physical, chemical, and biological have proven to be effective. Advancement is the
resistance of the micro-organisms to the inhibitory compounds that may be naturally
occurring or engineered ones. Adopted technology should be economical and highly
effective toward inhibitors.
References
Abraham A, Mathew AK, Park H, Choi O, Sindhu R, Parameswaran B, Pandey A, Park JH, Sang
B-I (2020) Pretreatment strategies for enhanced biogas production from lignocellulosic biomass.
Bioresour Technol 301:122725
Adeboye PT, Bettiga M, Aldaeus F, Larsson PT, Olsson L (2015) Catabolism of coniferyl aldehyde,
ferulic acid and p-coumaric acid by Saccharomyces cerevisiae yields less toxic products. Microb
Cell Fact 14(1):149
Agarwal B, Ahluwalia V, Pandey A, Sangwan RS, Elumalai S (2017) Sustainable production of
chemicals and energy fuel precursors from lignocellulosic fractions. In: Biofuels. Springer,
Singapore, pp 7–33
Agbor VB, Cicek N, Sparling R, Berlin A, Levin DB (2011) Biomass pretreatment: fundamentals
toward application. Biotechnol Adv 29(6):675–685
Alizadeh H, Teymouri F, Gilbert TI, Dale BE (2005) Pretreatment of switchgrass by ammonia fiber
explosion (AFEX). Appl Biochem Biotechnol 124(1–3):1133–1141
Almario MP, Reyes LH, Kao KC (2013) Evolutionary engineering of saccharomyces cerevisiae for
enhanced tolerance to hydrolysates of lignocellulosic biomass. Biotechnology and bioengineering. 110(10):2616–2623
Almeida JR, Modig T, Petersson A, Hähn-Hägerdal B, Lidén G, Gorwa-Grauslund MF (2007)
Increased tolerance and conversion of inhibitors in lignocellulosic hydrolysates by Saccharomyces cerevisiae. J Chem Technol Biotechnol 82(4):340–349
Alonso DM, Wettstein SG, Dumesic JA (2012) Bimetallic catalysts for upgrading of biomass to
fuels and chemicals. Chem Soc Rev 41(24):8075–8098
Alriksson B, Cavka A, Jönsson LJ (2011) Improving the fermentability of enzymatic hydrolysates
of lignocellulose through chemical in-situ detoxification with reducing agents. Bioresour
Technol 102(2):1254–1263
Alvira P, Tomás-Pejó E, Ballesteros M, Negro M (2010) Pretreatment technologies for an efficient
bioethanol production process based on enzymatic hydrolysis: a review. Bioresour Technol 101
(13):4851–4861
An Y-X, Zong M-H, Wu H, Li N (2015) Pretreatment of lignocellulosic biomass with renewable
cholinium ionic liquids: biomass fractionation, enzymatic digestion and ionic liquid reuse.
Bioresour Technol 192:165–171
Arora A, Priya S, Sharma P, Sharma S, Nain L (2016) Evaluating biological pretreatment as a
feasible methodology for ethanol production from paddy straw. Biocatal Agric Biotechnol
8:66–72
Arora A, Nandal P, Singh J, Verma ML (2020) Nanobiotechnological advancements in lignocellulosic biomass pretreatment. Mater Sci Energy Technol 3:308–318
Azhar SHM, Abdulla R, Jambo SA, Marbawi H, Gansau JA, Faik AAM, Rodrigues KF (2017)
Yeasts in sustainable bioethanol production: a review. Biochem Biophys Rep 10:52–61
Barakat A, Mayer-Laigle C, Solhy A, Arancon RA, De Vries H, Luque R (2014) Mechanical
pretreatments of lignocellulosic biomass: towards facile and environmentally sound technologies for biofuels production. RSC Adv 4(89):48109–48127
Behera S, Arora R, Nandhagopal N, Kumar S (2014) Importance of chemical pretreatment for
bioconversion of lignocellulosic biomass. Renew Sustain Energy Rev 36:91–106
146
FaizaKausar et al.
resistance of the micro-organisms to the inhibitory compounds that may be naturally
occurring or engineered ones. Adopted technology should be economical and highly
effective toward inhibitors.
