Park JH, Yoon JJ, Park HD, Kim YJ, Lim DJ, Kim SH (2011) Feasibility of biohydrogen
production from Gelidium amansii. Int J Hydrog Energy 36(21):13997–14003
Park Y, Je KW, Lee K, Jung SE, Choi TJ (2008) Growth promotion of Chlorella ellipsoidea by
co-inoculation with Brevundimonas sp. isolated from the microalga. Hydrobiologia 598
(1):219–228
Parmentier D, Manhaegh D, Baccini L, Van Meirhaeghe R, Diederik PL, Rousseau SVH (2020) A
new reactor design for harvesting algae through electrocoagulation-flotation in a continuous
mode. Algal Res 47:101828
Pate R, Klise G, Wu B (2011) Resource demand implications for US algae biofuels production
scale-up. Appl Energy 88(10):3377–3388
Peters JW, Lanzilotta WN, Lemon BJ, Seefeldt LC (1998) X-ray crystal structure of the Feonly
hydrogenase (Cpl) from Clostridium pasteurianum to 1.8 angstrom resolution. Science 282
(5395):1853–1858
Phlips EJ, Mitsui A (1983) Role of light intensity and temperature in the regulation of hydrogen
Photoproduction by the marine Cyanobacterium Oscillatoria sp. Strain Miam. Appl Environ
Microbiol 45(4):1212–1220
Pholc han M, Kaewseesuk K, Klayraung S, Sompong U (2017) Effect of light intensities and
atmospheric gas conditions on biohydrogen production of microalgae isolated from fisheries
wastewater. Environ Nat Resour J 15(2):21–29
Pienkos PT, Darzins AL (2009) The promise and challenges of microalgal-derived biofuels.
Biofuels Bioprod Biorefin Innov Sustain Econ 3(4):431–440
Pilon L, Berbero_glu H, Kandilian R (2011) Radiation transfer in photobiological carbon dioxide
fixation and fuel production by microalgae. J Quant Spectrosc Radiat Transf 112
(17):2639–2660
Pirt SJ (1986) The thermodynamic efficiency (quantum demand) and dynamics of photosynthetic
growth. New Phytol 102:3–37
Pongpadung P, Zhang L, Sathasivam R, Yokthongwattana K, Juntawong N, Liu J (2018) Stimulation of hydrogen Photoproduction in Chlorella sorokiniana subjected to simultaneous nitrogen limitation and sulfur- and/or phosphorus-deprivation. J Pure Appl Microbiol 12
(4):1719–1727
Pongpadung P, Liu JG, Yokthongwattana K, Techapinyawat S, Juntawong N (2015) Screening for
hydrogen-producing strains of green microalgae in phosphorus or Sulphur deprived medium
under nitrogen limitation. Sci Asia 41:97–107
Posewitz MC, King PW, Smolinski SL, Zhang LP, Seibert M, Ghirardi ML (2004) Discovery of
two novel radical S-adenosyl methionine proteins required for the assembly of an active
[Fe] hydrogenase. J Biol Chem 279(24):25711–25720
Posten C (2009) Design principles of photo-bioreactors for cultivation of microalgae. Eng Life Sci 9
(3):165–177
Pradhan RR, Pradhan RR, Das S, Dubey B, Dutta A (2017) Bioenergy combined with carbon
capture potential by microalgae at flue gas-based carbon sequestration plant of NALCO as
accelerated carbon sink. In: Carbon utilization. Singapore, Springer, pp 231–244
Prajapati SK, Bhattacharya A, Kumar P, Malik A, Vijay VK (2016) A method for simultaneous
bioflocculation and pretreatment of algal biomass targeting improved methane production.
Green Chem 18:5230–5238
Prince RC, Kheshgi HS (2005) The photobiological production of hydrogen: potential efficiency
and effectiveness as a renewable fuel. Crit Rev Microbiol 31:19–31
Pulz O, Scheibenbogen K (1998) Photobioreactors: design and performance with respect to light
energy input. Adv Biochem Eng Biotechnol 59:124–154
Radakovits R, Jinkerson RE, Darzins A, Posewitz MC (2010) Genetic engineering of algae for
enhanced biofuel production. Eukaryot Cell 9:486–501
Radha M, Murugesan AG (2017) Enhanced dark fermentative biohydrogen production from marine
macroalgae Padina tetrastromatica by different pretreatment process. Biofuel Res J 13:551–558
