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Achieving carbon-negative bioenergy systems from plant materials

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This collection reviews advances in producing next-generation biofuels from plant materials. Part 1 discusses technologies such as biomass gasification, fast pyrolysis and torrefaction. Part 2 asse...
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  • 11 February 2020
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  • Focus on net carbon capture bioenergy technologies which fully address the challenge of climate change
  • Focus on optimising use of co-products and non-food plant materials
  • Reviews of key technologies and products cover both principles and practical applications, including case studies
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Price: $195.00
Pages: 410
Publisher: Burleigh Dodds Science Publishing
Imprint: Burleigh Dodds Science Publishing
Series: Burleigh Dodds Series in Agricultural Science
Publication Date: 11 February 2020
Trim Size: 9.00 X 6.00 in
ISBN: 9781786762528
Format: Hardcover
BISACs: SCIENCE / Energy, TECHNOLOGY & ENGINEERING / Agriculture / Sustainable Agriculture, TECHNOLOGY & ENGINEERING / Power Resources / General
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Dr Christopher Saffron is an Associate Professor in the Department of Biosystems and Agricultural Engineering at Michigan State University, USA. He has published widely in the areas of biofuels, bioproducts, and bioenergy system analysis. He has a growing patent portfolio that includes biomass fractionation, cellulose hydrolysis, catalytic fast pyrolysis, and electrocatalysis. His research and teaching programs are focussed on carbon efficient approaches that benefit from 'energy upgrading', which uses non-fossil electricity to enhance the conversion of biomass into biofuels and bioproducts.

Part 1 Technologies
1.Biomass gasification for bioenergy: Maria Puig-Arnavat, Technical University of Denmark, Denmark; Tobias Pape Thomsen, Roskilde University, Denmark; and Zsuzsa Sárossy, Rasmus Østergaard Gadsbøll, Lasse Røngaard Clausen and Jesper Ahrenfeldt, Technical University of Denmark, Denmark;
2.Fast pyrolysis for biofuel production: David Shonnard, Olumide Winjobi and Daniel Kulas, Michigan Technological University, USA;
3.Producing biofuels with torrefaction: Donald R. Fosnacht, Natural Resources Research Institute – University of Minnesota, USA;

Part 2 Materials
4.Production of biodiesel from renewable sources: Dan Zeng, Daidi Fan, Le Wu and Yuqi Wang, Northwest University, China;
5.Production of biodiesel from oilseeds: Jatropha curcas: Rahmath Abdulla, Universiti Malaysia Sabah, Malaysia;
6.Production of biodiesel from oilseeds: canola/rapeseed: B. Brian He and Dev Shrestha, University of Idaho, USA;
7.Sustainable use of Miscanthus for biofuel: Paul Robson, University of Aberystwyth, UK; Astley Hastings, University of Aberdeen, UK; John Clifton-Brown, University of Aberystwyth, UK; and Jon McCalmont, University of Exeter, UK;
8.Sustainable use of switchgrass for biofuel: John Fike, Virginia Tech, USA; Vance Owens, South Dakota State University, USA; David Parrish, Virginia Tech, USA; and Rana Genedy, Cairo, Egypt;
9.Sustainable production of willow for biofuel use: M. Weih, P.-A. Hansson, J. A. Ohlsson, M. Sandgren, A. Schnürer and A.-C. Rönnberg- Wästljung, Swedish University of Agricultural Sciences, Sweden;
10.Sustainable use of seaweed for biofuel: Jay Liu, Boris Brigljević and Peyman Fasahati, Pukyong National University, South Korea;