Karapatsia A, Pappas I, Penloglou G et al (2017) Optimization of dilute acid pretreatment and
enzymatic hydrolysis of Phalaris aquatica L. lignocellulosic biomass in batch and fed-batch
processes. BioEnergy Res 10:225–236. https://doi.org/10.1007/s12155-016-9793-4
Karimi K, Taherzadeh MJ (2016) A critical review on analysis in pretreatment of lignocelluloses:
degree of polymerization, adsorption/desorption, and accessibility. Bioresour Technol
203:348–356
Kenney WA, Sennerby-Forsse L, Layton P (1990) A review of biomass quality research relevant to
the use of poplar and willow for energy conversion. Biomass 21(3):163–188
Kim M, Day DF (2011) Composition of sugar cane, energy cane, and sweet sorghum suitable for
ethanol production at Louisiana sugar mills. J Ind Microbiol Biotechnol 38(7):803–807
Kim S, Dale BE (2004) Global potential bioethanol production from wasted crops and crop
residues. Biomass Bioenergy 26(4):361–375
Kole C (2010) Genetics, genomics and breeding of sugarcane. In: Henry RJ, Kole C (eds) , 1st edn.
Science Publishers, Enfield, New Hampshire
Kuhad RC, Singh A (1993) Lignocellulose biotechnology: current and future prospects. Crit Rev
Biotechnol 13(2):151–172
Kumar P, Barrett DM, Delwiche MJ, Stroeve P (2009) Methods for pretreatment of lignocellulosic
biomass for efficient hydrolysis and biofuel production. Ind Eng Chem Res 48(8):3713–3729
Kumar R, Tabatabaei M, Karimi K, Sárvári Horváth I (2016) Recent updates on lignocellulosic
biomass derived ethanol-a review. Biofuel Res J 3(1):347–356
Kumar AK, Sharma S (2017) Recent updates on different methods of pretreatment of lignocellulosic feedstocks: a review. Bioresour Bioprocess 4:7. https://doi.org/10.1186/s40643-0170137-9
Kumar M, Oyedun AO, Kumar A (2018) A review on the current status of various hydrothermal
technologies on biomass feedstock. Renew Sust Energ Rev 81:1742–1770
Li J, Wei X, Wang Q, Chen J, Chang G, Kong L, Liu Y (2012) Homogeneous isolation of
nanocellulose from sugarcane bagasse by high pressure homogenization. Carbohydr Polym
90(4):1609–1613
Limayem A, Ricke SC (2012) Lignocellulosic biomass for bioethanol production: current
perspectives, potential issues and future prospects. Prog Energy Combust Sci 38(4):449–467
Loow Y-L, Wu TY, Md Jahim J et al (2016) Typical conversion of lignocellulosic biomass into
reducing sugars using dilute acid hydrolysis and alkaline pretreatment. Cellulose 23:1491–1520.
https://doi.org/10.1007/s10570-016-0936-8
Lü J, Sheahan C, Fu P (2011) Metabolic engineering of algae for fourth generation biofuels
production. Energy Environ Sci 4(7):2451–2466
Ludueña L, Fasce D, Alvarez VA, Stefani PM (2011) Nanocellulose from rice husk following
alkaline treatment to remove silica. Bioresources 6(2):1440–1453
Luo X, Zhu JY (2011) Effects of drying-induced fiber hornification on enzymatic saccharification of
lignocelluloses. Enzyme Microb Technol 48(1):92–99
Macgregor AW, Fincher GB (1993) Carbohydrates of the barley grain. In: Macgregor AW, Bhatty
RS (eds) Barley: chemistry and technology. American Association of Cereal Chemists
Martino DC, Colodette JL, Chandra R, Saddler J (2017) Steam explosion pretreatment used to
remove hemicellulose to enhance the production of a eucalyptus organosolv dissolving pulp.
