Morgan-Sagastume JM, Noyola A (2006) Hydrogen sulfide removal by compost biofiltration:
effect of mixing the filter media on operational factors. Bioresour Technol 97(13):1546–1553
Muñoz-Páez KM, Alvarado-Michi EL, Moreno-Andrade I, Buitrón G, Valdez-Vazquez I (2020)
Comparison of suspended and granular cell anaerobic bioreactors for hydrogen production from
acid agave bagasse hydrolyzates. Int J Hydrog Energy 45(1):275–285
Mussgnug JH, Klassen V, Schluter A, Kruse O (2010) Microalgae as substrates for fermentative
biogas production in a combined biorefinery concept. J Biotechnol 150:51–56
Nagarajan D, Chang J-S, Lee D-J (2020) Pretreatment of microalgal biomass for efficient
biohydrogen production – recent insights and future perspectives. Bioresour Technol
302:122871
Nayak BK, Roy S, Das D (2014) Biohydrogen production from algal biomass (Anabaena sp. PCC
7120) cultivated in airlift photobioreactor. Int J Hydrog Energy 39:7553–7560
Ndikubwimana T, Chang J, Xiao Z, Shao W, Zeng X, Ng IS, Lu Y (2016) Flotation: a promising
microalgae harvesting and dewatering technology for biofuels production. Biotechnol J 11
(3):315–326
Nguyen T-AD, Kim K-R, Nguyen M-T, Kim MS, Kim D, Sim SJ (2010) Enhancement of
fermentative hydrogen production from green algal biomass of Thermotoga neapolitana by
various pretreatment methods. Int J Hydrog Energy 35(23):13035–13040
Nicolet Y, Lemon BJ, Fontecilla-Camps JC, Peters JW (2000) A novel FeS cluster in Fe-only
hydrogenases. Trends Biochem Sci 25(3):138–143
Nishiyama Y, Allakhverdiev SI, Murata N (2006) A new paradigm for the action of reactive oxygen
species in the photoinhibition of photosystem II. Biochim Biophys Acta-Bioenergetics 1757
(7):742–749
NRC (2011) Nutrient requirements of fish and shrimp. Animal Nutrition Series, National Research
Council of the National Academies. The National Academies Press, Washington, DC, 376 pp
Ntaikou GA, Lyberatos G (2010) Biohydrogen production from biomass and wastes via dark
fermentation: a review. Waste Biomass Valoriz 1:21–39
Oey M, Ross IL, Stephens E, Steinbeck J, Wolf J, Radzun KA, Keugler J et al (2013) RNAi knockdown of LHCBM1, 2 and 3 increases photosynthetic H2 production efficiency of the green alga
Chlamydomonas reinhardtii. PLoS One 8:e61375
Ogden JM, William RH, Larson ED (2004) Societal lifecycle cost comparison of cars with
alternative fuels/engines. Energ Policy 32:7–27
Oncel SS, Kose A, Faraloni C (2015a) Genetic optimization of microalgae for biohydrogen
production. In: Handbook of marine microalgae. Biotechnology advances. Academic Press,
Cambridge, MA, pp 383–404
Oncel SS, Kose A, Faraloni C, Imamoglu E, Elibol M, Torzillo G, Vardar Sukan F (2015b)
Biohydrogen production from model microalgae Chlamydomonas reinhardtii: a simulation of
environmental conditions for outdoor experiments. Int J Hydrog Energy 40:7502–7510
Onwudili JA, Lea-Langton AR, Ross AB, Williams PT (2020) Catalytic hydrothermal gasification
of algae for hydrogen production: composition of reaction products and potential for nutrient
recycling. Bioresour Technol 127:72–80
Oren A, Ionescu D, Hindiyeh M, Malkawi H (2008) Microalgae and cyanobacteria of the Dead Sea
and its surrounding springs. Isr J Plant Sci 56(1–2):1–13
Orosa M, Valero JF, Herrero C, Abalde J (2001) Comparison of the accumulation of astaxanthin in
Haematococcus pluvialis and other green microalgae under N-starvation and high light conditions. Biotechnol Lett 23(13):1079–1085
Palanisamy, V., Latif, F.A. and Resat, R.B.M. 1991. A guide on the production of algal culture for
use in shrimp hatcheries. National Prawn fry Production and research Centre, Pulau Sayak,
Kedah, Department of Fisheries, Ministry of Agriculture, Malaysia. p 23.
