Laurens, L. M. L., Chen-Glasser, M., & McMillan, J. (2017). A perspective on renewable
bioenergy from photosynthetic algae as feedstock for biofuels and bioproducts. Algal
Research, 24, 261–264.
Luangpipat, T., Chisti Y. (2017). Biomass and oil production by Chlorella vulgaris and four other
microalgae—Effects of salinity and other factors. Journal of Biotechnology. http://doi.org/10.
1016/j.jbiotec.2016.11.029.
Maranduba, H. L., Robra, S., Nascimento, I. A., da Cruz, R. S., Rodrigues, L. B., & de Almeida
Neto, J. A. (2016). Improving the energy balance of microalgal biodiesel: Synergy with an
autonomous sugarcane ethanol distillery. Energy, 115, 888–895.
Monari, C., Righi, S., & Olsen, S. I. (2016). Greenhouse gas emissions and energy balance of
biodiesel production from microalgae cultivated in photobioreactors in Denmark: A life cycle
modeling. Journal of Cleaner Production, 112, 4064–4092.
Mu, D., Min, M., Krohn, B., Mullins, K. A., Ruan, R., & Hill, J. (2014). Life cycle environmental
impacts of wastewater-based algal biofuels. Environmental Science and Technology, 48,
11696–11704.
Naraharisetti, P. K., Das, P., & Sharratt, P. N. (2017). Critical factors in energy generation from
microalgae. Energy, 120, 139–152.
Orfield, N. D., Levine, R. B., Keoleian, G. A., Miller, S. A., & Savage, P. E. (2015). Growing
algae for biodiesel on direct sunlight or sugars: A comparative life cycle assessment. ACS
Sustainable Chemistry & Engineering, 3, 386–395.
Perez-Garcia, O., Puente, Y., & Bahan, M. E. (2011). Organic carbon supplementation of sterilized
municipal waste water is essential for heterotrophic growth and removing ammonium by the
microalga Chlorella vulgaris. Journal of Phycology, 47, 190–199.
Pittman, J. K., Dean, A. P., & Osundeko, O. (2011). The potential of sustainable algal biofuel
production using wastewater resources. Bioresource Technology, 102, 17–25.
Quinn, J. C., Smith, T. G., Downes, C. M., & Quinn, C. (2014). Microalgae to biofuels life cycle
assessment—Multiple pathway evaluation. Algal Research, 4, 116–122.
Rawat, I., Gupta, S. K., Shriwastav, A., Singh, P., & Bux, F. (2016). Microalgae applications in
wastewater treatment. In F. Bux, Y. Chisti (Eds.) Algae Biotechnology (pp. 249–268).
Switzerland: Springer.
Razon, L. F., & Tan, R. R. (2011). Net energy analysis of the production of biodiesel and biogas
from the microalgae Haematococcus pluvialis and Nanochloropsis. Applied Energy, 88, 3507–
3514.
Reijnders, L. (2013). Lipid-based biofuels from autotrophic microalgae: Energetic and environmental performance. WIRE’s Energy Environmental, 2, 73–85.
Reijnders, L. (2017a). Life cycle assessment of greenhouse gas emissions. Chapter 2–2. In W. -Y.
Chen et al. (Eds.) Handbook of climate change mitigation and adaptation (pp. 63–91).
Heidelberg: Springer (Part 1).
Reijnders, L. (2017b). Greenhouse gas balances of microalgal biofuels. In J. C. M. Pires (Ed.)
Microalgae as a source of bioenergy: Products, processes and economic. Bentham Science
Publishers.
Reijnders, L., & Huijbregts, M. A. J. (2009). Biofuels for road transport. Heildelberg: Springer.
Rodolfi, L., Zittelli, G. C., Bassi, N., Padovani, G., Biondi, N., Bonini, G., et al. (2008).
Microalgae for oil: Strain selection, induction of lipid synthesis and outdoor mass cultivation in
a low cost photobioreactor. Biotechnology Bioengineering, 102, 100–112.
Rogers, J. N., Rosenberg, J. N., Guzman, B. J., Oh, V. H., Mimbela, L. E., Ghassemi, A.,
Betenbaugh, M. J., Oyler, G. A., Donohue, M. D. (2014). A critical analysis of paddlewheel
driven raceway ponds for algal biofuel production at commercial scales. Algal Research, 4, 76–88.
Shirvani, T., Yan, X., Inderwildi, O. R., Edwards, P. P., & King, D. A. (2011). Life cycle energy
and greenhouse gas analysis for algae-derived biodiesel. Energy & Environmental Science, 4,
3773–3778.
Sills, D. L., Paramita, V., Franke, M. J., Johnson, M. C., Akabas, T. M., Greene, C. H., et al.
(2012). Quantitative uncertainty analysis of life cycle assessment for algal biofuel production.
Environmental Science and Technology, 47, 687–694.
