Hom-Diaz A, Llorca M, Rodríguez-Mozaz S, Vicent T, Barceló D, Blánquez P (2015) Microalgae
cultivation on wastewater digestate: β-estradiol and 17α-ethynylestradiol degradation and
transformation products identification. J Environ Manag 155:106–113
Huesemann MH, Van Wagenen J, Miller T, Chavis A, Hobbs S, Crowe B (2013) A screening
model to predict microalgae biomass growth in photobioreactors and raceway ponds.
Biotechnol Bioeng 110:1583–1594
Ibrahim AFM, Dandamudi KPR, Deng S, Lin JYS (2020) Pyrolysis of hydrothermal liquefaction
algal biochar for hydrogen production in a membrane reactor. 265:116935
Ivanova J, Stoyancheva G, Pouneva I (2014) Lysis of Antarctic algal strains by bacterial pathogen.
Antonie Van Leeuwenhoek 105(6):997–1005
Jämsä M, Kosourov S, Rissanen V, Hakalahti M, Pere J, Ketoja JA et al (2018) Versatile templates
from cellulose nanofibrils for photosynthetic microbial biofuel production. J Mater Chem A 6
(14):5825–5835
Janssen M, Tramper J, Mur LR, Wijffels R (2003) Enclosed outdoor photobioreactors: light regime,
photosynthetic efficiency, scale-up, and future prospects. Biotechnol Bioeng 81:193–210
Jin X, Nalewajko C, Kushner DJ (1996) Comparative study of nickel toxicity to growth and
photosynthesis in nickel-resistant and -sensitive strains of Scenedesmus acutus f. alternans
(Chlorophyceae). Microb Ecol 31(1):103–114
Jmel MA, Anders N, Yahmed NB, Schmitz C, Marzouki MN, Spiess A, Smaali I (2018) Variations
in physicochemical properties and bioconversion efficiency of Ulva lactuca polysaccharides
after different biomass pretreatment techniques. Appl Biochem Biotechnol 184:777–793
Jo JH, Lee DS, Park JM (2006) Modeling and optimization of photosynthetic hydrogen gas
production by green alga Chlamydomonas reinhardtii in sulfur-deprived circumstance.
Biotechnol Prog 22(2):431–437
Johnston B, Mayo MC, Khare A (2005) Hydrogen: the energy source for the 21st century.
Technovation 25:569–585
Juneja A, Ceballos RM, Murthy GS (2013) Effects of environmental factors and nutrient availability on the biochemical composition of algae for biofuels production: a review. Energies
6:4607–4638
Kadari R, Merugu R, Girisham S, Reddy SM (2018) Impact of cultural conditions on
photoproduction of hydrogen by Allochromatium sp. GSKRLMBKU-01 isolated from marine
water of Visakhapatnam. Int J Hydrog Energy 43(12):6060–6065
Kannah RY, Kavitha S, Sivashanmugham P, Kumar G, Nguyen DD, Chang SW (2019)
Biohydrogen production from rice straw: effect of combinative pretreatment, modelling assessment and energy balance consideration. Int J Hydrog Energy 44:2203–2215. https://doi.org/10.
1016/j.ijhydene.2018.07.201
Kavitha S, Subbulakshmi P, Rajesh Banu J, Gobi M, Tae Yeom I (2017) Enhancement of biogas
production from microalgal biomass through cellulolytic bacterial pretreatment. Bioresour
Technol. 233:34–43
Kavitha S, Banu JR, Kumar G, Kaliappan S, Yeom IT (2018) Profitable ultrasonic assisted
microwave disintegration of sludge biomass: modeling of biomethanation and energy parameter
analysis. Bioresour Technol 254:203–213. https://doi.org/10.1016/j.biortech.2018.01.072
Khan S, Fu P (2020) Biotechnological perspectives on algae: a viable option for next generation
biofuels. Curr Opin Biotechnol 62:146–152
Khan MI, Shin JH, Kim JD (2018) The promising future of microalgae: current status, challenges,
and optimization of a sustainable and renewable industry for biofuels, feed, and other products.
