Trivedi N, Gupta V, Reddy CRK, Jha B (2013) Enzymatic hydrolysis and production of bioethanol
from common macrophytic green alga Ulva fasciata Delile. Bioresour Technol 150:106–112
Tye YY, Lee KT, Abdullah WNW, Leh CP (2016) The world availability of non-wood lignocellulosic biomass for the production of cellulosic ethanol and potential pretreatments for the
enhancement of enzymatic saccharification. Renew Sust Energ Rev 60:155–172
Upadhyay A, Lama JP, Tawata S (2010) Utilization of pineapple waste: a review. J Food Sci
Technol Nepal 6:10–18
Uthumporn U, Zaidul IS, Karim AA (2010) Hydrolysis of granular starch at sub-gelatinization
temperature using a mixture of amylolytic enzymes. Food Bioprod Process 88:47–54
Vanhala P, Bergström I, Haaspuro T et al (2016) Boreal forests can have a remarkable role in
reducing greenhouse gas emissions locally: land use-related and anthropogenic greenhouse gas
emissions and sinks at the municipal level. Sci Total Environ 557:51–57
Verma P, Watanabe T, Honda Y, Watanabe T (2011) Microwave-assisted pretreatment of woody
biomass with ammonium molybdate activated by H 2 O 2 . Bioresour Technol 102:3941–3945
Vohra M, Manwar J, Manmode R et al (2014) Bioethanol production: feedstock and current
technologies. J Environ Chem Eng 2:573–584
Wahono SK, Rosyida VT, Afrizal A, Kismurtono M (2012) Residual sugar reduction concentration
parameter at the product of simultaneous saccharification and fermentation process of secondgeneration bioethanol from bagasse cane. In: Proceeding of international conference on sustainable engineering and application. Yogyakarta, pp 27–30
Wahono SK, Rosyida VT, Darsih C et al (2015) Optimization of simultaneous saccharification and
fermentation incubation time using cellulose enzyme for sugarcane bagasse on the secondgeneration bioethanol production technology. Energy Procedia 65:331–336
Wang E-Q, Li S-Z, Tao L et al (2010) Modeling of rotating drum bioreactor for anaerobic solidstate fermentation. Appl Energy 87:2839–2845
Wang P, Chung T-S (2015) Recent advances in membrane distillation processes: membrane
development, configuration design and application exploring. J Membr Sci 474:39–56
Wargacki AJ, Leonard E, Win MN et al (2012) An engineered microbial platform for direct biofuel
production from brown macroalgae. Science (80-) 335:308–313
Wen Z-Y, Chen F (2003) Heterotrophic production of eicosapentaenoic acid by microalgae.
Biotechnol Adv 21:273–294
Wisselink HW, Toirkens MJ, Wu Q et al (2009) Novel evolutionary engineering approach for
accelerated utilization of glucose, xylose, and arabinose mixtures by engineered Saccharomyces
cerevisiae strains. Appl Environ Microbiol 75:907–914
Wu F-C, Wu J-Y, Liao Y-J et al (2014) Sequential acid and enzymatic hydrolysis in situ and
bioethanol production from Gracilaria biomass. Bioresour Technol 156:123–131
Wyman CE (2018) Ethanol production from lignocellulosic biomass: overview. In: Handbook on
bioethanol. Routledge, pp 1–18
Xiao D, Wu S, Zhu X et al (2010) Effects of soya fatty acids on cassava ethanol fermentation. Appl
Biochem Biotechnol 160:410–420
Yanagisawa M, Nakamura K, Ariga O, Nakasaki K (2011) Production of high concentrations of
bioethanol from seaweeds that contain easily hydrolyzable polysaccharides. Process Biochem
46:2111–2116
Yang L, Liu Y, Ruan R et al (2011) Advances in production of 5-hydroxymethylfurfural from
starch. Mod Chem Ind 31:332–337
Yao C, Yang X, Roy Raine R et al (2009) The effects of MTBE/ethanol additives on toxic species
concentration in gasoline flame. Energy Fuel 23:3543–3548
Yu J, Tan T, others (2008) Ethanol production by solid state fermentation of sweet sorghum using
thermotolerant yeast strain. Fuel Process Technol 89:1056–1059
Yu M, Li J, Chang S et al (2016) Bioethanol production using the sodium hydroxide pretreated
