Kim JP, Kim KR, Choi SP, Han SJ, Kim MS, Sim SJ (2010) Repeated production of hydrogen by
sulfate re-addition in sulfur deprived culture of Chlamydomonas reinhardtii. Int J Hydrog
Energy 35(24):13387–13391. https://doi.org/10.1016/j.ijhydene.2009.11.113
Kim KH, Choi IS, Kim HM, Wi SG, Bae HJ (2014) Bioethanol production from the nutrient stressinduced microalga Chlorella vulgaris by enzymatic hydrolysis and immobilized yeast fermentation. Bioresour Technol 153:47–54
Kim JK, Yarish C, Hwang EK, Park M, Kim Y (2017) Seaweed aquaculture: cultivation technologies, challenges and its ecosystem services. Algae 32(1):1–13
Kolbe K, Lechtenböhmer S, Fischedick M (2020) Hydrogen derived from algae and cyanobacteria
as a decentralized fueling option for hydrogen powered cars: Size, space, and cost characteristics
of potential bioreactors. Int J Sustain Transp 14:325–334
Kong QX, Li L, Martinez B, Chen P, Ruan R (2010) Culture of microalgae Chlamydomonas
reinhardtii in wastewater for biomass feedstock production. Appl Biochem Biotechnol 160
(1):9–18
Kosourov SN, Seibert M (2009) Hydrogen photoproduction by nutrient-deprived Chlamydomonas
reinhardtii cells immobilized within thin alginate films under aerobic and anaerobic conditions.
Biotechnol Bioeng 102:50–58
Kosourov S, Patrusheva E, Ghirardi ML, Seibert M, Tsygankov A (2007) A comparison of
hydrogen photoproduction by sulfur-deprived Chlamydomonas reinhardtii under different
growth conditions. J Biotechnol 128(4):776–787
Kosourov SN, Ghirardi ML, Seibert M (2011) A truncated antenna mutant of Chlamydomonas
reinhardtii can produce more hydrogen than the parental strain. Int J Hydrog Energy 36
(3):2044–2048
Kosourov SN, Batyrova K, Petushkova E, Tsygankov A, Ghirardi M, Seibert M (2012) Maximizing
the hydrogen photoproduction yields in Chlamydomonas reinhardtii cultures: he effect of the
H2 partial pressure. Int J Hydrog Energy 37:8850–8858
Kotay SM, Das D (2007) Microbial hydrogen production with Bacillus coagulans IIT-BT S1
isolated from anaerobic sewage sludge. Bioresour Technol 98(6):1183–1190
Kraan S (2010) Mass-cultivation of carbohydrate rich macroalgae, a possible solution for sustainable biofuel production. Mitig Adapt Strateg Glob Chang 18:27–46. https://doi.org/10.1007/
s11027-010-9275-5
Kraan S (2013) Pigments and minor compounds in algae. In: Functional ingredients from algae for
foods and nutraceuticals. Woodhead Publishing, Oxford, pp 205–251
Krassen H, Schwarze A, Friedrich B et al (2009) Photosynthetic hydrogen production by a hybrid
complex of photosystem I and [NiFe]-Hydrogenase. ACS Nano 3:4055–4406
Kruse O, Rupprecht J, Bader KP, Thomas-Hall S, Schenk PM, Finazzi G, Hankamer B (2005)
Improved photobiological H2 production in engineered green algal cells. J BiolChem 280
(40):34170–34177
Krzemińska I, Pawlik-Skowrońska B, Trzcińska M, Tys J (2014) Influence of photoperiods on the
growth rate and biomass productivity of green microalgae. Bioprocess Biosyst Eng 37
(4):735–741
Kumar N, Das D (2000) Enhancement of hydrogen production by Enterobacter cloacae IIT-BT
08 (vol 35, pg 589, 2000). Process Biochem 35:1075
Kumar G, Zhen G, Sivagurunathan P et al (2016) Biogenic H2 production from mixed microalgae
biomass: impact of pH control and methanogenic inhibitor (BESA) addition. Biofuel Res J
11:470–474
Kumar MD, Tamilarasan K, Kaliappan S, Banu JR, Rajkumar M, Kim SH (2018) Surfactant
assisted disperser pretreatment on the liquefaction of Ulva reticulata and evaluation of biodegradability for energy efficient biofuel production through nonlinear regression modelling.
Bioresour Technol 255:116–122. https://doi.org/10.1016/j.biortech.2018.01.116
Kumar MD, Kaliappan S, Gopikumar S, Zhen G, Banu JR (2019) Synergetic pretreatment of algal
biomass through H2O2 induced microwave in acidic condition for biohydrogen production.