8 Biofuels from Microalgae: Biodiesel
179
bioenergy from photosynthetic algae as feedstock for biofuels and bioproducts. Algal
Research, 24, 261–264.
Luangpipat, T., Chisti Y. (2017). Biomass and oil production by Chlorella vulgaris and four other
microalgae—Effects of salinity and other factors. Journal of Biotechnology. http://doi.org/10.
1016/j.jbiotec.2016.11.029.
Maranduba, H. L., Robra, S., Nascimento, I. A., da Cruz, R. S., Rodrigues, L. B., & de Almeida
Neto, J. A. (2016). Improving the energy balance of microalgal biodiesel: Synergy with an
autonomous sugarcane ethanol distillery. Energy, 115, 888–895.
Monari, C., Righi, S., & Olsen, S. I. (2016). Greenhouse gas emissions and energy balance of
biodiesel production from microalgae cultivated in photobioreactors in Denmark: A life cycle
modeling. Journal of Cleaner Production, 112, 4064–4092.
Mu, D., Min, M., Krohn, B., Mullins, K. A., Ruan, R., & Hill, J. (2014). Life cycle environmental
impacts of wastewater-based algal biofuels. Environmental Science and Technology, 48,
11696–11704.
Naraharisetti, P. K., Das, P., & Sharratt, P. N. (2017). Critical factors in energy generation from
microalgae. Energy, 120, 139–152.
Orfield, N. D., Levine, R. B., Keoleian, G. A., Miller, S. A., & Savage, P. E. (2015). Growing
algae for biodiesel on direct sunlight or sugars: A comparative life cycle assessment. ACS
Sustainable Chemistry & Engineering, 3, 386–395.
Perez-Garcia, O., Puente, Y., & Bahan, M. E. (2011). Organic carbon supplementation of sterilized
municipal waste water is essential for heterotrophic growth and removing ammonium by the
microalga Chlorella vulgaris. Journal of Phycology, 47, 190–199.
Pittman, J. K., Dean, A. P., & Osundeko, O. (2011). The potential of sustainable algal biofuel
production using wastewater resources. Bioresource Technology, 102, 17–25.
Quinn, J. C., Smith, T. G., Downes, C. M., & Quinn, C. (2014). Microalgae to biofuels life cycle
assessment—Multiple pathway evaluation. Algal Research, 4, 116–122.
Rawat, I., Gupta, S. K., Shriwastav, A., Singh, P., & Bux, F. (2016). Microalgae applications in
wastewater treatment. In F. Bux, Y. Chisti (Eds.) Algae Biotechnology (pp. 249–268).
Switzerland: Springer.
Razon, L. F., & Tan, R. R. (2011). Net energy analysis of the production of biodiesel and biogas
from the microalgae Haematococcus pluvialis and Nanochloropsis. Applied Energy, 88, 3507–
3514.
Reijnders, L. (2013). Lipid-based biofuels from autotrophic microalgae: Energetic and environmental performance. WIRE’s Energy Environmental, 2, 73–85.
Reijnders, L. (2017a). Life cycle assessment of greenhouse gas emissions. Chapter 2–2. In W. -Y.
Chen et al. (Eds.) Handbook of climate change mitigation and adaptation (pp. 63–91).
Heidelberg: Springer (Part 1).
Reijnders, L. (2017b). Greenhouse gas balances of microalgal biofuels. In J. C. M. Pires (Ed.)
Microalgae as a source of bioenergy: Products, processes and economic. Bentham Science
Publishers.
Reijnders, L., & Huijbregts, M. A. J. (2009). Biofuels for road transport. Heildelberg: Springer.
Rodolfi, L., Zittelli, G. C., Bassi, N., Padovani, G., Biondi, N., Bonini, G., et al. (2008).
Microalgae for oil: Strain selection, induction of lipid synthesis and outdoor mass cultivation in
a low cost photobioreactor. Biotechnology Bioengineering, 102, 100–112.
Rogers, J. N., Rosenberg, J. N., Guzman, B. J., Oh, V. H., Mimbela, L. E., Ghassemi, A.,
Betenbaugh, M. J., Oyler, G. A., Donohue, M. D. (2014). A critical analysis of paddlewheel
driven raceway ponds for algal biofuel production at commercial scales. Algal Research, 4, 76–88.
Shirvani, T., Yan, X., Inderwildi, O. R., Edwards, P. P., & King, D. A. (2011). Life cycle energy
and greenhouse gas analysis for algae-derived biodiesel. Energy & Environmental Science, 4,
3773–3778.
Sills, D. L., Paramita, V., Franke, M. J., Johnson, M. C., Akabas, T. M., Greene, C. H., et al.
(2012). Quantitative uncertainty analysis of life cycle assessment for algal biofuel production.
Environmental Science and Technology, 47, 687–694.
8 Biofuels from Microalgae: Biodiesel
179