sweet sorghum bagasse without washing. Fuel 175:20–25
200
B. Kumar et al.
from common macrophytic green alga Ulva fasciata Delile. Bioresour Technol 150:106–112
Tye YY, Lee KT, Abdullah WNW, Leh CP (2016) The world availability of non-wood lignocellulosic biomass for the production of cellulosic ethanol and potential pretreatments for the
enhancement of enzymatic saccharification. Renew Sust Energ Rev 60:155–172
Upadhyay A, Lama JP, Tawata S (2010) Utilization of pineapple waste: a review. J Food Sci
Technol Nepal 6:10–18
Uthumporn U, Zaidul IS, Karim AA (2010) Hydrolysis of granular starch at sub-gelatinization
temperature using a mixture of amylolytic enzymes. Food Bioprod Process 88:47–54
Vanhala P, Bergström I, Haaspuro T et al (2016) Boreal forests can have a remarkable role in
reducing greenhouse gas emissions locally: land use-related and anthropogenic greenhouse gas
emissions and sinks at the municipal level. Sci Total Environ 557:51–57
Verma P, Watanabe T, Honda Y, Watanabe T (2011) Microwave-assisted pretreatment of woody
biomass with ammonium molybdate activated by H 2 O 2 . Bioresour Technol 102:3941–3945
Vohra M, Manwar J, Manmode R et al (2014) Bioethanol production: feedstock and current
technologies. J Environ Chem Eng 2:573–584
Wahono SK, Rosyida VT, Afrizal A, Kismurtono M (2012) Residual sugar reduction concentration
parameter at the product of simultaneous saccharification and fermentation process of secondgeneration bioethanol from bagasse cane. In: Proceeding of international conference on sustainable engineering and application. Yogyakarta, pp 27–30
Wahono SK, Rosyida VT, Darsih C et al (2015) Optimization of simultaneous saccharification and
fermentation incubation time using cellulose enzyme for sugarcane bagasse on the secondgeneration bioethanol production technology. Energy Procedia 65:331–336
Wang E-Q, Li S-Z, Tao L et al (2010) Modeling of rotating drum bioreactor for anaerobic solidstate fermentation. Appl Energy 87:2839–2845
Wang P, Chung T-S (2015) Recent advances in membrane distillation processes: membrane
development, configuration design and application exploring. J Membr Sci 474:39–56
Wargacki AJ, Leonard E, Win MN et al (2012) An engineered microbial platform for direct biofuel
production from brown macroalgae. Science (80-) 335:308–313
Wen Z-Y, Chen F (2003) Heterotrophic production of eicosapentaenoic acid by microalgae.
Biotechnol Adv 21:273–294
Wisselink HW, Toirkens MJ, Wu Q et al (2009) Novel evolutionary engineering approach for
accelerated utilization of glucose, xylose, and arabinose mixtures by engineered Saccharomyces
cerevisiae strains. Appl Environ Microbiol 75:907–914
Wu F-C, Wu J-Y, Liao Y-J et al (2014) Sequential acid and enzymatic hydrolysis in situ and
bioethanol production from Gracilaria biomass. Bioresour Technol 156:123–131
Wyman CE (2018) Ethanol production from lignocellulosic biomass: overview. In: Handbook on
bioethanol. Routledge, pp 1–18
Xiao D, Wu S, Zhu X et al (2010) Effects of soya fatty acids on cassava ethanol fermentation. Appl
Biochem Biotechnol 160:410–420
Yanagisawa M, Nakamura K, Ariga O, Nakasaki K (2011) Production of high concentrations of
bioethanol from seaweeds that contain easily hydrolyzable polysaccharides. Process Biochem
46:2111–2116
Yang L, Liu Y, Ruan R et al (2011) Advances in production of 5-hydroxymethylfurfural from
starch. Mod Chem Ind 31:332–337
Yao C, Yang X, Roy Raine R et al (2009) The effects of MTBE/ethanol additives on toxic species
concentration in gasoline flame. Energy Fuel 23:3543–3548
Yu J, Tan T, others (2008) Ethanol production by solid state fermentation of sweet sorghum using
thermotolerant yeast strain. Fuel Process Technol 89:1056–1059
Yu M, Li J, Chang S et al (2016) Bioethanol production using the sodium hydroxide pretreated
sweet sorghum bagasse without washing. Fuel 175:20–25
200
B. Kumar et al.