Microb Cell Factories 17(1):36
Khanal SK, Chen WHW-H, Li L, Sung S (2004) Biological hydrogen production: effects of pH and
intermediate products. Int J Hydrog Energy 29:1123–1131
Kim SH, Han SK, Shin HS (2006) Effect of substrate concentration on hydrogen production and
16S rDNA-based analysis of the microbial community in a continuous fermenter. Process
Biochem 41:199–207
214
R. Kumar et al.
cultivation on wastewater digestate: β-estradiol and 17α-ethynylestradiol degradation and
transformation products identification. J Environ Manag 155:106–113
Huesemann MH, Van Wagenen J, Miller T, Chavis A, Hobbs S, Crowe B (2013) A screening
model to predict microalgae biomass growth in photobioreactors and raceway ponds.
Biotechnol Bioeng 110:1583–1594
Ibrahim AFM, Dandamudi KPR, Deng S, Lin JYS (2020) Pyrolysis of hydrothermal liquefaction
algal biochar for hydrogen production in a membrane reactor. 265:116935
Ivanova J, Stoyancheva G, Pouneva I (2014) Lysis of Antarctic algal strains by bacterial pathogen.
Antonie Van Leeuwenhoek 105(6):997–1005
Jämsä M, Kosourov S, Rissanen V, Hakalahti M, Pere J, Ketoja JA et al (2018) Versatile templates
from cellulose nanofibrils for photosynthetic microbial biofuel production. J Mater Chem A 6
(14):5825–5835
Janssen M, Tramper J, Mur LR, Wijffels R (2003) Enclosed outdoor photobioreactors: light regime,
photosynthetic efficiency, scale-up, and future prospects. Biotechnol Bioeng 81:193–210
Jin X, Nalewajko C, Kushner DJ (1996) Comparative study of nickel toxicity to growth and
photosynthesis in nickel-resistant and -sensitive strains of Scenedesmus acutus f. alternans
(Chlorophyceae). Microb Ecol 31(1):103–114
Jmel MA, Anders N, Yahmed NB, Schmitz C, Marzouki MN, Spiess A, Smaali I (2018) Variations
in physicochemical properties and bioconversion efficiency of Ulva lactuca polysaccharides
after different biomass pretreatment techniques. Appl Biochem Biotechnol 184:777–793
Jo JH, Lee DS, Park JM (2006) Modeling and optimization of photosynthetic hydrogen gas
production by green alga Chlamydomonas reinhardtii in sulfur-deprived circumstance.
Biotechnol Prog 22(2):431–437
Johnston B, Mayo MC, Khare A (2005) Hydrogen: the energy source for the 21st century.
Technovation 25:569–585
Juneja A, Ceballos RM, Murthy GS (2013) Effects of environmental factors and nutrient availability on the biochemical composition of algae for biofuels production: a review. Energies
6:4607–4638
Kadari R, Merugu R, Girisham S, Reddy SM (2018) Impact of cultural conditions on
photoproduction of hydrogen by Allochromatium sp. GSKRLMBKU-01 isolated from marine
water of Visakhapatnam. Int J Hydrog Energy 43(12):6060–6065
Kannah RY, Kavitha S, Sivashanmugham P, Kumar G, Nguyen DD, Chang SW (2019)
Biohydrogen production from rice straw: effect of combinative pretreatment, modelling assessment and energy balance consideration. Int J Hydrog Energy 44:2203–2215. https://doi.org/10.
1016/j.ijhydene.2018.07.201
Kavitha S, Subbulakshmi P, Rajesh Banu J, Gobi M, Tae Yeom I (2017) Enhancement of biogas
production from microalgal biomass through cellulolytic bacterial pretreatment. Bioresour
Technol. 233:34–43
Kavitha S, Banu JR, Kumar G, Kaliappan S, Yeom IT (2018) Profitable ultrasonic assisted
microwave disintegration of sludge biomass: modeling of biomethanation and energy parameter
analysis. Bioresour Technol 254:203–213. https://doi.org/10.1016/j.biortech.2018.01.072
Khan S, Fu P (2020) Biotechnological perspectives on algae: a viable option for next generation
biofuels. Curr Opin Biotechnol 62:146–152
Khan MI, Shin JH, Kim JD (2018) The promising future of microalgae: current status, challenges,
and optimization of a sustainable and renewable industry for biofuels, feed, and other products.
Microb Cell Factories 17(1):36
Khanal SK, Chen WHW-H, Li L, Sung S (2004) Biological hydrogen production: effects of pH and
intermediate products. Int J Hydrog Energy 29:1123–1131
Kim SH, Han SK, Shin HS (2006) Effect of substrate concentration on hydrogen production and
16S rDNA-based analysis of the microbial community in a continuous fermenter. Process
Biochem 41:199–207
214
R. Kumar et al.
