Angermayr SA, Hellingwerf KJ, Lindblad P, de Mattos MJ (2009) Energy biotechnology with
cyanobacteria. Curr Opin Biotechnol 20:257–263
Anto S, Mukherjee SS, Muthappa R et al (2020) Algae as green energy reserve: technological
outlook on biofuel production. Chemosphere 242:125079
Arias A, Behera CR, Feijoo G, Sin G, Moreira MT (2020) Unravelling the environmental and
economic impacts of innovative technologies for the enhancement of biogas production and
sludge management in wastewater systems. J Environ Manage 270:110965
Aro EM (2016) From first generation biofuels to advanced solar biofuels. Ambio 45:24–31
Aryal N, Kvist T, Ammam F, Pnat D, Ottosen LDM (2018) An overview of microbial biogas
enrichment. Bioresour Technol 264:359–369
Azwar MY, Hussain MA, Abdul-Wahab AK (2014) Development of biohydrogen production by
photobiological: fermentation and electrochemical processes: a review. Renew Sustain Energy
Rev 31:158–173
Balan V (2014) Current challenges in commercially producing biofuels from lignocellulosic
biomass. ISRN Biotechnol 2014:1–31
Balasubramaniam A, Adi P, Do Thi TM, Yang JH, Labibah AS, Huang CM (2020) Skin bacteria
mediate glycerol fermentation to produce electricity and resist UV-B. Microorganisms 8:E1092
Bandyopadhyay A, Stockel J, Min H, Sherman LA, Pakrasi HB (2010) High rates of photobiological H 2 production by a cyanobacterium under aerobic conditions. Nat Commun 1:139
Bhatia L, Johri S (2015) Biovalorization potential of peels of Ananas cosmosus (L.) Merr. For
ethanol production by Pichia stipitis NCIM 3498 & Pachysolen tannophilus MTCC 1077.
Indian J Exp Biol 53:819–827
Buaban B, Inoue H, Yano S et al (2010) Bioethanol production from ball milled bagasse using an
on-site produced fungal enzyme cocktail and xylose-fermenting Pichia stipitis. J Biosci Bioeng
110:18–25
Buitron G, Kumar G, Martinez-Arce A, Moreno G (2014) Hydrogen and methane production via a
two-stage processes (H 2 -SBR+CH 4 -UASB) using tequila vinasses. Int J Hydrogen Energy
39:19249–19255
Chang FY, Lin CY (2004) Biohydrogen production using an up-flow anaerobic sludge blanket
reactor. Int J Hydrogen Energy 29:33–39
Chen Y, Liu T, He H, Liang H (2018) Fe 3 O 4 /ZnMg(Al)O magnetic nanoparticles for efficient
biodiesel production. Appl Organomet Chem 32:1–10
Cherian E, Dharmendirakumar M, Baskar G (2015) Immobilization of cellulose onto MnO 2
nanoparticles for bioethanol production by enhanced hydrolysis of agricultural waste. Chin J
Catal 36:1223–1229
Chinnasamy S, Bhatnagar A, Hunt RW, Das KC (2010) Microalgae cultivation in a wastewater
dominated by carpet mill effluents for biofuel applications. Bioresour Technol 101:3097–3105
Chisti Y (2007) Biodiesel from microalgae. Biotechnol Adv 25:294–306
Chung D, Cha M, Guss AM, Westpheling J (2014) Direct conversion of plant biomass to ethanol by
engineered Caldicellulosiruptor bescii. Proc Natl Acad Sci U S A 111:8931–8936
Clomburg JM, Gonzalez R (2010) Biofuel production in Escherichia coli: the role of metabolic
engineering and synthetic biology. Appl Microbiol Biotechnol 86:419–434
Day JG, Thomas NJ, Achilles-Day UEM, Leakey RJG (2012) Early detection of protozoan grazers
in algal biofuel culture. Bioresour Technol 114:715–719
De Araujo CDM, De Andade CC, De Souza E, Silva E, Dupas FA (2013) Biodiesel production
from used cooking oil: a review. Renew Sustain Energy Rev 27:445–452
Dincer I (2012) Green methods for hydrogen production. Int J Hydrogen Energy 37:1954–1971
Dragone G, Fernandes B, Vicente AA, Teixeira JA. Third generation biofuels from microalgae in
Current research, technology and education topics in applied microbiology and microbial
biotechnology. In: Mendez-Vilas A (eds). Formatex, Badajoz (2010). 1355–1366
Dutta K, Daverey A, Lin JG (2014) Evolution retrospective for alternative fuels: first to fourth