7 Sustainable Production of Hydrogen by Algae: Current Status and Future. . .
219
production from Gelidium amansii. Int J Hydrog Energy 36(21):13997–14003
Park Y, Je KW, Lee K, Jung SE, Choi TJ (2008) Growth promotion of Chlorella ellipsoidea by
co-inoculation with Brevundimonas sp. isolated from the microalga. Hydrobiologia 598
(1):219–228
Parmentier D, Manhaegh D, Baccini L, Van Meirhaeghe R, Diederik PL, Rousseau SVH (2020) A
new reactor design for harvesting algae through electrocoagulation-flotation in a continuous
mode. Algal Res 47:101828
Pate R, Klise G, Wu B (2011) Resource demand implications for US algae biofuels production
scale-up. Appl Energy 88(10):3377–3388
Peters JW, Lanzilotta WN, Lemon BJ, Seefeldt LC (1998) X-ray crystal structure of the Feonly
hydrogenase (Cpl) from Clostridium pasteurianum to 1.8 angstrom resolution. Science 282
(5395):1853–1858
Phlips EJ, Mitsui A (1983) Role of light intensity and temperature in the regulation of hydrogen
Photoproduction by the marine Cyanobacterium Oscillatoria sp. Strain Miam. Appl Environ
Microbiol 45(4):1212–1220
Pholc han M, Kaewseesuk K, Klayraung S, Sompong U (2017) Effect of light intensities and
atmospheric gas conditions on biohydrogen production of microalgae isolated from fisheries
wastewater. Environ Nat Resour J 15(2):21–29
Pienkos PT, Darzins AL (2009) The promise and challenges of microalgal-derived biofuels.
Biofuels Bioprod Biorefin Innov Sustain Econ 3(4):431–440
Pilon L, Berbero_glu H, Kandilian R (2011) Radiation transfer in photobiological carbon dioxide
fixation and fuel production by microalgae. J Quant Spectrosc Radiat Transf 112
(17):2639–2660
Pirt SJ (1986) The thermodynamic efficiency (quantum demand) and dynamics of photosynthetic
growth. New Phytol 102:3–37
Pongpadung P, Zhang L, Sathasivam R, Yokthongwattana K, Juntawong N, Liu J (2018) Stimulation of hydrogen Photoproduction in Chlorella sorokiniana subjected to simultaneous nitrogen limitation and sulfur- and/or phosphorus-deprivation. J Pure Appl Microbiol 12
(4):1719–1727
Pongpadung P, Liu JG, Yokthongwattana K, Techapinyawat S, Juntawong N (2015) Screening for
hydrogen-producing strains of green microalgae in phosphorus or Sulphur deprived medium
under nitrogen limitation. Sci Asia 41:97–107
Posewitz MC, King PW, Smolinski SL, Zhang LP, Seibert M, Ghirardi ML (2004) Discovery of
two novel radical S-adenosyl methionine proteins required for the assembly of an active
[Fe] hydrogenase. J Biol Chem 279(24):25711–25720
Posten C (2009) Design principles of photo-bioreactors for cultivation of microalgae. Eng Life Sci 9
(3):165–177
Pradhan RR, Pradhan RR, Das S, Dubey B, Dutta A (2017) Bioenergy combined with carbon
capture potential by microalgae at flue gas-based carbon sequestration plant of NALCO as
accelerated carbon sink. In: Carbon utilization. Singapore, Springer, pp 231–244
Prajapati SK, Bhattacharya A, Kumar P, Malik A, Vijay VK (2016) A method for simultaneous
bioflocculation and pretreatment of algal biomass targeting improved methane production.
Green Chem 18:5230–5238
Prince RC, Kheshgi HS (2005) The photobiological production of hydrogen: potential efficiency
and effectiveness as a renewable fuel. Crit Rev Microbiol 31:19–31
Pulz O, Scheibenbogen K (1998) Photobioreactors: design and performance with respect to light
energy input. Adv Biochem Eng Biotechnol 59:124–154
Radakovits R, Jinkerson RE, Darzins A, Posewitz MC (2010) Genetic engineering of algae for
enhanced biofuel production. Eukaryot Cell 9:486–501
Radha M, Murugesan AG (2017) Enhanced dark fermentative biohydrogen production from marine
macroalgae Padina tetrastromatica by different pretreatment process. Biofuel Res J 13:551–558
7 Sustainable Production of Hydrogen by Algae: Current Status and Future. . .
219