Pankratz S, Kumar M, Adetoyese OO, Gemechu E, Kumar A (2020) Environmental performances
of diluents and hydrogen production pathways from microalgae in cold climates: open raceway
ponds and photobioreactors coupled with thermochemical conversion. Algal Res 47:101815
218
R. Kumar et al.
effect of mixing the filter media on operational factors. Bioresour Technol 97(13):1546–1553
Muñoz-Páez KM, Alvarado-Michi EL, Moreno-Andrade I, Buitrón G, Valdez-Vazquez I (2020)
Comparison of suspended and granular cell anaerobic bioreactors for hydrogen production from
acid agave bagasse hydrolyzates. Int J Hydrog Energy 45(1):275–285
Mussgnug JH, Klassen V, Schluter A, Kruse O (2010) Microalgae as substrates for fermentative
biogas production in a combined biorefinery concept. J Biotechnol 150:51–56
Nagarajan D, Chang J-S, Lee D-J (2020) Pretreatment of microalgal biomass for efficient
biohydrogen production – recent insights and future perspectives. Bioresour Technol
302:122871
Nayak BK, Roy S, Das D (2014) Biohydrogen production from algal biomass (Anabaena sp. PCC
7120) cultivated in airlift photobioreactor. Int J Hydrog Energy 39:7553–7560
Ndikubwimana T, Chang J, Xiao Z, Shao W, Zeng X, Ng IS, Lu Y (2016) Flotation: a promising
microalgae harvesting and dewatering technology for biofuels production. Biotechnol J 11
(3):315–326
Nguyen T-AD, Kim K-R, Nguyen M-T, Kim MS, Kim D, Sim SJ (2010) Enhancement of
fermentative hydrogen production from green algal biomass of Thermotoga neapolitana by
various pretreatment methods. Int J Hydrog Energy 35(23):13035–13040
Nicolet Y, Lemon BJ, Fontecilla-Camps JC, Peters JW (2000) A novel FeS cluster in Fe-only
hydrogenases. Trends Biochem Sci 25(3):138–143
Nishiyama Y, Allakhverdiev SI, Murata N (2006) A new paradigm for the action of reactive oxygen
species in the photoinhibition of photosystem II. Biochim Biophys Acta-Bioenergetics 1757
(7):742–749
NRC (2011) Nutrient requirements of fish and shrimp. Animal Nutrition Series, National Research
Council of the National Academies. The National Academies Press, Washington, DC, 376 pp
Ntaikou GA, Lyberatos G (2010) Biohydrogen production from biomass and wastes via dark
fermentation: a review. Waste Biomass Valoriz 1:21–39
Oey M, Ross IL, Stephens E, Steinbeck J, Wolf J, Radzun KA, Keugler J et al (2013) RNAi knockdown of LHCBM1, 2 and 3 increases photosynthetic H2 production efficiency of the green alga
Chlamydomonas reinhardtii. PLoS One 8:e61375
Ogden JM, William RH, Larson ED (2004) Societal lifecycle cost comparison of cars with
alternative fuels/engines. Energ Policy 32:7–27
Oncel SS, Kose A, Faraloni C (2015a) Genetic optimization of microalgae for biohydrogen
production. In: Handbook of marine microalgae. Biotechnology advances. Academic Press,
Cambridge, MA, pp 383–404
Oncel SS, Kose A, Faraloni C, Imamoglu E, Elibol M, Torzillo G, Vardar Sukan F (2015b)
Biohydrogen production from model microalgae Chlamydomonas reinhardtii: a simulation of
environmental conditions for outdoor experiments. Int J Hydrog Energy 40:7502–7510
Onwudili JA, Lea-Langton AR, Ross AB, Williams PT (2020) Catalytic hydrothermal gasification
of algae for hydrogen production: composition of reaction products and potential for nutrient
recycling. Bioresour Technol 127:72–80
Oren A, Ionescu D, Hindiyeh M, Malkawi H (2008) Microalgae and cyanobacteria of the Dead Sea
and its surrounding springs. Isr J Plant Sci 56(1–2):1–13
Orosa M, Valero JF, Herrero C, Abalde J (2001) Comparison of the accumulation of astaxanthin in
Haematococcus pluvialis and other green microalgae under N-starvation and high light conditions. Biotechnol Lett 23(13):1079–1085
Palanisamy, V., Latif, F.A. and Resat, R.B.M. 1991. A guide on the production of algal culture for
use in shrimp hatcheries. National Prawn fry Production and research Centre, Pulau Sayak,
Kedah, Department of Fisheries, Ministry of Agriculture, Malaysia. p 23.
Pankratz S, Kumar M, Adetoyese OO, Gemechu E, Kumar A (2020) Environmental performances
of diluents and hydrogen production pathways from microalgae in cold climates: open raceway
ponds and photobioreactors coupled with thermochemical conversion. Algal Res 47:101815
218
R. Kumar et al.