Wood Sci Technol 51:557–569. https://doi.org/10.1007/s00226-016-0889-y
Matsuoka S et al (2014) Energy cane : its concept, development, characteristics, and prospects. Adv
Bot 2014. https://doi.org/10.1155/2014/597275
McKendry P (2002) Energy production from biomass (part 1): overview of biomass. Bioresour
Technol 83(1):37–46
Medina DP, Colorado AA (2006) Ethanol producction of banana shell and cassava starch. Dyna 73
(150):21–27
Melati RB, Shimizu FL, Oliveira G, Pagnocca FC, de Souza W, Sant’Anna C, Brienzo M (2019)
Key factors affecting the recalcitrance and conversion process of biomass. Bioenergy Res 12
(1):1–20
2 Biofuels Generation Based on Technical Process and Biomass Quality
61
enzymatic hydrolysis of Phalaris aquatica L. lignocellulosic biomass in batch and fed-batch
processes. BioEnergy Res 10:225–236. https://doi.org/10.1007/s12155-016-9793-4
Karimi K, Taherzadeh MJ (2016) A critical review on analysis in pretreatment of lignocelluloses:
degree of polymerization, adsorption/desorption, and accessibility. Bioresour Technol
203:348–356
Kenney WA, Sennerby-Forsse L, Layton P (1990) A review of biomass quality research relevant to
the use of poplar and willow for energy conversion. Biomass 21(3):163–188
Kim M, Day DF (2011) Composition of sugar cane, energy cane, and sweet sorghum suitable for
ethanol production at Louisiana sugar mills. J Ind Microbiol Biotechnol 38(7):803–807
Kim S, Dale BE (2004) Global potential bioethanol production from wasted crops and crop
residues. Biomass Bioenergy 26(4):361–375
Kole C (2010) Genetics, genomics and breeding of sugarcane. In: Henry RJ, Kole C (eds) , 1st edn.
Science Publishers, Enfield, New Hampshire
Kuhad RC, Singh A (1993) Lignocellulose biotechnology: current and future prospects. Crit Rev
Biotechnol 13(2):151–172
Kumar P, Barrett DM, Delwiche MJ, Stroeve P (2009) Methods for pretreatment of lignocellulosic
biomass for efficient hydrolysis and biofuel production. Ind Eng Chem Res 48(8):3713–3729
Kumar R, Tabatabaei M, Karimi K, Sárvári Horváth I (2016) Recent updates on lignocellulosic
biomass derived ethanol-a review. Biofuel Res J 3(1):347–356
Kumar AK, Sharma S (2017) Recent updates on different methods of pretreatment of lignocellulosic feedstocks: a review. Bioresour Bioprocess 4:7. https://doi.org/10.1186/s40643-0170137-9
Kumar M, Oyedun AO, Kumar A (2018) A review on the current status of various hydrothermal
technologies on biomass feedstock. Renew Sust Energ Rev 81:1742–1770
Li J, Wei X, Wang Q, Chen J, Chang G, Kong L, Liu Y (2012) Homogeneous isolation of
nanocellulose from sugarcane bagasse by high pressure homogenization. Carbohydr Polym
90(4):1609–1613
Limayem A, Ricke SC (2012) Lignocellulosic biomass for bioethanol production: current
perspectives, potential issues and future prospects. Prog Energy Combust Sci 38(4):449–467
Loow Y-L, Wu TY, Md Jahim J et al (2016) Typical conversion of lignocellulosic biomass into
reducing sugars using dilute acid hydrolysis and alkaline pretreatment. Cellulose 23:1491–1520.
https://doi.org/10.1007/s10570-016-0936-8
Lü J, Sheahan C, Fu P (2011) Metabolic engineering of algae for fourth generation biofuels
production. Energy Environ Sci 4(7):2451–2466
Ludueña L, Fasce D, Alvarez VA, Stefani PM (2011) Nanocellulose from rice husk following
alkaline treatment to remove silica. Bioresources 6(2):1440–1453
Luo X, Zhu JY (2011) Effects of drying-induced fiber hornification on enzymatic saccharification of
lignocelluloses. Enzyme Microb Technol 48(1):92–99
Macgregor AW, Fincher GB (1993) Carbohydrates of the barley grain. In: Macgregor AW, Bhatty
RS (eds) Barley: chemistry and technology. American Association of Cereal Chemists
Martino DC, Colodette JL, Chandra R, Saddler J (2017) Steam explosion pretreatment used to
remove hemicellulose to enhance the production of a eucalyptus organosolv dissolving pulp.
Wood Sci Technol 51:557–569. https://doi.org/10.1007/s00226-016-0889-y
Matsuoka S et al (2014) Energy cane : its concept, development, characteristics, and prospects. Adv
Bot 2014. https://doi.org/10.1155/2014/597275
McKendry P (2002) Energy production from biomass (part 1): overview of biomass. Bioresour
Technol 83(1):37–46
Medina DP, Colorado AA (2006) Ethanol producction of banana shell and cassava starch. Dyna 73
(150):21–27
Melati RB, Shimizu FL, Oliveira G, Pagnocca FC, de Souza W, Sant’Anna C, Brienzo M (2019)
Key factors affecting the recalcitrance and conversion process of biomass. Bioenergy Res 12
(1):1–20
2 Biofuels Generation Based on Technical Process and Biomass Quality
61
