Lutke-Eversloh T, Bahl H (2011) Metabolic engineering of Clostridium acetobutylicum: recent
advances to improve butanol production. Curr Opin Biotechnol 22:634–647
Machado IM, Atsumi S (2012) Cyanobacterial biofuel production. J Biotechnol 162:50–56
Mani P, Fidal VT, Bowman K, Chandra TS, Keshavarz T, Kyazze G (2020) Development of an
electroactive aerobic biocathode for microbial fuel cell applications. Environ Microbiol Rep.
https://doi.org/10.1111/1758-2229.12871
Manish S, Banerjee R (2008) Comparison of biohydrogen production processes. Int J Hydrogen
Energy 33:279–286
Mao C, Feng Y, Wang X, Ren G (2015) Review on research achievement of biogas from anaerobic
digestion. Renew Sustain Energy Rev 45:540–555
Mathuriya AS (2020) Development of trickling bio-electrochemical reactor (TrickBER) for large
scale energy efficient wastewater treatment. Environ Technol 2:1–35
McKinlay JB, Harwood CS (2010) Photobiological production of hydrogen gas as a biofuel. Curr
Opin Biotechnol 21:244–251
Medipally SR, Yusoff FM, Banerjee S, Shariff M (2015) Microalgae as sustainable renewable
energy feedstock for biofuel production. Biomed Res Int 2015:519513
Mohammadshirazi A, Akram A, Rafiee S, Kalhor EB (2014) Energy and cost analyses of biodiesel
production from waste cooking oil. Renew Sustain Energy Rev 33:44–49
Moreno-Garrido I (2008) Microalgae immobilization: current techniques and uses. Bioresour
Technol 99:3949–3964
Mostafa SE (2010) Microbiological aspects of biofuel production: current status and future directions. J Adv Res 1:103–111
Nakatani M, Hibi M, Minoda M, Ogawa J, Yokozeki K, Shimizu S (2010) Two laccase isoenzymes
and a peroxidase of a commercial laccase-producing basidiomycete, Trametes sp. Ha1. N
Biotechnol 27:317–323
Ni Y, Sun Z (2009) Recent progress on industrial fermentative production of acetone-butanolethanol by Clostridium acetobutylicum in China. Appl Microbiol Biotechnol 83:415–423
Nielsen DR, Leonard E, Yoon SH, Tseng HC, Yuan C, Prather KLJ (2009) Engineering alternative
butanol production platforms in heterologous bacteria. Metab Eng 11:262–273
Nigam PS, Singh A (2014) Production of liquid biofuels from renewable resources. Prog Energy
Combust Sci 37:52–68
Okada K, Fujiwara S, Tsuzuki M (2020) Energy conservation in photosynthetic microorganisms. J
Gen Appl Microbiol 66:59–65
Olguin EJ (2012) Dual purpose microalgae-bacteria-based systems that treat wastewater and
produce biodiesel and chemical products within a biorefinery. Biotechnol Adv 30:1031–1046
Parmar A, Singh NK, Pandey A, Gnansounou E, Madamwar D (2011) Cyanobacteria and
microalgae: a positive prospect for biofuels. Bioresour Technol 102:10163–10172
Patnayat S, Sree A (2006) Screen of bacterial Associates of Marine Sponges for single cell oil and
PUFA. Lett Appl Biol 40:358–363
Peralta-Yahya PP, Keasling JD (2010) Advanced biofuel production in microbes. Biotechnol J
5:147–162
Philbrook A, Alissandratos A, Easton CJ (2013) Biochemical processes for generating fuels and
commodity chemicals from lignocellulosic biomass. In: Environmental biotechnology. InTech
Open, London. https://doi.org/10.5772/55309
Pittman JK, Dean AP, Osundeko O (2011) The potential of sustainable algal biofuel production
using wastewater resources. Bioresour Technol 102:17–25
Porth I, El-Kassaby YA (2015) Using Populus as a lignocellulosic feedstock for bioethanol.
