Semhaoui I, Zarguili I, Rezzoug SA et al (2017) Bioconversion of Moroccan Alfa (Stipa
Tenacissima) by thermomechanical pretreatment combined to acid or alkali spraying for ethanol
production. J Mater 8:2619–2631
Shanavas S, Padmaja G, Moorthy SN et al (2011) Process optimization for bioethanol production
from cassava starch using novel eco-friendly enzymes. Biomass Bioenergy 35:901–909
Shapouri H, Duffield JA, Wang MQ, others (2002) The energy balance of corn ethanol: an update.
U.S. Department of Agriculture, Office of the Chief Economist, Office of Energy Policy and
New Uses. Agricultural Economic Report No. 814, pp 1–19
Shigechi H, Fujita Y, Koh J et al (2004) Energy-saving direct ethanol production from lowtemperature-cooked corn starch using a cell-surface engineered yeast strain co-displaying
glucoamylase and α-amylase. Biochem Eng J 18:149–153
Shigechi H, Uyama K, Fujita Y et al (2002) Efficient ethanol production from starch through
development of novel flocculent yeast strains displaying glucoamylase and co-displaying or
secreting α-amylase. J Mol Catal B Enzym 17:179–187
Shikida PFA, Finco A, Cardoso BF et al (2014) A comparison between ethanol and biodiesel
production: the Brazilian and European experiences. In: Liquid biofuels: emergence, development and prospects. Springer, London, pp 25–53
Sindhu R, Gnansounou E, Binod P, Pandey A (2016) Bioconversion of sugarcane crop residue for
value added products – an overview. Renew Energy 98:203–215
Singh A, Nigam PS, Murphy JD (2011) Renewable fuels from algae: an answer to debatable land
based fuels. Bioresour Technol 102:10–16
Singh V (2012) Effect of corn quality on bioethanol production. Biocatal Agric Biotechnol
1:353–355
Sivaramakrishnan R, Incharoensakdi A (2018) Utilization of microalgae feedstock for concomitant
production of bioethanol and biodiesel. Fuel 217:458–466
Snoek T, Verstrepen KJ, Voordeckers K (2016) How do yeast cells become tolerant to high ethanol
concentrations? Curr Genet 62:475–480
Sørensen A, Teller PJ, Hilstrøm T, Ahring BK (2008) Hydrolysis of Miscanthus for bioethanol
production using dilute acid presoaking combined with wet explosion pre-treatment and enzymatic treatment. Bioresour Technol 99:6602–6607
Spolaore P, Joannis-Cassan C, Duran E, Isambert A (2006) Commercial applications of microalgae.
J Biosci Bioeng 101:87–96
Srichuwong S, Fujiwara M, Wang X et al (2009) Simultaneous saccharification and fermentation
(SSF) of very high gravity (VHG) potato mash for the production of ethanol. Biomass
Bioenergy 33:890–898
SugarCane.org Ethanol – SugarCane (2019). Accessed on 13/01/2019
Szymanowska-Powalowska D, Lewandowicz G, Blaszczak W, Szwengiel A (2012) Structural
changes of corn starch during fuel ethanol production from corn flour. Biotechnol J Biotechnol
Comput Biol Bionanotechnol 93:333–341
Szymanowska-Powałowska D, Lewandowicz G, Kubiak P, Błaszczak W (2014) Stability of the
process of simultaneous saccharification and fermentation of corn flour. The effect of structural
changes of starch by stillage recycling and scaling up of the process. Fuel 119:328–334
Takara D, Khanal SK (2015) Characterizing compositional changes of Napier grass at different
stages of growth for biofuel and biobased products potential. Bioresour Technol 188:103–108
TCI (2018) In a first, SpiceJet operates India’s first biojet fuel flight. https://yourstory.com/2018/08/
indian-farmers-bio-f
Thammasittirong SN-R, Thirasaktana T, Thammasittirong A, Srisodsuk M (2013) Improvement of
ethanol production by ethanol-tolerant Saccharomyces cerevisiae UVNR56. Springerplus 2
(583):1–5
Thatoi H, Dash PK, Mohapatra S, Swain MR (2016) Bioethanol production from tuber crops using
fermentation technology: a review. Int J Sustain Energy 35:443–468
Tikka C, Osuru HP, Atluri N et al (2013) Isolation and characterization of ethanol tolerant yeast
strains. Bioinformation 9(8):421–425
7 Bioethanol Production: Generation-Based Comparative Status Measurements
199
Tenacissima) by thermomechanical pretreatment combined to acid or alkali spraying for ethanol
production. J Mater 8:2619–2631
Shanavas S, Padmaja G, Moorthy SN et al (2011) Process optimization for bioethanol production
from cassava starch using novel eco-friendly enzymes. Biomass Bioenergy 35:901–909
Shapouri H, Duffield JA, Wang MQ, others (2002) The energy balance of corn ethanol: an update.