References
Abraham A, Mathew AK, Park H, Choi O, Sindhu R, Parameswaran B, Pandey A, Park JH, Sang
B-I (2020) Pretreatment strategies for enhanced biogas production from lignocellulosic biomass.
Bioresour Technol 301:122725
Adeboye PT, Bettiga M, Aldaeus F, Larsson PT, Olsson L (2015) Catabolism of coniferyl aldehyde,
ferulic acid and p-coumaric acid by Saccharomyces cerevisiae yields less toxic products. Microb
Cell Fact 14(1):149
Agarwal B, Ahluwalia V, Pandey A, Sangwan RS, Elumalai S (2017) Sustainable production of
chemicals and energy fuel precursors from lignocellulosic fractions. In: Biofuels. Springer,
Singapore, pp 7–33
Agbor VB, Cicek N, Sparling R, Berlin A, Levin DB (2011) Biomass pretreatment: fundamentals
toward application. Biotechnol Adv 29(6):675–685
Alizadeh H, Teymouri F, Gilbert TI, Dale BE (2005) Pretreatment of switchgrass by ammonia fiber
explosion (AFEX). Appl Biochem Biotechnol 124(1–3):1133–1141
Almario MP, Reyes LH, Kao KC (2013) Evolutionary engineering of saccharomyces cerevisiae for
enhanced tolerance to hydrolysates of lignocellulosic biomass. Biotechnology and bioengineering. 110(10):2616–2623
Almeida JR, Modig T, Petersson A, Hähn-Hägerdal B, Lidén G, Gorwa-Grauslund MF (2007)
Increased tolerance and conversion of inhibitors in lignocellulosic hydrolysates by Saccharomyces cerevisiae. J Chem Technol Biotechnol 82(4):340–349
Alonso DM, Wettstein SG, Dumesic JA (2012) Bimetallic catalysts for upgrading of biomass to
fuels and chemicals. Chem Soc Rev 41(24):8075–8098
Alriksson B, Cavka A, Jönsson LJ (2011) Improving the fermentability of enzymatic hydrolysates
of lignocellulose through chemical in-situ detoxification with reducing agents. Bioresour
Technol 102(2):1254–1263
Alvira P, Tomás-Pejó E, Ballesteros M, Negro M (2010) Pretreatment technologies for an efficient
bioethanol production process based on enzymatic hydrolysis: a review. Bioresour Technol 101
(13):4851–4861
An Y-X, Zong M-H, Wu H, Li N (2015) Pretreatment of lignocellulosic biomass with renewable
cholinium ionic liquids: biomass fractionation, enzymatic digestion and ionic liquid reuse.
Bioresour Technol 192:165–171
Arora A, Priya S, Sharma P, Sharma S, Nain L (2016) Evaluating biological pretreatment as a
feasible methodology for ethanol production from paddy straw. Biocatal Agric Biotechnol
8:66–72
Arora A, Nandal P, Singh J, Verma ML (2020) Nanobiotechnological advancements in lignocellulosic biomass pretreatment. Mater Sci Energy Technol 3:308–318
Azhar SHM, Abdulla R, Jambo SA, Marbawi H, Gansau JA, Faik AAM, Rodrigues KF (2017)
Yeasts in sustainable bioethanol production: a review. Biochem Biophys Rep 10:52–61
Barakat A, Mayer-Laigle C, Solhy A, Arancon RA, De Vries H, Luque R (2014) Mechanical
pretreatments of lignocellulosic biomass: towards facile and environmentally sound technologies for biofuels production. RSC Adv 4(89):48109–48127
Behera S, Arora R, Nandhagopal N, Kumar S (2014) Importance of chemical pretreatment for
bioconversion of lignocellulosic biomass. Renew Sustain Energy Rev 36:91–106
146
FaizaKausar et al.
