Katalog der Deutschen Nationalbibliothek

Neuigkeiten Servicezeiten in Frankfurt am Main ab 1. Dezember 2025: Montag bis Freitag 9–18 Uhr und Samstag 10–16 Uhr
Service hours in Frankfurt am Main from 1 December 2025: Monday to Friday 9:00-18:00 and Saturday 10:00-16:00
 
Neuigkeiten

Leichte Bedienung, intuitive Suche: Die Betaversion unseres neuen Katalogs ist online! → Zur Betaversion des neuen DNB-Katalogs

 
Neuigkeiten Die Lesesäle für Geisteswissenschaften, Naturwissenschaften, der Alte Lesesaal Technik und der Anne-Frank-Shoah-Lesesaal in Leipzig schließen am 04.02.2026 wegen einer Veranstaltung bereits um 15 Uhr. Die weiteren Lesesäle sowie die Servicetheke sind zu den regulären Zeiten geöffnet. //
The humanities reading room, the natural science reading room, the old technology reading room and the reading room of the Anne-Frank-Shoah-Library will close at 15:00 on 4 February 2026 due to an event. The other reading rooms and the service desk will be open during regular hours.
 
 

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Online Ressourcen
Link zu diesem Datensatz https://d-nb.info/138751301X
Titel Advances in Organic Waste Conversion Through Industrial Biotechnology / edited by Shreya Ghosh, Alok Prasad Das, Chandra Mohan, Eric van Hullebusch
Person(en) Ghosh, Shreya (Herausgeber)
Das, Alok Prasad (Herausgeber)
Mohan, Chandra (Herausgeber)
Hullebusch, Eric D. van (Herausgeber)
Organisation(en) SpringerLink (Online service) (Sonstige)
Ausgabe 1st ed. 2026
Verlag Cham : Springer Nature Switzerland, Imprint: Springer
Zeitliche Einordnung Erscheinungsdatum: 2026
Umfang/Format Online-Ressource, XI, 522 p. 61 illus., 56 illus. in color. : online resource.
Andere Ausgabe(n) Printed edition:: ISBN: 978-3-032-11376-4
Printed edition:: ISBN: 978-3-032-11378-8
Printed edition:: ISBN: 978-3-032-11379-5
Inhalt Chapter 1: Bio-Revolution: Turning Waste Into Wealth With Cutting-Edge Biotechnologies For Sustainable Waste Management -- Chapter 2: Biotechnology For Waste Disposal And Alternative Bioenergy Generation -- Chapter 3: Biodegradable Polymers: A Green Solution To Environmental Plastic Pollution -- Chapter 4: Nanobiotechnology: An Approach To Climate Resilience And Sustainability -- Chapter 5: Innovative Biotechnologies For The Generation & Application of Value-Added Products From Agro-Industrial Wastes -- Chapter 6: From Plastics To Biodegradable Polymers: A Path Toward Environmental Sustainability -- Chapter 7: Harnessing Organic Waste For Biodegradable Polymer Production: A Green Alternative To Conventional Plastics -- Chapter 8: Sustainable Bioenergy: A Green Waste Conversion Strategy For Cost-Effective Feedstock And Economic Waste-To-Wealth Solutions -- Chapter 9: The Role of Nanobiotechnology In Environmental Sustainability -- Chapter 10: Advancing Environmental Sustainability Through Nano Biotechnology: Challenges And Future Prospects -- Chapter 11: Biodegradable Polymer: An Eco-Friendly Approach To Combat Plastic Pollution -- Chapter 12: Harnessing Nanobiotechnology For Environmental Sustainability -- Chapter 13: Emerging Approach For Managing Organic Waste Through Advanced Biotechnological Methods -- Chapter 14: Overview of Microbial Waste Management of Organic Waste Through Industrial Biotechnology -- Chapter 15: Zero-Waste Manufacturing: A Green Chemistry Approach -- Chapter 16: The Role of Nanobiotechnology In Environmental Sustainability -- Chapter 17: Leveraging The Catalytic Microbial Organic Waste To Sustainable Diverse Valuable Benefit -- Chapter 18: Microbial Fermentation Strategy For Converting Organic Waste To Value-Added Product -- Chapter 19: The Role of Green Chemistry In Achieving Sustainability Goals -- Chapter 20: Microbial Genomics For A Stable Future: Tackling Strategies For Heavy Metal And Organic Pollutant Remediation
Persistent Identifier URN: urn:nbn:de:101:1-2601210307091.374795754799
DOI: 10.1007/978-3-032-11377-1
URL https://doi.org/10.1007/978-3-032-11377-1
ISBN/Einband/Preis 978-3-032-11377-1
Sprache(n) Englisch (eng)
Beziehungen Sustainable Environmental Waste Management Strategies
DDC-Notation 660.6 (maschinell ermittelte DDC-Kurznotation)
Sachgruppe(n) 660 Technische Chemie

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