Hou X, Peng W, Xiong L et al (2013) Engineering clostridium acetobutylicum for alcohol
production. J Biotechnol 166:25–33
Hsia SY, Chou YT (2014) Optimization of biohydrogen production with biomechatronics. J
Nanomater 2014:1–11
Hu P, Chakraborty S, Kumar A et al (2016) Integrated bioprocess for conversion of gaseous
substrates to liquids. Proc Natl Acad Sci U S A 113:3773–3778
Huang J, Chen D, Wei Y, Wang Q, Li Z, Chen Y et al (2014) Direct ethanol production from
lignocellulosic sugars and sugarcane bagasse by a recombinant Trichoderma reesei strain HJ48.
Sci World J 2014:798683
Into P, Pontes A, Sampaio JP, Limtong S (2020) Yeast diversity associated with the Phylloplane of
corn plants cultivated in Thailand. Microorganisms 8:80
Jang YS, Park JM, Choi S, Choi YJ, do Seung Y, Cho JH, Lee SY (2012) Engineering of
microorganisms for the production of biofuels and perspectives based on systems metabolic
engineering approaches. Biotechnol Adv 30:989–1000
Jin H, Chen L, Wang J, Zhang W (2014) Engineering biofuel tolerance in non-native producing
microorganisms. Biotechnol Adv 32:541–548
Kandasamy S, Muniraj IK, Purushothaman N et al (2016) High level secretion of laccase (LccH)
from a newly isolated white-rot basidiomycete, Hexagonia hirta MSF2. Front Microbiol 7:707.
https://doi.org/10.3389/fmicb.2016.00707
Kapdan IK, Kargi F (2006) Bio-hydrogen production from waste materials. Enzyme Microb
Technol 38:569–582
Karemore A, Nayak M, Sen R (2016) Recent inventions and trends in algal biofuels research.
Recent Pat Biotechnol 10:30–42
Kleinova A, Cvengrosova Z, Rimarcika J, Buzetzkia E, Mikulecb J, Cvengrosa J (2012) Biofuels
from algae. Procedia Eng 42:231–238
Kriger O, Budenkova E, Babich O et al (2020) The process of producing bioethanol from
Delignified cellulose isolated from plants of the Miscanthus genus. Bioengineering (Basel) 7:61
Kuhad R, Singh A (1993) Lignocellulose biotechnology: current and future prospects. Crit Rev
Biotechnol 13:151–172
Kumar R, Ghosh AK, Pal P (2020) Synergy of biofuel production with waste remediation along
with value-added co-products recovery through microalgae cultivation: a review of membraneintegrated green approach. Sci Total Environ 698:134169. https://doi.org/10.1016/j.scitotenv.
2019.134169
Larson ED (2008) Biofuel production technologies: status, prospects and implications for trade and
development. Report No. UNCTAD/DITC/TED/2007/10. In: United Nations conference on
trade and development, New York and Geneva
Lee Y, Lee K, Oh Y (2015) Recent nanoparticles engineering advances in microalgal cultivation
and harvesting processes of biodiesel production: a review. Bioresour Technol 184:63–72
Levin L, Forchiassin F, Ramos AM (2002) Copper induction of lignin-modifying enzymes in the
white-rot fungus Trametes trogii. Mycologia 94:377–383
Limayen A, Ricke S (2012) Lignocellulosic biomass for bioethanol production: current perspectives, potential issues and future prospects. Prog Energy Combust Sci 38:449–467
Lindblad P, Lindberg P, Oliveira P, Stensjo K, Heidorn T (2012) Design, engineering, and
construction of photosynthetic microbial cell factories for renewable solar fuel production.
