This contributed volume presents new insight into sustainable possibilities of combination of nanomaterial and bioenergy production together. Biofuels as renewable energy sources have tremendous potential to replace fossil fuels in future energy scenario as biofuels production is likely to be advanced and novel research areas offers green alternative energy sources. continuous efforts are being made for the cost-effective production of biofuels worldwide to balance its techno-economy. In series of tremendous effort to improve biofuels production technologies, use of nanomaterials to improve biofuels production efficiency is highly emerging area with full scope to developed low cost, rapid technologies for biofuels production.  The book covers the practical utility based properties of nanomaterial and bioenergy production together. It also discusses the recent advancements on various nanomaterial utility in biofuel production process along with its low cost application.  It covers mega audiences, which include academician, researchers, and industries people. This book will be highly interesting for researchers and scientists as well as related industries.
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In series of tremendous effort to improve biofuels production technologies, use of nanomaterials to improve biofuels production efficiency is highly emerging area with full scope to developed low cost, rapid technologies for biofuels production.
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Chapter 1. Application of nanomaterials for renewable energy production.- Chapter 2. APPLICATIONS OF NANOMATERIALS IN LIQUID BIOFUELS PRODUCTION.- Chapter 3. APPLICATIONS OF NANOMATERIALS IN GASEOUS BIOFUELS PRODUCTION.- Chapter 4. MICROBIAL ASSISTED SYNTHESIS OF NANOPHOTOCATALYSTS FOR DARK FERMENTATIVE HYDROGEN GENERATION.- Chapter 5. Green Route Synthesized Iron Nanoparticles for Biohydrogen Production.- Chapter 6. Synthesis and application of nanoengineered cellulosic biomass in biohydrogen production.- Chapter 7. Microbial mediated synthesis of Nanoparticles and their role in Bioethanol Production.- Chapter 8. Green synthesis of nanomaterials from Biomass waste for Biodiesel Production.- Chapter 9. Recent Advances in Conversion of Agricultural Waste to  Biofuel by Nanoparticles.
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This contributed volume presents new insight into sustainable possibilities of combination of nanomaterial and bioenergy production together. Biofuels as renewable energy sources have tremendous potential to replace fossil fuels in future energy scenario as biofuels production is likely to be advanced and novel research areas offers green alternative energy sources. continuous efforts are being made for the cost-effective production of biofuels worldwide to balance its techno-economy. In series of tremendous effort to improve biofuels production technologies, use of nanomaterials to improve biofuels production efficiency is highly emerging area with full scope to developed low cost, rapid technologies for biofuels production.  The book covers the practical utility based properties of nanomaterial and bioenergy production together. It also discusses the recent advancements on various nanomaterial utility in biofuel production process along with its low cost application.  It covers mega audiences, which include academician, researchers, and industries people. This book will be highly interesting for researchers and scientists as well as related industries.
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Discusses the feasibility of nanomaterial and bioenergy combination for sustainable biofuels production Covers nanobioenergy combination impacts on different biofuels production mediated by nanomaterial Provides in depth knowledge on practical application nanobioenegy
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GPSR Compliance The European Union's (EU) General Product Safety Regulation (GPSR) is a set of rules that requires consumer products to be safe and our obligations to ensure this. If you have any concerns about our products you can contact us on ProductSafety@springernature.com. In case Publisher is established outside the EU, the EU authorized representative is: Springer Nature Customer Service Center GmbH Europaplatz 3 69115 Heidelberg, Germany ProductSafety@springernature.com
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Produktdetaljer

ISBN
9789811962332
Publisert
2023-02-10
Utgiver
Vendor
Springer Verlag, Singapore
Høyde
235 mm
Bredde
155 mm
Aldersnivå
Research, P, 06
Språk
Product language
Engelsk
Format
Product format
Innbundet

Biographical note

Dr. Manish Srivastava

Department of Chemical Engineering and Technology, IIT (BHU) Varanasi-221005, U.P., India

Prof. P.K. Mishra
Department of Chemical Engineering and Technology, IIT (BHU) Varanasi-221005, U.P., India