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Next-Generation Materials for Bioelectrochemical Systems

Next-Generation Materials for Bioelectrochemical Systems PDF Author: Dipak Ashok Jadhav
Publisher: Woodhead Publishing
ISBN: 0443290229
Category : Science
Languages : en
Pages : 0

Book Description
Next-Generation Materials for Bioelectrochemical Systems focuses on bioelectrochemical approaches from an environmental engineering perspective, utilizing developments in materials science to improve the rate of electrochemical redox reactions. It explains the basics of electrochemistry explores how novel applications of advanced materials can enhance bioelectrochemical systems (BES). Next-generation materials for BES include: anode mediators, cathode catalysts, membrane modifications, materials for energy storage from fuel cells, and advance materials for reactor design. This book covers the basics of materials electrochemistry, redox reactions for contaminant removal, and success stories of various electrochemistry-based techniques in the development of advanced materials BES. It also presents potential future directions of research in applied materials science and environmental electrochemistry. - Covers material characterization methods for understanding relevant electrochemical behavior - Presents electrochemical redox reactions in support of materials applications - Analyses nanomaterials and nanocomposites for biological fuel cells and electrolysis - Provides life-cycle analysis and techno-economic assessment of bioelectrochemical system for environmental monitoring

Next-Generation Materials for Bioelectrochemical Systems

Next-Generation Materials for Bioelectrochemical Systems PDF Author: Dipak Ashok Jadhav
Publisher: Woodhead Publishing
ISBN: 0443290229
Category : Science
Languages : en
Pages : 0

Book Description
Next-Generation Materials for Bioelectrochemical Systems focuses on bioelectrochemical approaches from an environmental engineering perspective, utilizing developments in materials science to improve the rate of electrochemical redox reactions. It explains the basics of electrochemistry explores how novel applications of advanced materials can enhance bioelectrochemical systems (BES). Next-generation materials for BES include: anode mediators, cathode catalysts, membrane modifications, materials for energy storage from fuel cells, and advance materials for reactor design. This book covers the basics of materials electrochemistry, redox reactions for contaminant removal, and success stories of various electrochemistry-based techniques in the development of advanced materials BES. It also presents potential future directions of research in applied materials science and environmental electrochemistry. - Covers material characterization methods for understanding relevant electrochemical behavior - Presents electrochemical redox reactions in support of materials applications - Analyses nanomaterials and nanocomposites for biological fuel cells and electrolysis - Provides life-cycle analysis and techno-economic assessment of bioelectrochemical system for environmental monitoring

Novel Catalyst Materials for Bioelectrochemical Systems

Novel Catalyst Materials for Bioelectrochemical Systems PDF Author: Lakhveer Singh
Publisher:
ISBN: 9780841236684
Category : Science
Languages : en
Pages : 300

Book Description
This volume presents the fundamentals and advances in state-of-the-art catalytic nanoscale interventions to improve the efficiency of bioelectrochemical systems. These systems are used in a number of applications in the water-energy nexus. Contributed chapters describe and build on useful strategies to use and reference when dealing with an important environmental issue: the final disposal of heavy metal catalysts. Summarizing basic and translational research, these chapters are valuable for researchers in energy, nanotechnology, and catalysis.

Bioelectrochemical Systems

Bioelectrochemical Systems PDF Author: Korneel Rabaey
Publisher: IWA Publishing
ISBN: 184339233X
Category : Science
Languages : en
Pages : 525

Book Description
In the context of wastewater treatment, Bioelectrochemical Systems (BESs) have gained considerable interest in the past few years, and several BES processes are on the brink of application to this area. This book, written by a large number of world experts in the different sub-topics, describes the different aspects and processes relevant to their development. Bioelectrochemical Systems (BESs) use micro-organisms to catalyze an oxidation and/or reduction reaction at an anodic and cathodic electrode respectively. Briefly, at an anode oxidation of organic and inorganic electron donors can occur. Prime examples of such electron donors are waste organics and sulfides. At the cathode, an electron acceptor such as oxygen or nitrate can be reduced. The anode and the cathode are connected through an electrical circuit. If electrical power is harvested from this circuit, the system is called a Microbial Fuel Cell; if electrical power is invested, the system is called a Microbial Electrolysis Cell. The overall framework of bio-energy and bio-fuels is discussed. A number of chapters discuss the basics – microbiology, microbial ecology, electrochemistry, technology and materials development. The book continues by highlighting the plurality of processes based on BES technology already in existence, going from wastewater based reactors to sediment based bio-batteries. The integration of BESs into existing water or process lines is discussed. Finally, an outlook is provided of how BES will fit within the emerging biorefinery area.

