Hemaiswarya, S., Raja, R., Kumar, R. R., Ganesan, V., & Anbazhagan, C. (2011). Microalgae: A
sustainable feed source for aquaculture. World Journal of Microbiology & Biotechnology,
27(8), 1737–1746.
Hernández, D., Solana, M., Riaño, B., García-gonzález, M. C., & Bertucco, A. (2014). Biofuels
from microalgae: Lipid extraction and methane production from the residual biomass in a
biorefinery approach. Bioresource Technology, 170, 370–378.
Ho, Sh-H, Huang, Sh-W, Chen, Ch-Y, Hasunuma, T., Kondo, A., & Chang, J-Sh. (2013).
Bioethanol production using carbohydrate-rich microalgae biomass as feedstock. Bioresource
Technology, 135, 191–198.
Hoffman, J., Pate, R. C., Drennen, T., & Quinn, J. C. (2017). Techno-economic assessment of
open microalgae production systems. Algal Research, 23, 51–57.
Horváth, I. T. (1998). Fluorous biphase chemistry. Accounts of Chemical Research, 31(10),
641–650.
Hossain, G. S., Liu, L., & Du, G. C. (2017). Industrial bioprocesses and the biorefinery concept.
In C. Larroche, M. Ángeles Sanromán, G. Du, A. Pandey (Eds.), Current developments in
biotechnology and bioengineering. bioprocesses, bioreactors and controls (pp. 3–27).
Amsterdam: Elsevier.
Ibañez, E., Herrero, M., Mendiola, J. A., & Castro-Puyana, M. (2012). Extraction and
characterization of bioactive compounds with health benefits from marine resources: Macro
and micro algae, cyanobacteria, and invertebrates. In M. Hayes (Ed.), marine bioactive
compounds: Sources, characterization and applications (pp. 55–98). Boston, MA: Springer.
IEA. (2017). State of technology review—Algae bioenergy an IEA Bioenergy inter-task strategic
project. Report coordinated by Lieve M.L. Laurens, National Renewable Energy Laboratory,
Published by IEA Bioenergy: Task 39: January 2017.
Jacob-Lopes, E., & Franco, T. T. (2013). From oil refinery to microalgal biorefinery. Journal of
CO 2 Utilization, 2, 1–7.
Jahan, A., Ahmad, I. Z., Fatima, N., Ansari, V. A., & Akhtar, J. (2017). Algal bioactive
compounds in the cosmeceutical industry: A review. Phycologia, 56(4), 410–422.
Jankowska, E., Sahu, A. K., & Oleskowicz-Popiel, P. (2017). Biogas from microalgae: Review on
microalgae’s cultivation, harvesting and pretreatment for anaerobic digestion. Renewable and
Sustainable Energy Reviews, 75, 692–709.
Japar, A. S., Takriff, M. S., & Yasin, N. H. M. (2017). Harvesting microalgal biomass and lipid
extraction for potential biofuel production: A review. Journal of Environmental Chemical
Engineering, 5(1), 555–563.
Jeevan Kumar, S. P., Vijay Kumar, G., Dash, A., Scholz, P., & Banerjee, R. (2017). Sustainable
green solvents and techniques for lipid extraction from microalgae: A review. Algal Research,
21, 138–147.
Jeong, K. M., Lee, M. S., Nam, M. W., Zhao, J., Jin, Y., Lee, D. K., et al. (2015). Tailoring and
recycling of deep eutectic solvents as sustainable and efficient extraction media. Journal of
Chromatography A, 1424, 10–17.
Jessop, P. G., Mercer, S. M., & Heldebrant, D. J. (2012). CO2-triggered switchable solvents,
surfactants, and other materials. Energy & Environmental Science, 5(6), 7240.
Kadam, S. U., Tiwari, B. K., & O’Donnell, C. P. (2013). Application of novel extraction
technologies for bioactives from marine algae. Journal of Agricultural and Food Chemistry,
61(20), 4667–4675.
Kapdan, I. K., & Kargi, F. (2006). Bio-hydrogen production from waste materials. Enzyme and
Microbial Technology, 38(5), 569–582.
Kassim, M. A., & Meng, T. K. (2017). Carbon dioxide (CO 2 ) biofixation by microalgae and its
potential for biorefinery and biofuel production. Science of the Total Environment, 584–585,
1121–1129.
Keegan, D., Kretschmer, B., Elbersen, B., & Panoutsou, C. (2013). Cascading use: A systematic
approach to biomass beyond the energy sector. Biofuels, Byproducts and Biorefining, 7,
193–206.
