Gutscheinbedingungen

**Gültig bis 24.09.2026 ab einem Mindestbestellwert von 30€ auf Spielzeug, Schreibwaren, Filme, Geschenke & Trends, Musik, tolino eReader & Zubehör, Hörbücher und Hörbuch-Downloads, nicht preisgebundene Bücher und Kalender online auf thalia.at und in der Thalia App. Einzelne Artikel können ausgeschlossen sein. Aufgrund der Buchpreisbindung sind deutschsprachige Bücher und eBooks ausgenommen. Zusätzlich ausgenommen sind Abos & Flatrates, Games, Geschenkkarten/-boxen, Shelfies, Software, Zeitschriften sowie einzelne Artikel von tonies®. Pro Einkauf einmal einlösbar. Click & Collect nur bei Onlinevorabzahlung möglich. Keine Barauszahlung. Nicht kombinierbar mit anderen Aktionen und Gutscheinen. Gutschein wird auf max. 500€ Bestellwert angerechnet. Nicht gültig für Versandkosten und Services. Preisgebundene Artikel sind vom Mindestbestellwert ausgeschlossen.

Produktbild: Micro-Optics and Energy

Micro-Optics and Energy Sensors for Energy Devices

148,99 €

inkl. gesetzl. MwSt., Versandkostenfrei


Beschreibung

Produktdetails

Einband

Taschenbuch

Erscheinungsdatum

12.06.2021

Abbildungen

XIII, 207 p. 49 illus., 46 illus. in color.

Herausgeber

Jacob J. Lamb + weitere

Verlag

Springer

Seitenzahl

207

Maße (L/B/H)

23,5/15,5/1,3 cm

Gewicht

347 g

Auflage

1st ed. 2020

Sprache

Englisch

ISBN

978-3-030-43678-0

Beschreibung

Portrait

Bruno G. Pollet is a full Professor of Renewable Energy at the Norwegian University of Science and Technology (NTNU) in Trondheim. He currently leads the "NTNU Team Hydrogen". He is a Fellow of the Royal Society of Chemistry (RSC, UK), an Associate Fellow of the Institution of Chemical Engineers (IChemE, UK) and Board of Directors’ member of the International Association for Hydrogen Energy (IAHE). He is currently Visiting Professors (VP) at the University of Ulster (UK) and the University of the Western Cape (RSA), and was “Professeur des Universités Invité” at the Université de Franche-Comté (France) and a VP at the University of Yamanashi, Professor Watanabe’s labs (Japan). His research covers a wide range of areas in Electrochemistry, Electrochemical Engineering, Electrochemical Energy Conversion and Sono-electrochemistry (Power Ultrasound in Electrochemistry) from the development of novel hydrogen & fuel cell materials, CO2 conversion, to water treatment/disinfection demonstrators & prototypes. He was a full Professor of Energy Materials and Systems at the University of the Western Cape (RSA) and R&D Director of the National Hydrogen South Africa (HySA) Systems Competence Centre. He was also a Research Fellow and Lecturer in Chemical Engineering at The University of Birmingham (UK) as well as a co-founder and an Associate Director of the Birmingham Centre for Hydrogen and Fuel Cell Research. He has worked for Johnson Matthey Fuel Cells Ltd (UK) and other various industries worldwide as Technical Account Manager, Project Manager, Research Manager, R&D Director, Head of R&D and Chief Technology Officer. He was awarded a Diploma in Chemistry and Material Sciences from the Université Joseph Fourier (Grenoble, France), a BSc (Hons) in Applied Chemistry from Coventry University (UK) and an MSc in Analytical Chemistry from The University of Aberdeen (UK). He also gained his PhD in Physical Chemistry in the field of Electrochemistry and Sonochemistry under the supervision of Professors J. Phil Lorimer & Tim J. Mason at the Sonochemistry Centre of Excellence, Coventry University. He undertook his PostDoc in Electrocatalysis at the Liverpool University Electrochemistry group led by Professor David J. Schiffrin.AffiliationsHydrogen Energy and Sonochemistry research group, Department of Energy and Process Engineering, Faculty of Engineering & NTNU Team Hydrogen, Norwegian University of Science and Technology (NTNU), Trondheim, NorwayJacob J. Lamb obtained both his B.Sc. and M.Sc. in Biochemistry at the University of Otago, New Zealand, where he worked in a research laboratory with Associate Professor Julian Eaton-Rye and Associate Professor Martin Hohmann-Marriott. He moved to Norway in 2013 to undertake a PhD in Biotechnology under the supervision of Associate Professor Martin Hohmann-Marriott, which he completed in June 2016. From 2016 to 2018, he undertook postdoctoral research in biogas and sensor technologies with Professor Dag R. Hjelme and Associate Professor Kristian M. Lien at NTNU. Since 2018, he has worked as a senior researcher at NTNU on a variety of projects within the fields of biology, bioenergy, renewable energy, sensor technologies and energy storage His areas of expertise include photosynthesis, microbiology, biological and biochemical techniques, electronics and programming, renewable energy, energy storage, sensor technologies, optical spectroscopy and process engineering. His research motivation is to improve renewable energy sources, increase sustainability within agricultural and aqua cultural industries, develop technologies for climate change mitigation as well as develop ways to measure, analyse, and optimize biological processes.AffiliationsDepartment of Electronic Systems & Department of Energy and Process Engineering & ENERSENSE NTNU

Produktdetails

Einband

Taschenbuch

Erscheinungsdatum

12.06.2021

Abbildungen

XIII, 207 p. 49 illus., 46 illus. in color.

Herausgeber

Verlag

Springer

Seitenzahl

207

Maße (L/B/H)

23,5/15,5/1,3 cm

Gewicht

347 g

Auflage

1st ed. 2020

Sprache

Englisch

ISBN

978-3-030-43678-0

Herstelleradresse

Springer-Verlag GmbH
Tiergartenstr. 17
69121 Heidelberg
DE

Email: ProductSafety@springernature.com

Noch keine Bewertungen vorhanden

Verfassen Sie die erste Bewertung zu diesem Artikel

Helfen Sie anderen Kundinnen und Kunden durch Ihre Meinung.

Kundinnen und Kunden meinen

Bewertungen (0)

  • Produktbild: Micro-Optics and Energy

  • Section 1: Optical Properties for Sensors.- Chapter 1.1: Introduction to Optical Sensors.- Chapter 1.2: Light Properties and Sensors.- Section 2: Optical Sensor Measurements.- Chapter 2.1: Temperature and Humidity Measurements.- Chapter 2.2: Hydrogen Gas Measurements.- Chapter 2.3: Sensor Fusion.- Section 3: Energy Production and Storage.- Chapter 3.1: Hydrogen Fuel Cells and Water Electrolysers.- Chapter 3.2: Ultrasound-Assisted Electrolytic Hydrogen Production.- Chapter 3.3: Low Grade Waste Heat to Hydrogen.- Chapter 3.4: Liquid Air Energy Storage.- Chapter 3.5: Hydrogen and Biogas.- Chapter 3.6: Lifetime Expectancy of Lithium-ion Batteries.- Section 4: Micro-Optical Sensors in Energy Systems.- Chapter 4.1: Thermal Management of Lithium Ion Batteries.- Chapter 4.2: Reverse Electrodialysis Cells.- Acknowledgements.