U.S. Department of Agriculture, Office of the Chief Economist, Office of Energy Policy and
New Uses. Agricultural Economic Report No. 814, pp 1–19
Shigechi H, Fujita Y, Koh J et al (2004) Energy-saving direct ethanol production from lowtemperature-cooked corn starch using a cell-surface engineered yeast strain co-displaying
glucoamylase and α-amylase. Biochem Eng J 18:149–153
Shigechi H, Uyama K, Fujita Y et al (2002) Efficient ethanol production from starch through
development of novel flocculent yeast strains displaying glucoamylase and co-displaying or
secreting α-amylase. J Mol Catal B Enzym 17:179–187
Shikida PFA, Finco A, Cardoso BF et al (2014) A comparison between ethanol and biodiesel
production: the Brazilian and European experiences. In: Liquid biofuels: emergence, development and prospects. Springer, London, pp 25–53
Sindhu R, Gnansounou E, Binod P, Pandey A (2016) Bioconversion of sugarcane crop residue for
value added products – an overview. Renew Energy 98:203–215
Singh A, Nigam PS, Murphy JD (2011) Renewable fuels from algae: an answer to debatable land
based fuels. Bioresour Technol 102:10–16
Singh V (2012) Effect of corn quality on bioethanol production. Biocatal Agric Biotechnol
1:353–355
Sivaramakrishnan R, Incharoensakdi A (2018) Utilization of microalgae feedstock for concomitant
production of bioethanol and biodiesel. Fuel 217:458–466
Snoek T, Verstrepen KJ, Voordeckers K (2016) How do yeast cells become tolerant to high ethanol
concentrations? Curr Genet 62:475–480
Sørensen A, Teller PJ, Hilstrøm T, Ahring BK (2008) Hydrolysis of Miscanthus for bioethanol
production using dilute acid presoaking combined with wet explosion pre-treatment and enzymatic treatment. Bioresour Technol 99:6602–6607
Spolaore P, Joannis-Cassan C, Duran E, Isambert A (2006) Commercial applications of microalgae.
J Biosci Bioeng 101:87–96
Srichuwong S, Fujiwara M, Wang X et al (2009) Simultaneous saccharification and fermentation
(SSF) of very high gravity (VHG) potato mash for the production of ethanol. Biomass
Bioenergy 33:890–898
SugarCane.org Ethanol – SugarCane (2019). Accessed on 13/01/2019
Szymanowska-Powalowska D, Lewandowicz G, Blaszczak W, Szwengiel A (2012) Structural
changes of corn starch during fuel ethanol production from corn flour. Biotechnol J Biotechnol
Comput Biol Bionanotechnol 93:333–341
Szymanowska-Powałowska D, Lewandowicz G, Kubiak P, Błaszczak W (2014) Stability of the
process of simultaneous saccharification and fermentation of corn flour. The effect of structural
changes of starch by stillage recycling and scaling up of the process. Fuel 119:328–334
Takara D, Khanal SK (2015) Characterizing compositional changes of Napier grass at different
stages of growth for biofuel and biobased products potential. Bioresour Technol 188:103–108
TCI (2018) In a first, SpiceJet operates India’s first biojet fuel flight. https://yourstory.com/2018/08/
indian-farmers-bio-f
Thammasittirong SN-R, Thirasaktana T, Thammasittirong A, Srisodsuk M (2013) Improvement of
ethanol production by ethanol-tolerant Saccharomyces cerevisiae UVNR56. Springerplus 2
(583):1–5
Thatoi H, Dash PK, Mohapatra S, Swain MR (2016) Bioethanol production from tuber crops using
fermentation technology: a review. Int J Sustain Energy 35:443–468
Tikka C, Osuru HP, Atluri N et al (2013) Isolation and characterization of ethanol tolerant yeast
strains. Bioinformation 9(8):421–425
7 Bioethanol Production: Generation-Based Comparative Status Measurements
199