5 Microalgae Biorefineries for Energy …
133
sustainable feed source for aquaculture. World Journal of Microbiology & Biotechnology,
27(8), 1737–1746.
Hernández, D., Solana, M., Riaño, B., García-gonzález, M. C., & Bertucco, A. (2014). Biofuels
from microalgae: Lipid extraction and methane production from the residual biomass in a
biorefinery approach. Bioresource Technology, 170, 370–378.
Ho, Sh-H, Huang, Sh-W, Chen, Ch-Y, Hasunuma, T., Kondo, A., & Chang, J-Sh. (2013).
Bioethanol production using carbohydrate-rich microalgae biomass as feedstock. Bioresource
Technology, 135, 191–198.
Hoffman, J., Pate, R. C., Drennen, T., & Quinn, J. C. (2017). Techno-economic assessment of
open microalgae production systems. Algal Research, 23, 51–57.
Horváth, I. T. (1998). Fluorous biphase chemistry. Accounts of Chemical Research, 31(10),
641–650.
Hossain, G. S., Liu, L., & Du, G. C. (2017). Industrial bioprocesses and the biorefinery concept.
In C. Larroche, M. Ángeles Sanromán, G. Du, A. Pandey (Eds.), Current developments in
biotechnology and bioengineering. bioprocesses, bioreactors and controls (pp. 3–27).
Amsterdam: Elsevier.
Ibañez, E., Herrero, M., Mendiola, J. A., & Castro-Puyana, M. (2012). Extraction and
characterization of bioactive compounds with health benefits from marine resources: Macro
and micro algae, cyanobacteria, and invertebrates. In M. Hayes (Ed.), marine bioactive
compounds: Sources, characterization and applications (pp. 55–98). Boston, MA: Springer.
IEA. (2017). State of technology review—Algae bioenergy an IEA Bioenergy inter-task strategic
project. Report coordinated by Lieve M.L. Laurens, National Renewable Energy Laboratory,
Published by IEA Bioenergy: Task 39: January 2017.
Jacob-Lopes, E., & Franco, T. T. (2013). From oil refinery to microalgal biorefinery. Journal of
CO 2 Utilization, 2, 1–7.
Jahan, A., Ahmad, I. Z., Fatima, N., Ansari, V. A., & Akhtar, J. (2017). Algal bioactive
compounds in the cosmeceutical industry: A review. Phycologia, 56(4), 410–422.
Jankowska, E., Sahu, A. K., & Oleskowicz-Popiel, P. (2017). Biogas from microalgae: Review on
microalgae’s cultivation, harvesting and pretreatment for anaerobic digestion. Renewable and
Sustainable Energy Reviews, 75, 692–709.
Japar, A. S., Takriff, M. S., & Yasin, N. H. M. (2017). Harvesting microalgal biomass and lipid
extraction for potential biofuel production: A review. Journal of Environmental Chemical
Engineering, 5(1), 555–563.
Jeevan Kumar, S. P., Vijay Kumar, G., Dash, A., Scholz, P., & Banerjee, R. (2017). Sustainable
green solvents and techniques for lipid extraction from microalgae: A review. Algal Research,
21, 138–147.
Jeong, K. M., Lee, M. S., Nam, M. W., Zhao, J., Jin, Y., Lee, D. K., et al. (2015). Tailoring and
recycling of deep eutectic solvents as sustainable and efficient extraction media. Journal of
Chromatography A, 1424, 10–17.
Jessop, P. G., Mercer, S. M., & Heldebrant, D. J. (2012). CO2-triggered switchable solvents,
surfactants, and other materials. Energy & Environmental Science, 5(6), 7240.
Kadam, S. U., Tiwari, B. K., & O’Donnell, C. P. (2013). Application of novel extraction
technologies for bioactives from marine algae. Journal of Agricultural and Food Chemistry,
61(20), 4667–4675.
Kapdan, I. K., & Kargi, F. (2006). Bio-hydrogen production from waste materials. Enzyme and
Microbial Technology, 38(5), 569–582.
Kassim, M. A., & Meng, T. K. (2017). Carbon dioxide (CO 2 ) biofixation by microalgae and its
potential for biorefinery and biofuel production. Science of the Total Environment, 584–585,
1121–1129.
Keegan, D., Kretschmer, B., Elbersen, B., & Panoutsou, C. (2013). Cascading use: A systematic
approach to biomass beyond the energy sector. Biofuels, Byproducts and Biorefining, 7,
193–206.
5 Microalgae Biorefineries for Energy …
133