Fuel 253:833–839. https://doi.org/10.1016/j.fuel.2019.05.066
7 Sustainable Production of Hydrogen by Algae: Current Status and Future. . .
215
sulfate re-addition in sulfur deprived culture of Chlamydomonas reinhardtii. Int J Hydrog
Energy 35(24):13387–13391. https://doi.org/10.1016/j.ijhydene.2009.11.113
Kim KH, Choi IS, Kim HM, Wi SG, Bae HJ (2014) Bioethanol production from the nutrient stressinduced microalga Chlorella vulgaris by enzymatic hydrolysis and immobilized yeast fermentation. Bioresour Technol 153:47–54
Kim JK, Yarish C, Hwang EK, Park M, Kim Y (2017) Seaweed aquaculture: cultivation technologies, challenges and its ecosystem services. Algae 32(1):1–13
Kolbe K, Lechtenböhmer S, Fischedick M (2020) Hydrogen derived from algae and cyanobacteria
as a decentralized fueling option for hydrogen powered cars: Size, space, and cost characteristics
of potential bioreactors. Int J Sustain Transp 14:325–334
Kong QX, Li L, Martinez B, Chen P, Ruan R (2010) Culture of microalgae Chlamydomonas
reinhardtii in wastewater for biomass feedstock production. Appl Biochem Biotechnol 160
(1):9–18
Kosourov SN, Seibert M (2009) Hydrogen photoproduction by nutrient-deprived Chlamydomonas
reinhardtii cells immobilized within thin alginate films under aerobic and anaerobic conditions.
Biotechnol Bioeng 102:50–58
Kosourov S, Patrusheva E, Ghirardi ML, Seibert M, Tsygankov A (2007) A comparison of
hydrogen photoproduction by sulfur-deprived Chlamydomonas reinhardtii under different
growth conditions. J Biotechnol 128(4):776–787
Kosourov SN, Ghirardi ML, Seibert M (2011) A truncated antenna mutant of Chlamydomonas
reinhardtii can produce more hydrogen than the parental strain. Int J Hydrog Energy 36
(3):2044–2048
Kosourov SN, Batyrova K, Petushkova E, Tsygankov A, Ghirardi M, Seibert M (2012) Maximizing
the hydrogen photoproduction yields in Chlamydomonas reinhardtii cultures: he effect of the
H2 partial pressure. Int J Hydrog Energy 37:8850–8858
Kotay SM, Das D (2007) Microbial hydrogen production with Bacillus coagulans IIT-BT S1
isolated from anaerobic sewage sludge. Bioresour Technol 98(6):1183–1190
Kraan S (2010) Mass-cultivation of carbohydrate rich macroalgae, a possible solution for sustainable biofuel production. Mitig Adapt Strateg Glob Chang 18:27–46. https://doi.org/10.1007/
s11027-010-9275-5
Kraan S (2013) Pigments and minor compounds in algae. In: Functional ingredients from algae for
foods and nutraceuticals. Woodhead Publishing, Oxford, pp 205–251
Krassen H, Schwarze A, Friedrich B et al (2009) Photosynthetic hydrogen production by a hybrid
complex of photosystem I and [NiFe]-Hydrogenase. ACS Nano 3:4055–4406
Kruse O, Rupprecht J, Bader KP, Thomas-Hall S, Schenk PM, Finazzi G, Hankamer B (2005)
Improved photobiological H2 production in engineered green algal cells. J BiolChem 280
(40):34170–34177
Krzemińska I, Pawlik-Skowrońska B, Trzcińska M, Tys J (2014) Influence of photoperiods on the
growth rate and biomass productivity of green microalgae. Bioprocess Biosyst Eng 37
(4):735–741
Kumar N, Das D (2000) Enhancement of hydrogen production by Enterobacter cloacae IIT-BT
08 (vol 35, pg 589, 2000). Process Biochem 35:1075
Kumar G, Zhen G, Sivagurunathan P et al (2016) Biogenic H2 production from mixed microalgae
biomass: impact of pH control and methanogenic inhibitor (BESA) addition. Biofuel Res J
11:470–474
Kumar MD, Tamilarasan K, Kaliappan S, Banu JR, Rajkumar M, Kim SH (2018) Surfactant
assisted disperser pretreatment on the liquefaction of Ulva reticulata and evaluation of biodegradability for energy efficient biofuel production through nonlinear regression modelling.
Bioresour Technol 255:116–122. https://doi.org/10.1016/j.biortech.2018.01.116
Kumar MD, Kaliappan S, Gopikumar S, Zhen G, Banu JR (2019) Synergetic pretreatment of algal
biomass through H2O2 induced microwave in acidic condition for biohydrogen production.
Fuel 253:833–839. https://doi.org/10.1016/j.fuel.2019.05.066
7 Sustainable Production of Hydrogen by Algae: Current Status and Future. . .
215