Biotechnol J 10:510–524
Rahnama N, Foo HL, Abdul Rahman NA, Ariff A, Md Shah UK (2014) Saccharification of rice
straw by cellulase from a local Trichoderma harzianum SNRS3 for biobutanol production. BMC
Biotechnol 14:103. https://doi.org/10.1186/s12896-014-0103-y
Razeghifard R (2013) Algal biofuels. Photosynth Res 117:207–219
2 Microbiological Aspects of Bioenergy Production: Recent Update and Future. . .
49
advances to improve butanol production. Curr Opin Biotechnol 22:634–647
Machado IM, Atsumi S (2012) Cyanobacterial biofuel production. J Biotechnol 162:50–56
Mani P, Fidal VT, Bowman K, Chandra TS, Keshavarz T, Kyazze G (2020) Development of an
electroactive aerobic biocathode for microbial fuel cell applications. Environ Microbiol Rep.
https://doi.org/10.1111/1758-2229.12871
Manish S, Banerjee R (2008) Comparison of biohydrogen production processes. Int J Hydrogen
Energy 33:279–286
Mao C, Feng Y, Wang X, Ren G (2015) Review on research achievement of biogas from anaerobic
digestion. Renew Sustain Energy Rev 45:540–555
Mathuriya AS (2020) Development of trickling bio-electrochemical reactor (TrickBER) for large
scale energy efficient wastewater treatment. Environ Technol 2:1–35
McKinlay JB, Harwood CS (2010) Photobiological production of hydrogen gas as a biofuel. Curr
Opin Biotechnol 21:244–251
Medipally SR, Yusoff FM, Banerjee S, Shariff M (2015) Microalgae as sustainable renewable
energy feedstock for biofuel production. Biomed Res Int 2015:519513
Mohammadshirazi A, Akram A, Rafiee S, Kalhor EB (2014) Energy and cost analyses of biodiesel
production from waste cooking oil. Renew Sustain Energy Rev 33:44–49
Moreno-Garrido I (2008) Microalgae immobilization: current techniques and uses. Bioresour
Technol 99:3949–3964
Mostafa SE (2010) Microbiological aspects of biofuel production: current status and future directions. J Adv Res 1:103–111
Nakatani M, Hibi M, Minoda M, Ogawa J, Yokozeki K, Shimizu S (2010) Two laccase isoenzymes
and a peroxidase of a commercial laccase-producing basidiomycete, Trametes sp. Ha1. N
Biotechnol 27:317–323
Ni Y, Sun Z (2009) Recent progress on industrial fermentative production of acetone-butanolethanol by Clostridium acetobutylicum in China. Appl Microbiol Biotechnol 83:415–423
Nielsen DR, Leonard E, Yoon SH, Tseng HC, Yuan C, Prather KLJ (2009) Engineering alternative
butanol production platforms in heterologous bacteria. Metab Eng 11:262–273
Nigam PS, Singh A (2014) Production of liquid biofuels from renewable resources. Prog Energy
Combust Sci 37:52–68
Okada K, Fujiwara S, Tsuzuki M (2020) Energy conservation in photosynthetic microorganisms. J
Gen Appl Microbiol 66:59–65
Olguin EJ (2012) Dual purpose microalgae-bacteria-based systems that treat wastewater and
produce biodiesel and chemical products within a biorefinery. Biotechnol Adv 30:1031–1046
Parmar A, Singh NK, Pandey A, Gnansounou E, Madamwar D (2011) Cyanobacteria and
microalgae: a positive prospect for biofuels. Bioresour Technol 102:10163–10172
Patnayat S, Sree A (2006) Screen of bacterial Associates of Marine Sponges for single cell oil and
PUFA. Lett Appl Biol 40:358–363
Peralta-Yahya PP, Keasling JD (2010) Advanced biofuel production in microbes. Biotechnol J
5:147–162
Philbrook A, Alissandratos A, Easton CJ (2013) Biochemical processes for generating fuels and
commodity chemicals from lignocellulosic biomass. In: Environmental biotechnology. InTech
Open, London. https://doi.org/10.5772/55309
Pittman JK, Dean AP, Osundeko O (2011) The potential of sustainable algal biofuel production
using wastewater resources. Bioresour Technol 102:17–25
Porth I, El-Kassaby YA (2015) Using Populus as a lignocellulosic feedstock for bioethanol.
Biotechnol J 10:510–524
Rahnama N, Foo HL, Abdul Rahman NA, Ariff A, Md Shah UK (2014) Saccharification of rice
straw by cellulase from a local Trichoderma harzianum SNRS3 for biobutanol production. BMC
Biotechnol 14:103. https://doi.org/10.1186/s12896-014-0103-y
Razeghifard R (2013) Algal biofuels. Photosynth Res 117:207–219
2 Microbiological Aspects of Bioenergy Production: Recent Update and Future. . .
49
