Page 209 - Advances in bioenergy (2016)
P. 209

6.  Demirbas A. Biorefineries: current activities and future developments. Energy Convers
             Manage 2009, 50:2782–2801.

         7.  Demirbas A. The influence of temperature on the yields of compounds existing in bio-oils
             obtained from biomass samples via pyrolysis. Fuel Process Technol 2007, 88:591–597.


         8.  Balat M. Production of bioethanol from lignocellulosic materials via the biochemical
             pathway: a review. Energ Convers Manage 2011, 52:858–875.

         9.  Sukumaran RK, Surender VJ, Sindhu R, Binod P, Janu KU, Sajna JV, Rajasree KP, Pandey
             A. Lignocellulosic ethanol in India: prospects, challenges and feedstock availability.

             Bioresour Technol 2010, 101:4826–4833.

       10.  Nanda S, Mohanty P, Pant KK, Naik S, Kozinski JA, Dalai AK. Characterization of North
             American lignocellulosic biomass and biochars in terms of their candidacy for alternate
             renewable fuels. Bioenergy Res 2013, 6:663–677.

       11.  Goyal HB, Seal D, Saxena RC. Bio-fuels from thermochemical conversion of renewable
             resources: a review. Renew Sust Energ Rev 2008, 12:504–517.


       12.  Zaldivar J, Martinez A, Ingram LO. Effect of selected aldehydes on the growth and
             fermentation of ethanologenic Escherichia coli. Biotechnol Bioeng 1999, 65:24–33.


       13.  Ayyachamy M, Cliffe FE, Coyne JM, Collier J, Tuohy MG. Lignin: untapped biopolymers
             in biomass conversion technologies. Biomass Conv Bioref 2013, 3:255–269.

       14.  Joshi J, Lawal A. Hydrodeoxygenation of pyrolysis oil in a microreactor. Chem Eng Sci
             2012, 74:1–8.

       15.  Dave CD, Pant KK. Renewable hydrogen generation by steam reforming of glycerol over
             zirconia promoted ceria supported catalyst. Renew Energy 2011, 36: 3195–3202.


       16.  Hajjaji N, Pons M. Hydrogen production via steam and autothermal reforming of beef
             tallow: a thermodynamic investigation. Int J Hydrogen Energy 2013, 38:2199–2211.

       17.  Laosiripojana N, Assabumrungrat S, Charojrochkul S. Steam reforming of ethanol with co-

             fed oxygen and hydrogen over Ni on high surface area ceria support. Appl Catal A 2007,
             327:180–188.

       18.  Dickinson RE, Errico RM, Giorgi F, Bates GT. A regional climate model for western
             United States. Clim Change 1989, 15:383–422.

       19.  Pompeo F, Santori G, Nichio NN. Hydrogen and/or syngas from steam reforming of
             glycerol Study of platinum catalysts. Int J Hydrogen Energy 2010, 35:8912–8920.


       20.  Vaidya PD, Rodrigues AE. Glycerol reforming for hydrogen production: a review. Chem
             Eng Technol 2009, 32:1463–1469.
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