this problem is to store the energy electrochemically (in a secondary battery or in hydrogen and its derivatives) and to make use of it in a controlled fashion at some time after it has been initially gathered and stored. Electrochemical battery storage systems are the major technologies for decentralized storage systems and hydrogen is the only solution for long-term storage systems to provide energy during extended periods of low wind speeds or solar insolation. Future electricity grid design has to include storage systems as a major component for grid stability and for security of supply. The technology of systems designed to achieve this regulation of the supply of renewable energy, and a survey of the markets that they will serve, is the subject of this book. It includes economic aspects to guide the development of technology in the right direction. Provides state-of-the-art information on all of the storage systems together with an assessment of competing technologies Features detailed technical, economic and environmental impact information of different storage systems Contains information about the challenges that must be faced for batteries and hydrogen-storage to be used in conjunction with a fluctuating (renewable energy) power supply