generation. Energy 69:114–122
46
V. Singh et al.
cyanobacteria. Curr Opin Biotechnol 20:257–263
Anto S, Mukherjee SS, Muthappa R et al (2020) Algae as green energy reserve: technological
outlook on biofuel production. Chemosphere 242:125079
Arias A, Behera CR, Feijoo G, Sin G, Moreira MT (2020) Unravelling the environmental and
economic impacts of innovative technologies for the enhancement of biogas production and
sludge management in wastewater systems. J Environ Manage 270:110965
Aro EM (2016) From first generation biofuels to advanced solar biofuels. Ambio 45:24–31
Aryal N, Kvist T, Ammam F, Pnat D, Ottosen LDM (2018) An overview of microbial biogas
enrichment. Bioresour Technol 264:359–369
Azwar MY, Hussain MA, Abdul-Wahab AK (2014) Development of biohydrogen production by
photobiological: fermentation and electrochemical processes: a review. Renew Sustain Energy
Rev 31:158–173
Balan V (2014) Current challenges in commercially producing biofuels from lignocellulosic
biomass. ISRN Biotechnol 2014:1–31
Balasubramaniam A, Adi P, Do Thi TM, Yang JH, Labibah AS, Huang CM (2020) Skin bacteria
mediate glycerol fermentation to produce electricity and resist UV-B. Microorganisms 8:E1092
Bandyopadhyay A, Stockel J, Min H, Sherman LA, Pakrasi HB (2010) High rates of photobiological H 2 production by a cyanobacterium under aerobic conditions. Nat Commun 1:139
Bhatia L, Johri S (2015) Biovalorization potential of peels of Ananas cosmosus (L.) Merr. For
ethanol production by Pichia stipitis NCIM 3498 & Pachysolen tannophilus MTCC 1077.
Indian J Exp Biol 53:819–827
Buaban B, Inoue H, Yano S et al (2010) Bioethanol production from ball milled bagasse using an
on-site produced fungal enzyme cocktail and xylose-fermenting Pichia stipitis. J Biosci Bioeng
110:18–25
Buitron G, Kumar G, Martinez-Arce A, Moreno G (2014) Hydrogen and methane production via a
two-stage processes (H 2 -SBR+CH 4 -UASB) using tequila vinasses. Int J Hydrogen Energy
39:19249–19255
Chang FY, Lin CY (2004) Biohydrogen production using an up-flow anaerobic sludge blanket
reactor. Int J Hydrogen Energy 29:33–39
Chen Y, Liu T, He H, Liang H (2018) Fe 3 O 4 /ZnMg(Al)O magnetic nanoparticles for efficient
biodiesel production. Appl Organomet Chem 32:1–10
Cherian E, Dharmendirakumar M, Baskar G (2015) Immobilization of cellulose onto MnO 2
nanoparticles for bioethanol production by enhanced hydrolysis of agricultural waste. Chin J
Catal 36:1223–1229
Chinnasamy S, Bhatnagar A, Hunt RW, Das KC (2010) Microalgae cultivation in a wastewater
dominated by carpet mill effluents for biofuel applications. Bioresour Technol 101:3097–3105
Chisti Y (2007) Biodiesel from microalgae. Biotechnol Adv 25:294–306
Chung D, Cha M, Guss AM, Westpheling J (2014) Direct conversion of plant biomass to ethanol by
engineered Caldicellulosiruptor bescii. Proc Natl Acad Sci U S A 111:8931–8936
Clomburg JM, Gonzalez R (2010) Biofuel production in Escherichia coli: the role of metabolic
engineering and synthetic biology. Appl Microbiol Biotechnol 86:419–434
Day JG, Thomas NJ, Achilles-Day UEM, Leakey RJG (2012) Early detection of protozoan grazers
in algal biofuel culture. Bioresour Technol 114:715–719
De Araujo CDM, De Andade CC, De Souza E, Silva E, Dupas FA (2013) Biodiesel production
from used cooking oil: a review. Renew Sustain Energy Rev 27:445–452
Dincer I (2012) Green methods for hydrogen production. Int J Hydrogen Energy 37:1954–1971
Dragone G, Fernandes B, Vicente AA, Teixeira JA. Third generation biofuels from microalgae in
Current research, technology and education topics in applied microbiology and microbial
biotechnology. In: Mendez-Vilas A (eds). Formatex, Badajoz (2010). 1355–1366
Dutta K, Daverey A, Lin JG (2014) Evolution retrospective for alternative fuels: first to fourth
generation. Energy 69:114–122
46
V. Singh et al.
