Page 89 - Rakhmetov_TB03
P. 89

Lewandowski, I., Scurlock, J., Lindyall, E., Christou, M. 2003. The development and current status
                 of perennial rhizomatous grasses as energy crops in the US and Europe. Biomass & Bioenergy, vol.
                 25(25), p. 335–361.
               Leyneova, U. 2010. Travy a kapradiny. Praga. 160 p.
               Liebig, M.A., Schmer, M.R., Vogel, K.P. et al. 2008. Soil carbon storage by switchgrass grown for
                 bioenergy. BioEnergy Research, p. 215–222.
               Matumura,  M.  1998.  Autecology  of  major  forage  grass:  basic  study  for  sustainable  use.  Animal
                 Husbandry, vol. 52, p. 717–725.
               McLaughlin, S.B., De La Torre Ugarte, D.G., Garten, C.T. et al. 2002. High-value renewable energy
                 from prairie grasses. Environ. Sci. Technol, p. 2122–2129.
               McLaughlin, S.B., Kszos, L.A. 2005. Development of switchgrass (Panicum virgatum) as a bioenergy
                 feedstock in the United States. Biomass and Bioenergy, p. 515–535.
               McLaughlin,  S.B.,  Walsh,  M.E.  1998.  Evaluating  the  environmental  conse-quences  of  producing
                 herbaceous crops for bioenergy. Biomass and Bioenergy, p. 317–324.
               Mehra, K. 1963. Consideration of the African origin of Eleusine coracana (L.) Gaertn. Curr. Sci, vol. 32,
                 p. 300–301.
               Miller, M.H., Beauchampo, E.G., Lauzon, J.D. 1994. Leaching of nitrogen and phosphorus from the
                 biomass of three cover crop species. J.Environ. Qual, vol. 23(2), p. 267–272.
               Mitchell,  R.,  Vogel,  K.,  Sarath,  G.  2008.  Managing  and  enhancing  switchgrass  as  a  bioenergy
                 feedstock. Biofuels, Bioproducts, & Biorefining, p. 530–539.
               Monti, A. 2012. Switchgrass: A valuable biomass crops for energy. Lodon: Springer-Verlag. 290 p.
               Moser, B.A., Vaughn, S.F. 2010. Evaluation of alkyl esters from Camelina sativa oil as biodiesel and
                 as blend components in ultra low-sulfur diesel fuel. Bioresource Technology, vol. 101, p. 646–653.
               Moser,  B.R.  2012.  Biodiesel  from  alternative  oilseed  feedstocks:  Camelina  and  field
                 pennycress. Biofuels, vol. 3(2), p. 193–209. https://doi.org/10.4155/bfs.12.6.
               Murnen, H.K., Balan, V., Chundawat, S.P.S. et al. 2007. Optimization of ammonia fi ber expansion
                 (AFEX) pretreatment and enzymatic hydrolysis of Miscanthus × giganteus to fermentable sugars.
                 Biotechnol. Prog., vol. 23, p. 846–850.
               Nishiwaki,  A.,  Mizuguti,  A.,  Kuwabara,  S.  et  al.  2011.  Miscanthus  (Poaceae)  triploid  plants  in
                 sympatric  populations  of  Miscanthus  sacchariflorus  and  Miscanthus  sinensisin  southern  Japan.
                 American Journal of Botany, vol, 98(1), p. 154–159.
               Papatheofanous, M.G. et al. 1996. Characterization of Miscanthus sinensis potential as an industrial
                 and energy feedstock. Biomass for Energy and the Environment: Proceedings of the Ninth European
                 Bioenergy Conference. Oxford: Elsevier, p. 504–508.
               Plants  Profile  for  Eleusine  coracana  (finger  millet)  –  USDA  PLANTS.  Available  at:
                 https://plants.usda.gov.
               Plants    with    Scientific   Names     beginning     with    the   letter.   Available   at:
                 http://zipcodezoo.com/Plants/SNE_007.asp]
               Quin, L.D., Allen, D.J., Steward, J.R. 2010. Invasiveness potential of Miscanthus sinensis: implications
                 for bioenergy production in the United States. GCB Bioenergy, vol. 2(6), p. 310–320.
               Salix Energy. 2014. Available at:  http://uabio.org/img/files/ news/pdf.
               Santos, O.J. 2001. Environmental aspects of Miscanthus production. Miscanthus for energy and fibre,
                 p. 172–178.
               Scally, L., Hodkinson, T., Jones,  M.B. 2001. Origins and taxonomy of Miscanthus. Miscanthus for
                 energy and fibre, p. 1–9.
               Schmer,  M.R.,  Vogel,  K.P.,  Mitchell,  R.B.  et  al.  2008.    Net  energy  of  cellulosic  ethanol  from
                 switchgrass. Proc. National Acad. Sci., p. 464–469.
               Scurlock,  J.M.  1998.  Miscanthus:  A  Review  of  European  Experience  with  a  Novel  Energy  Crop.
                 Environmental Sciences Division Oak Ridge National Laboratory Oak Ridge. 26 p.
               Silphium integrifolium. Available at:
                 https://www.revolvy.com/main/index.php?s=Silphium%20integrifolium.
               Silphium integrifolium. Available at: http://www.missouribotanicalgarden.org/PlantFinder/.
               Silphium perfoliatum L. Available at:
                 https://www.revolvy.com/main/index.php?s=Silphium%20perfoliatum.


                                                             85
   84   85   86   87   88   89   90   91   92   93   94