By Shahabaddine Sokhansanj, J. Richard Hess (auth.), Jonathan R. Mielenz (eds.)
With the dwindling offers of fossil fuels and turning out to be matters concerning weather alterations as a result of eco-friendly residence gasses from those fuels, public opinion has swung dramatically in the direction of favoring the improvement of renewable strength assets. In Biofuels: tools and Protocols, career-long specialists discover a whole diversity of equipment for bioenergy protecting vital issues reminiscent of biomass creation and supply to the biorefinery, designated biochemical characterization, in addition to biotechnological concepts for changing plant topic into fuels and chemical substances. Time is of the essence during this box, and this quantity goals to supply path and suggestions to the starting to be cadre of researchers endeavoring to improve new assets of bioenergy with an outstanding, easy-to-use choice of tried-and-true equipment that allows you to keep effort and time within the box and the laboratory. Written within the hugely winning Methods in Molecular Biology™ sequence structure, chapters comprise short introductions to their respective themes, lists of the required gear, fabrics and reagents, step by step, with no trouble reproducible box and laboratory protocols, and notes on troubleshooting and heading off universal pitfalls.
Timely and authoritative, Biofuels: equipment and Protocols seeks to aid scientists and engineers as they increase and optimize bioenergy applied sciences had to greatly switch the process our power destiny once possible.
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Extra resources for Biofuels: Methods and Protocols
2005) Pipeline transport and simultaneous saccharification of corn stover. Bioresour. Technol. 96(7), 819–829 699 700 701 702 703 704 705 706 707 708 709 710 711 712 713 714 715 716 717 718 719 720 721 722 723 724 725 726 727 728 729 730 731 732 733 734 735 736 737 738 739 780 1 Chapter 2 Selecting, Establishing, and Managing Switchgrass (Panicum virgatum) for Biofuels 2 3 David J. Parrish and John H. Fike 4 Summary 5 Switchgrass is being widely considered as a feedstock for biofuel production.
Jenkins, B. M. (1997) A comment on the optimal sizing of a biomass utilization facility under constant and variable cost scaling. Biomass and Bioenergy 13, 1–9 32. , Cameron, J. , and Flynn, P. C. (2003) Biomass power cost and optimum plant size in western Canada. Biomass and Bioenergy 24, 445–464 1 Chapter 3 Agronomic Experiences with Miscanthus x giganteus in Illinois, USA Richard Pyter, Emily Heaton, Frank Dohleman, Tom Voigt, and Stephen Long 2 3 4 5 Summary 6 Since 2002, researchers at the University of Illinois, Urbana-Champaign, Illinois, have been studying the perennial warm-season grass Miscanthus × giganteus (M.
Biomass Bioenergy 26, 337–43 13. Campbell, C. , Zentner, R. , and Wall, D. D. (2002) Production of annual crops on the Canadian Prairies: trends during 1976–1998. Can. J. Soil Sci. 82, 45–57 14. Campbell, C. A. and Coxworth, E. (1999) Feasibility of sequestering carbon through use of crop residue for industrial products. Report Prepared for the Agriculture Round Table, Agriculture and Agri-Food Canada, Ottawa, ON 15. Kline, R. (2000) Estimating crop residue cover for soil erosion control. Soil fact sheet, Order no.
Biofuels: Methods and Protocols by Shahabaddine Sokhansanj, J. Richard Hess (auth.), Jonathan R. Mielenz (eds.)