Rational Design of Next-generation Nanomaterials and Nanodevices for Water Applications

Rational Design of Next-generation Nanomaterials and Nanodevices for Water Applications PDF Author: Peng Wang
Publisher: IWA Publishing
ISBN: 1780406851
Category : Science
Languages : en
Pages : 156

Book Description
Despite the fact that nanotechnology has been present for a few decades, there is a big gap between how nanotechnology is perceived and what nanotechnology can truly offer in all sectors of water. The question to be answered is 'what more can we expect from nanotechnology' in the water field? The rational nano-design starts with well-defined problem definitions, necessitates interdisciplinary approaches, involves 'think-outside-the-box', and represents the future growth point of environmental nanotechnology. However, it is still largely new to the educated public and even scientists and engineers in water fields. Therefore, it is the purpose of this book to promote the concept of rational nano-design and to demonstrate its creativity, innovation, and excitement. This book presents a series of carefully selected rationally designed nano- materials/devices/surfaces, which represent drastically different, ground-breaking, and eye-opening approaches to conventional problems to embody the concept of nano-design and to illustrate its remarkable potential to change the face of the research in water industry in the future. Each of the book contributors is world-renowned expert in the burgeoning field of rational nano-design for applications. Rational Design of Next-generation Nanomaterials and Nanodevices for Water Applications is intended for undergraduates, graduates, scientists and professionals in the fields of environmental science, material science, chemistry, and chemistry engineering. It provides coherent and good material for teaching, research, and professional reference. Contents: Introduction to rational nano-design for water applications; Rational design of smart materials/surfaces with switchable oil wettability for sustainable oil-spill cleanup; Rational design of three-dimensional macroscale porous electrodes for bioelectrochemical systems; Design of (photo)electrochemical active membranes as next-generation filtration devices; Hierarchical materials as a design concept for multifunctional membranes; Rational design of functional nanoporous materials to confine water pollutant in controlled nano-space; A next-generation forward osmosis draw solution design; Rational design of magnetic permanently-confined micelle arrays (Mag-PCMAs) materials for sustainable water and soil remediation; Rational design of an all-in-one lab-on-chip device for direct seawater desalination; Design of micro-sized microbial fuel cells as miniature energy harvesters Author: Peng Wang, King Abdullah University of Science and Technology

Nanostructured Materials for Next-Generation Energy Storage and Conversion

Nanostructured Materials for Next-Generation Energy Storage and Conversion PDF Author: Fan Li
Publisher: Springer
ISBN: 9783662585795
Category : Technology & Engineering
Languages : en
Pages : 0

Book Description
The energy crisis and pollution have posed significant risks to the environment, transportation, and economy over the last century. Thus, green energy becomes one of the critical global technologies and the use of nanomaterials in these technologies is an important and active research area. This book series presents the progress and opportunities in green energy sustainability. Developments in nanoscaled electrocatalysts, solid oxide and proton exchange membrane fuel cells, lithium ion batteries, and photovoltaic techniques comprise the area of energy storage and conversion. Developments in carbon dioxide (CO2) capture and hydrogen (H2) storage using tunable structured materials are discussed. Design and characterization of new nanoscaled materials with controllable particle size, structure, shape, porosity and band gap to enhance next generation energy systems are also included. The technical topics covered in this series are metal organic frameworks, nanoparticles, nanocomposites, proton exchange membrane fuel cell catalysts, solid oxide fuel cell electrode design, trapping of carbon dioxide, and hydrogen gas storage.

Current Challenges and Future Perspectives on Emerging Bioelectrochemical Technologies

Current Challenges and Future Perspectives on Emerging Bioelectrochemical Technologies PDF Author: Tian Zhang
Publisher: Frontiers Media SA
ISBN: 2889199045
Category : Microbiology
Languages : en
Pages : 123

Book Description
The increasing demand for energy worldwide, currently evaluated at 13 terawatts per year, has triggered a surge in research on alternative energy sources more sustainable and environmentally friendly. Bio-catalyzed electrochemical systems (BESs) are a rapidly growing biotechnology for sustainable production of bioenergy and/or value-added bioproducts using microorganisms as catalysts for bioelectrochemical reactions at the electrode surface. In the last decades, this biotechnology has been intensively studied and developed as a flexible and practical platform for multiple applications such as electricity production, wastewater treatment, pollutants remediation, desalination and production of biogas, biofuels, or other commodities. BESs could have a critical impact on societies in many spheres of activity and become one of the solutions to reform our petroleum-based economy. However, BESs research has so far been limited to lab scale with the notable exceptions of pilot scale microbial fuel cells for brewery and winery wastewater treatment coupled with electricity generation. In general, more knowledge has to be acquired to overcome the issues that are stymieing BESs development and commercialization. For example, it is critical to understand better microbial physiology including the mechanisms responsible for the transfer of electrons between the microbes and the electrodes to start optimizing the systems in a more rational manner. There are many BES processes and for each one of them there is a multitude of biological and electrochemical specifications to investigate and adjust such as the nature of the microbial platform, electrode materials, the reactor design, the substrate, the medium composition, and the operating conditions. The ultimate goal is to develop highly energy efficient BESs with a positive footprint on the environment while maintaining low cost and generating opportunities to create value. BESs are complex systems developed with elements found in multiple fields of science such as microbiology, molecular biology, bioinformatics, biochemistry, electrochemistry, material science and environmental engineering. Given the high volume of research activities going on in the field of BESs today, this e-book explores the current challenges, the more recent progresses, and the future perspectives of BESs technologies. The BESs discussed here include microbial fuel cells, microbial electrolysis cells, microbial electrosynthesis cells, microbial electroremediation cells, etc.

