gasification of hydrogen are economically feasible and will become competitive with
the traditional process for reforming natural gas. The biological dark fermentation is
also a promising method of producing hydrogen for potential commercial use.
Biomass will play an important role in the development of a sustainable hydrogen
economy, with further development of these technologies.
References
Ana PB, Lucas A, Sofia G, Catarina S, Paula ASS et al (2015) Combining urban wastewater
treatment with biohydrogen production – an integrated microalgae-based approach. Bioresour
Technol 184:230–235
Argun H, Gokfiliz P, Karapinar I (2017) Biohydrogen production potential of different biomass
sources. In: Biohydrogen production: sustainability of current technology and future perspective. Springer, New Delhi, pp 11–48
Ayas C, Fleck NA, Deshpande VS (2015) Hydrogen embrittlement of a biomaterial. Mech Mater
80:193–202
Balat M (2010) Thermochemical routes for biomass-based hydrogen production. Energy Source
32:1388
Basak B, Fatima A, Jeon BH, Ganguly A, Chatterjee PK (2018) Process kinetic studies of
biohydrogen production by co-fermentation of fruit-vegetable wastes and cottage cheese
whey. Energy Sustain Dev 47:39–52
Broom DP, Webb CJ (2017) Pitfalls in the characterization of the hydrogen sorption properties of
materials. Int J Hydrogen Energy 42:29320–29343
Budzianowski WM (2012) Sustainable biogas energy in Poland: prospects and challenges. Renew
Sustain Energy Rev 16(1):342–349
Bullen RA, Arnot TC, Lakeman JB, Walsh FC (2006) Biofuel cells and their development. Biosens
Bioelectron 21(11):2015–2045
Catarina IS, Constança CS, Solange IM, Patricia OLuuk AM et al (2018) Integrated 1
st and 2
nd
generation sugarcane bio-refinery for jet fuel production in Brazil: techno-economic and
greenhouse gas emissions assessment. Renew Energy 129:733–747
Chandrasekhar K, Lee YJ, Lee DW (2015) Biohydrogen production: strategies to improve process
efficiency through microbial routes. Int J Mol Sci 16(4):8266–8293
Chen T, Barton SC, Binyamin G, Gao Z, Zhang Y et al (2001) A miniature biofuel cell. J Am Chem
Soc 123(35):8630–8631
Chen CY, Yeh KL, Aisyah R, Lee DJ, Chang JS (2011) Cultivation, photo bioreactor design and
harvesting of microalgae for biodiesel production: a critical review. Bioresour Technol 102
(1):71–81
Cherdsak M, Saranya P (2017) Effect of pH on biohydrogen production in green alga Tetraspora sp
CU2551. Energy Procedia 138:1085–1092
Chen J, Ding L, Liu R, Xu S, Li L, Gao L, Wei L, Leng S, Li J, Li J, Leng L (2020a) Hydrothermal
carbonization of microalgae-fungal pellets: removal of nutrients from the aqueous phase fungi
and microalgae cultivation. ACS Sustain Chem Eng 8:16823–16832
Chen Y, Zhou Y, Li M, Hu C (2020b) Production of high-quality biofuel via ethanol liquefaction of
pretreated natural microalgae. Renew Energy 147:293–301
Choi J, Ahn Y (2014) Characteristics of biohydrogen fermentation from various substrates. Int J
Hydrogen Energy 39(7):3152–3159
Chyi-How L, Yu-Ching H, Chiu-Yue L, Chin-Chao C (2020) Anaerobic biohydrogen production
using Rice husk-based biologics. Waste Biomass Valoriz 11:1059–1068
4 Biohydrogen Production from Biomass
99
the traditional process for reforming natural gas. The biological dark fermentation is
also a promising method of producing hydrogen for potential commercial use.
Biomass will play an important role in the development of a sustainable hydrogen
economy, with further development of these technologies.
References
Ana PB, Lucas A, Sofia G, Catarina S, Paula ASS et al (2015) Combining urban wastewater
treatment with biohydrogen production – an integrated microalgae-based approach. Bioresour
Technol 184:230–235
Argun H, Gokfiliz P, Karapinar I (2017) Biohydrogen production potential of different biomass
sources. In: Biohydrogen production: sustainability of current technology and future perspective. Springer, New Delhi, pp 11–48
Ayas C, Fleck NA, Deshpande VS (2015) Hydrogen embrittlement of a biomaterial. Mech Mater
80:193–202
Balat M (2010) Thermochemical routes for biomass-based hydrogen production. Energy Source
32:1388
Basak B, Fatima A, Jeon BH, Ganguly A, Chatterjee PK (2018) Process kinetic studies of
biohydrogen production by co-fermentation of fruit-vegetable wastes and cottage cheese
whey. Energy Sustain Dev 47:39–52
Broom DP, Webb CJ (2017) Pitfalls in the characterization of the hydrogen sorption properties of
materials. Int J Hydrogen Energy 42:29320–29343
Budzianowski WM (2012) Sustainable biogas energy in Poland: prospects and challenges. Renew
Sustain Energy Rev 16(1):342–349
Bullen RA, Arnot TC, Lakeman JB, Walsh FC (2006) Biofuel cells and their development. Biosens
Bioelectron 21(11):2015–2045
Catarina IS, Constança CS, Solange IM, Patricia OLuuk AM et al (2018) Integrated 1
st and 2
nd
generation sugarcane bio-refinery for jet fuel production in Brazil: techno-economic and
greenhouse gas emissions assessment. Renew Energy 129:733–747
Chandrasekhar K, Lee YJ, Lee DW (2015) Biohydrogen production: strategies to improve process
efficiency through microbial routes. Int J Mol Sci 16(4):8266–8293
Chen T, Barton SC, Binyamin G, Gao Z, Zhang Y et al (2001) A miniature biofuel cell. J Am Chem
Soc 123(35):8630–8631
Chen CY, Yeh KL, Aisyah R, Lee DJ, Chang JS (2011) Cultivation, photo bioreactor design and
harvesting of microalgae for biodiesel production: a critical review. Bioresour Technol 102
(1):71–81
Cherdsak M, Saranya P (2017) Effect of pH on biohydrogen production in green alga Tetraspora sp
CU2551. Energy Procedia 138:1085–1092
Chen J, Ding L, Liu R, Xu S, Li L, Gao L, Wei L, Leng S, Li J, Li J, Leng L (2020a) Hydrothermal
carbonization of microalgae-fungal pellets: removal of nutrients from the aqueous phase fungi
and microalgae cultivation. ACS Sustain Chem Eng 8:16823–16832
Chen Y, Zhou Y, Li M, Hu C (2020b) Production of high-quality biofuel via ethanol liquefaction of
pretreated natural microalgae. Renew Energy 147:293–301
Choi J, Ahn Y (2014) Characteristics of biohydrogen fermentation from various substrates. Int J
Hydrogen Energy 39(7):3152–3159
Chyi-How L, Yu-Ching H, Chiu-Yue L, Chin-Chao C (2020) Anaerobic biohydrogen production
using Rice husk-based biologics. Waste Biomass Valoriz 11:1059–1068
4 Biohydrogen Production from Biomass
99
