Gallagher JA, Turner LB, Adams JMM, Barrento S, Dyer PW, Theodorou MK (2018) Species
variation in the effects of dewatering treatment on macroalgae. J Appl Phycol 30:2305–2316
Gallegos-Suárez E, Guerrero-Ruiz A, Rodríguez-Ramos I (2016) Efficient hydrogen production
from glycerol by steam reforming with carbon supported ruthenium catalysts. Carbon 96:578–
587
Gärdes A, Iversen MH, Grossart HP, Passow U, Ullrich MS (2011) Diatom-associated bacteria are
required for aggregation of Thalassiosira weissflogii. ISME J 5(3):436–445
Gendy TS, El-Temtamy SA (2013) Commercialization potential aspects of microalgae for biofuel
production: an overview. Egypt J Pet 22(1):43–51
Gerbens-Leenes W, Hoekstra AY, van der Meer TH (2009) The water footprint of bioenergy. Proc
Natl Acad Sci 106(25):10219–10223
Ghirardi ML, Zhang JP, Lee JW, Flynn T, Seibert M, Greenbaum E, Melis A (2000) Microalgae: a
green source of renewable H2. Trends Biotechnol 18(12):506–511
Ghirardi ML, Dubini A, Yu JP, Maness PC (2009) Photobiological hydrogen-producing. Chem Soc
Rev 38:52–61
Goldman JJC, Azov Y, Riley CB, Dennett MR (1982) The effect of pH in intensive microalgal
cultures. I. Biomass regulation. J Exp Mar Biol Ecol 57:1–13
Gong W-XW-X, Wang S-G, Sun X-F, Liu X-W, Yue Q-Y, Gao B-Y (2008) Bioflocculant
production by culture of Serratia ficaria and its application in waste water treatment. Bioresour
Technol 99:4668–4674
Gordon JM (2002) Tailoring optical systems to optimized photobioreactors. Int J Hydrog Energy
27:1175–1184
Grant MA, Kazamia E, Cicuta P, Smith AG (2014) Direct exchange of vitamin B 12 is demonstrated by modelling the growth dynamics of algal–bacterial cocultures. ISME J 8
(7):1418–1427
Greenwell HC, Laurens LML, Shields RJ, Lovitt RW, Flynn KJ (2010) Placing microalgae on the
biofuels priority list: a review of the technological challenges. J R Soc Interface 7:703–726
Grima EM, Fernandez FGA, Camacho FG, Chisti Y (1999) Photobioreactors: light regime, mass
transfer, and scale up. J Biotechnol 70:231–247
Grossart HP, Simon M (2007) Interactions of planktonic algae and bacteria: effects on algal growth
and organic matter dynamics. Aquat Microb Ecol 47(2):163–176
Guan Y, Deng M, Yu X, Zhang W (2004) Two-stage photo-biological production of hydrogen by
marine green alga Platymonas subcordiformis. Biochem Eng J 19(1):69–73
Guoan Y, Yijian L, Zhijing W, Zhongxin Z, Yubo H (1995) Immobilization of scenedesmus for
sewage purification and change of its physiological characteristics [J]. China Environ Sci 1:200–
212
Hadi MR, Shariati M, Afsharzadeh S (2008) Microalgal biotechnology: carotenoid and glycerol
production by the green algae Dunaliella isolated from the gave-Khooni saltmarsh. Iran
Biotechnol Bioprocess Eng 13(5):540–544
Hahn JJ, Ghirardi ML, Jacoby WA (2007) Immobilized algal cells used for hydrogen production.
Biochem Eng J 37:75–79
Hannon M, Gimpel J, Tran M, Rasala B, Mayfield S (2010) Biofuels from algae: challenges and
potential. Biofuels 1(5):763–784
Harto C, Meyers R, Williams E (2010) Life cycle water use of low-carbon transport fuels. Energy
Policy 38(9):4933–4944
He M, Li L, Liu J (2012) Isolation of wild microalgae from natural water bodies for high hydrogen
producing strains. Int J Hydrog Energy 37(5):4046–4056
Hernandez JP, de-Bashan LE, Rodriguez DJ, Rodriguez Y, Bashan Y (2009) Growth promotion of
the freshwater microalga Chlorella vulgaris by the nitrogen-fixing, plant growth-promoting
bacterium Bacillus pumilus from arid zone soils. Eur J Soil Biol 45(1):88–93
Hoffman Y, Aflalo C, Zarka A, Gutman J, James TY, Boussiba S (2008) Isolation and characterization of a novel chytrid species (phylum Blastocladiomycota), parasitic on the green alga