Bioelectrochemical Systems

Bioelectrochemical Systems PDF Author: Prasun Kumar
Publisher: Springer Nature
ISBN: 9811568723
Category : Technology & Engineering
Languages : en
Pages : 333

Book Description
This book is the first in a two-volume set devoted to bioelectrochemical systems (BESs) and the opportunities that they may offer in providing a green solution to growing energy demands worldwide. In this first volume, established research professionals explain the underlying principles and processes of BESs, providing a thorough introduction to these systems before proceeding to address the roles of cathode catalysts and biocatalysts, biofilms, heterotrophic denitrification, and nanotechnology approaches. This volume forms a sound foundation for understanding the potential industrial applications of this technology, which include in particular the generation of high-value chemicals and energy using organic wastes. These applications are the focus of the second volume, where readers will find up-to-date information on microbial fuel cells and the use of microbial biofilm- and algae-based bioelectrochemical systems for bioremediation and co-generation of valuable chemicals. The book is designed for a broad audience, including undergraduates, postgraduates, energy researchers/scientists, policymakers, and anyone else interested in the latest developments in this field.

Microbial Fuel Cell

Microbial Fuel Cell PDF Author: Debabrata Das
Publisher: Springer
ISBN: 3319667939
Category : Technology & Engineering
Languages : en
Pages : 508

Book Description
This book represents a novel attempt to describe microbial fuel cells (MFCs) as a renewable energy source derived from organic wastes. Bioelectricity is usually produced through MFCs in oxygen-deficient environments, where a series of microorganisms convert the complex wastes into electrons via liquefaction through a cascade of enzymes in a bioelectrochemical process. The book provides a detailed description of MFC technologies and their applications, along with the theories underlying the electron transfer mechanisms, the biochemistry and the microbiology involved, and the material characteristics of the anode, cathode and separator. It is intended for a broad audience, mainly undergraduates, postgraduates, energy researchers, scientists working in industry and at research organizations, energy specialists, policymakers, and anyone else interested in the latest developments concerning MFCs.

Graphene Bioelectronics

Graphene Bioelectronics PDF Author: Ashutosh Tiwari
Publisher: Elsevier
ISBN: 0128133503
Category : Technology & Engineering
Languages : en
Pages : 390

Book Description
Graphene Bioelectronics covers the expending field of graphene biomaterials, a wide span of biotechnological breakthroughs, opportunities, possibilities and challenges. It is the first book that focuses entirely on graphene bioelectronics, covering the miniaturization of bioelectrode materials, bioelectrode interfaces, high-throughput biosensing platforms, and systemic approaches for the development of electrochemical biosensors and bioelectronics for biomedical and energy applications. The book also showcases key applications, including advanced security, forensics and environmental monitoring. Thus, the evolution of these scientific areas demands innovations in crosscutting disciplines, starting from fabrication to application. This book is an important reference resource for researchers and technologists in graphene bioelectronics—particularly those working in the area of harvest energy biotechnology—employing state-of-the-art bioelectrode materials techniques. - Offers a comprehensive overview of state-of-art research on graphene bioelectronics and their potential applications - Provides innovative fabrication strategies and utilization methodologies, which are frequently adopted in the graphene bioelectronics community - Shows how graphene can be used to make more effective energy harvesting devices

Advanced Nanomaterials and Nanocomposites for Bioelectrochemical Systems

Advanced Nanomaterials and Nanocomposites for Bioelectrochemical Systems PDF Author: Nabisab Mujawar Mubarak
Publisher: Elsevier
ISBN: 0323910769
Category : Technology & Engineering
Languages : en
Pages : 426

Book Description
Advanced Nanomaterials and Nanocomposites for Bioelectrochemical Systems covers advancements in nanomaterial and nanocomposite applications for microbial fuel cells. One of the advantages of using microbial fuel cells is the simultaneous treatment of wastewater and the generation of electricity from complex organic waste and biomass, which demonstrates that microbial fuel cells are an active area of frontier research. The addition of microorganisms is essential to enhance the reaction kinetics. This type of fuel cell helps to convert complex organic waste into useful energy through the metabolic activity of microorganisms, thereby generating energy. By incorporating nano-scale fillers into the nanocomposite matrix, the performance of the anode material can be improved. This is an important reference source for materials scientists and engineers who want to learn more about how nanotechnology is being used to create more efficient fuel cells. - Describes the major nanomaterials and nanocomposites used in microbial fuel cells - Explains how microbial fuel cells are being used in renewable energy applications - Assesses the challenges of manufacturing nanomaterials for microbial fuel cells on an industrial scale