Ambio 41:163–168
Littlewood J, Guo M, Boerjan W, Murphy RJ (2014) Bioethanol from poplar: a commercially
viable alternative to fossil fuel in the European Union. Biotechnol Biofuels 7:113. https://doi.
org/10.1186/1754-6834-7-113
Lu X (2010) A perspective: photosynthetic production of fatty acid-based biofuels in genetically
engineered cyanobacteria. Biotechnol Adv 28:742–746
Lutke-Eversloh T (2014) Application of new metabolic engineering tools for clostridium
acetobutylicum. Appl Microbiol Biotechnol 98:5823–5837
48
V. Singh et al.
production. J Biotechnol 166:25–33
Hsia SY, Chou YT (2014) Optimization of biohydrogen production with biomechatronics. J
Nanomater 2014:1–11
Hu P, Chakraborty S, Kumar A et al (2016) Integrated bioprocess for conversion of gaseous
substrates to liquids. Proc Natl Acad Sci U S A 113:3773–3778
Huang J, Chen D, Wei Y, Wang Q, Li Z, Chen Y et al (2014) Direct ethanol production from
lignocellulosic sugars and sugarcane bagasse by a recombinant Trichoderma reesei strain HJ48.
Sci World J 2014:798683
Into P, Pontes A, Sampaio JP, Limtong S (2020) Yeast diversity associated with the Phylloplane of
corn plants cultivated in Thailand. Microorganisms 8:80
Jang YS, Park JM, Choi S, Choi YJ, do Seung Y, Cho JH, Lee SY (2012) Engineering of
microorganisms for the production of biofuels and perspectives based on systems metabolic
engineering approaches. Biotechnol Adv 30:989–1000
Jin H, Chen L, Wang J, Zhang W (2014) Engineering biofuel tolerance in non-native producing
microorganisms. Biotechnol Adv 32:541–548
Kandasamy S, Muniraj IK, Purushothaman N et al (2016) High level secretion of laccase (LccH)
from a newly isolated white-rot basidiomycete, Hexagonia hirta MSF2. Front Microbiol 7:707.
https://doi.org/10.3389/fmicb.2016.00707
Kapdan IK, Kargi F (2006) Bio-hydrogen production from waste materials. Enzyme Microb
Technol 38:569–582
Karemore A, Nayak M, Sen R (2016) Recent inventions and trends in algal biofuels research.
Recent Pat Biotechnol 10:30–42
Kleinova A, Cvengrosova Z, Rimarcika J, Buzetzkia E, Mikulecb J, Cvengrosa J (2012) Biofuels
from algae. Procedia Eng 42:231–238
Kriger O, Budenkova E, Babich O et al (2020) The process of producing bioethanol from
Delignified cellulose isolated from plants of the Miscanthus genus. Bioengineering (Basel) 7:61
Kuhad R, Singh A (1993) Lignocellulose biotechnology: current and future prospects. Crit Rev
Biotechnol 13:151–172
Kumar R, Ghosh AK, Pal P (2020) Synergy of biofuel production with waste remediation along
with value-added co-products recovery through microalgae cultivation: a review of membraneintegrated green approach. Sci Total Environ 698:134169. https://doi.org/10.1016/j.scitotenv.
2019.134169
Larson ED (2008) Biofuel production technologies: status, prospects and implications for trade and
development. Report No. UNCTAD/DITC/TED/2007/10. In: United Nations conference on
trade and development, New York and Geneva
Lee Y, Lee K, Oh Y (2015) Recent nanoparticles engineering advances in microalgal cultivation
and harvesting processes of biodiesel production: a review. Bioresour Technol 184:63–72
Levin L, Forchiassin F, Ramos AM (2002) Copper induction of lignin-modifying enzymes in the
white-rot fungus Trametes trogii. Mycologia 94:377–383
Limayen A, Ricke S (2012) Lignocellulosic biomass for bioethanol production: current perspectives, potential issues and future prospects. Prog Energy Combust Sci 38:449–467
Lindblad P, Lindberg P, Oliveira P, Stensjo K, Heidorn T (2012) Design, engineering, and
construction of photosynthetic microbial cell factories for renewable solar fuel production.
Ambio 41:163–168
Littlewood J, Guo M, Boerjan W, Murphy RJ (2014) Bioethanol from poplar: a commercially
viable alternative to fossil fuel in the European Union. Biotechnol Biofuels 7:113. https://doi.
org/10.1186/1754-6834-7-113
Lu X (2010) A perspective: photosynthetic production of fatty acid-based biofuels in genetically
engineered cyanobacteria. Biotechnol Adv 28:742–746
Lutke-Eversloh T (2014) Application of new metabolic engineering tools for clostridium
acetobutylicum. Appl Microbiol Biotechnol 98:5823–5837
48
V. Singh et al.