Haematococcus. Mycol Res 112(1):70–81
7 Sustainable Production of Hydrogen by Algae: Current Status and Future. . .
213
variation in the effects of dewatering treatment on macroalgae. J Appl Phycol 30:2305–2316
Gallegos-Suárez E, Guerrero-Ruiz A, Rodríguez-Ramos I (2016) Efficient hydrogen production
from glycerol by steam reforming with carbon supported ruthenium catalysts. Carbon 96:578–
587
Gärdes A, Iversen MH, Grossart HP, Passow U, Ullrich MS (2011) Diatom-associated bacteria are
required for aggregation of Thalassiosira weissflogii. ISME J 5(3):436–445
Gendy TS, El-Temtamy SA (2013) Commercialization potential aspects of microalgae for biofuel
production: an overview. Egypt J Pet 22(1):43–51
Gerbens-Leenes W, Hoekstra AY, van der Meer TH (2009) The water footprint of bioenergy. Proc
Natl Acad Sci 106(25):10219–10223
Ghirardi ML, Zhang JP, Lee JW, Flynn T, Seibert M, Greenbaum E, Melis A (2000) Microalgae: a
green source of renewable H2. Trends Biotechnol 18(12):506–511
Ghirardi ML, Dubini A, Yu JP, Maness PC (2009) Photobiological hydrogen-producing. Chem Soc
Rev 38:52–61
Goldman JJC, Azov Y, Riley CB, Dennett MR (1982) The effect of pH in intensive microalgal
cultures. I. Biomass regulation. J Exp Mar Biol Ecol 57:1–13
Gong W-XW-X, Wang S-G, Sun X-F, Liu X-W, Yue Q-Y, Gao B-Y (2008) Bioflocculant
production by culture of Serratia ficaria and its application in waste water treatment. Bioresour
Technol 99:4668–4674
Gordon JM (2002) Tailoring optical systems to optimized photobioreactors. Int J Hydrog Energy
27:1175–1184
Grant MA, Kazamia E, Cicuta P, Smith AG (2014) Direct exchange of vitamin B 12 is demonstrated by modelling the growth dynamics of algal–bacterial cocultures. ISME J 8
(7):1418–1427
Greenwell HC, Laurens LML, Shields RJ, Lovitt RW, Flynn KJ (2010) Placing microalgae on the
biofuels priority list: a review of the technological challenges. J R Soc Interface 7:703–726
Grima EM, Fernandez FGA, Camacho FG, Chisti Y (1999) Photobioreactors: light regime, mass
transfer, and scale up. J Biotechnol 70:231–247
Grossart HP, Simon M (2007) Interactions of planktonic algae and bacteria: effects on algal growth
and organic matter dynamics. Aquat Microb Ecol 47(2):163–176
Guan Y, Deng M, Yu X, Zhang W (2004) Two-stage photo-biological production of hydrogen by
marine green alga Platymonas subcordiformis. Biochem Eng J 19(1):69–73
Guoan Y, Yijian L, Zhijing W, Zhongxin Z, Yubo H (1995) Immobilization of scenedesmus for
sewage purification and change of its physiological characteristics [J]. China Environ Sci 1:200–
212
Hadi MR, Shariati M, Afsharzadeh S (2008) Microalgal biotechnology: carotenoid and glycerol
production by the green algae Dunaliella isolated from the gave-Khooni saltmarsh. Iran
Biotechnol Bioprocess Eng 13(5):540–544
Hahn JJ, Ghirardi ML, Jacoby WA (2007) Immobilized algal cells used for hydrogen production.
Biochem Eng J 37:75–79
Hannon M, Gimpel J, Tran M, Rasala B, Mayfield S (2010) Biofuels from algae: challenges and
potential. Biofuels 1(5):763–784
Harto C, Meyers R, Williams E (2010) Life cycle water use of low-carbon transport fuels. Energy
Policy 38(9):4933–4944
He M, Li L, Liu J (2012) Isolation of wild microalgae from natural water bodies for high hydrogen
producing strains. Int J Hydrog Energy 37(5):4046–4056
Hernandez JP, de-Bashan LE, Rodriguez DJ, Rodriguez Y, Bashan Y (2009) Growth promotion of
the freshwater microalga Chlorella vulgaris by the nitrogen-fixing, plant growth-promoting
bacterium Bacillus pumilus from arid zone soils. Eur J Soil Biol 45(1):88–93
Hoffman Y, Aflalo C, Zarka A, Gutman J, James TY, Boussiba S (2008) Isolation and characterization of a novel chytrid species (phylum Blastocladiomycota), parasitic on the green alga
Haematococcus. Mycol Res 112(1):70–81
7 Sustainable Production of Hydrogen by Algae: Current Status and Future. . .
213
