Brar, S. K., Sarma, S. J., & Pakshirajan K. (2016). Platform chemical biorefinery. Future green
chemistry (pp. 438–450). The Netherlands: Elsevier. ISBN978-12-802980-0.
Brennan, L., & Owende, P. (2010). Biofuels from microalgae—A review of technologies for
production, processing, and extractions of biofuels and co-products. Renewable and
Sustainable Energy Reviews, 14(2), 557–577.
Broeren, M., Kempener, R., Simbolotti, G., & Tosato, G. (2013). Production of
bio-methanol-technology brief. Technology Brief, 108(January), 1–24. Retrieved from
https://iea-etsap.org/E-TechDS/HIGHLIGHTS%20PDF/I09IR_Bio-methanol_MB_Jan2013_
final_GSOK%201.pdf. September 2017.
Brownbridge, G., Azadi, P., Smallbone, A., Bhave, A., Taylor, B., & Kraft, M. (2014). The future
viability of algae-derived biodiesel under economic and technical uncertainties. Bioresource
Technology, 151, 166–173.
Brunet, R., Boer, D., Guillén-Gosálbez, G., & Jiménez, L. (2015). Reducing the cost,
environmental impact and energy consumption of biofuel processes through heat integration.
Chemical Engineering Research and Design, 93, 203–212.
Budzianowski, W. M. (2017). High-value low-volume bioproducts coupled to bioenergies with
potential to enhance business development of sustainable biorefineries. Renewable and
Sustainable Energy Reviews, 70, 793–804.
Buitrón, G., Carrillo-Reyes, J., Morales, M., Faraloni, C., & Torzillo, G. (2017). Biohydrogen
production from microalgae. In R. Muñoz & C. González (Eds.), Microalgae-based biofuels
and bioproducts (pp. 210–234). Amsterdam: Elsevier. ISBN 9780081010235.
Campenni, L., Nobre, B. P., Santos, C. A., Oliveira, A. C., Aires-Barros, M. R., Palavra, A. M. F.,
et al. (2013). Carotenoid and lipid production by the autotrophic microalga Chlorella
protothecoides under nutritional, salinity, and luminosity stress conditions. Applied
Microbiology Biotechnology, 97, 1383–1393.
Chailleux, E., Audo, M., Bujoli, B., Quefflec, C., Lagrand, J., & Lepine, O. (2012). Alternative
binder from microalgae algoroute project. Alternative Binders for Sustainable Asphalt
Pavements, 23–36.
Chaogang, W., Zhangli, H., Anping, L., & Baohui, J. (2010). Biosynthesis of
poly-3-hydroxybuturate (PHB) in the transgenic green alga Chlamydomonas reinhardtii.
Journal of Phycology, 46, 396–402.
Chatterjee, A., Singh, S., Agrawal, C., Yadav, S., Rai, R., & Rai, L. C. (2017). Role of algae as a
biofertilizer. In R. Prasad Rastogi, D. Madamwar, & A. Pandey (Eds.), Algae green chemistry.
Recent progress in biotechnology (pp. 189–200). Amsterdam: Elsevier.
Chemat, F., Vian, M. A., & Cravotto, G. (2012). Green extraction of natural products: Concept and
principles. International Journal of Molecular Sciences, 13, 8615–8627.
Chen, W. H., Lin, B. J, Huang, M.-Y., & Chang, J. S. (2015). Thermochemical conversion of
microalgal biomass into biofuels: A review. Bioresource Technology, 184, 314–327, ISSN
0960-8524.
Chew, K. W., Yap, J. Y., Show, P. L., Suan, N. H., Juan, J. C., Ling, T. C., et al. (2017).
Microalgae biorefinery: High value products perspectives. Bioresource Technology, 229,
53–62.
Chiaramonti, D., Prussi, M., Buffi, M., Casini, D., & Rizzo, A. M. (2015). Thermochemical
conversion of microalgae: Challenges and opportunities. Energy Procedia, 75, 819–826.
Chilton, V., Mantrand, N., & Morel, B. (2016). Patent landscape report: Microalgae-related
technologies. Patent Landscape Report. Retrieved from http://www.wipo.int/edocs/pubdocs/en/
wipo_pub_947_5.pdf.
Chisti, Y. (2007). Biodiesel from microalgae. Biotechnology Advances, 25(3), 294–306.
Chisti, Y. (2008). Biodiesel from microalgae beats bioethanol. Trends in Biotechnology, 26(3),
126–131.
Chng, L. M., Chan, D. J. C., & Lee, K. T. (2015). Sustainable production of bioethanol using
lipid-extracted biomass from Scenedesmus dimorphus. Journal of Cleaner Production, 130,
68–73.
5 Microalgae Biorefineries for Energy …
129
chemistry (pp. 438–450). The Netherlands: Elsevier. ISBN978-12-802980-0.
Brennan, L., & Owende, P. (2010). Biofuels from microalgae—A review of technologies for
production, processing, and extractions of biofuels and co-products. Renewable and
Sustainable Energy Reviews, 14(2), 557–577.
Broeren, M., Kempener, R., Simbolotti, G., & Tosato, G. (2013). Production of
bio-methanol-technology brief. Technology Brief, 108(January), 1–24. Retrieved from
https://iea-etsap.org/E-TechDS/HIGHLIGHTS%20PDF/I09IR_Bio-methanol_MB_Jan2013_
final_GSOK%201.pdf. September 2017.
Brownbridge, G., Azadi, P., Smallbone, A., Bhave, A., Taylor, B., & Kraft, M. (2014). The future
viability of algae-derived biodiesel under economic and technical uncertainties. Bioresource
Technology, 151, 166–173.
Brunet, R., Boer, D., Guillén-Gosálbez, G., & Jiménez, L. (2015). Reducing the cost,
environmental impact and energy consumption of biofuel processes through heat integration.
Chemical Engineering Research and Design, 93, 203–212.
Budzianowski, W. M. (2017). High-value low-volume bioproducts coupled to bioenergies with
potential to enhance business development of sustainable biorefineries. Renewable and
Sustainable Energy Reviews, 70, 793–804.
Buitrón, G., Carrillo-Reyes, J., Morales, M., Faraloni, C., & Torzillo, G. (2017). Biohydrogen
production from microalgae. In R. Muñoz & C. González (Eds.), Microalgae-based biofuels
and bioproducts (pp. 210–234). Amsterdam: Elsevier. ISBN 9780081010235.
Campenni, L., Nobre, B. P., Santos, C. A., Oliveira, A. C., Aires-Barros, M. R., Palavra, A. M. F.,
et al. (2013). Carotenoid and lipid production by the autotrophic microalga Chlorella
protothecoides under nutritional, salinity, and luminosity stress conditions. Applied
Microbiology Biotechnology, 97, 1383–1393.
Chailleux, E., Audo, M., Bujoli, B., Quefflec, C., Lagrand, J., & Lepine, O. (2012). Alternative
binder from microalgae algoroute project. Alternative Binders for Sustainable Asphalt
Pavements, 23–36.
Chaogang, W., Zhangli, H., Anping, L., & Baohui, J. (2010). Biosynthesis of
poly-3-hydroxybuturate (PHB) in the transgenic green alga Chlamydomonas reinhardtii.
Journal of Phycology, 46, 396–402.
Chatterjee, A., Singh, S., Agrawal, C., Yadav, S., Rai, R., & Rai, L. C. (2017). Role of algae as a
biofertilizer. In R. Prasad Rastogi, D. Madamwar, & A. Pandey (Eds.), Algae green chemistry.
Recent progress in biotechnology (pp. 189–200). Amsterdam: Elsevier.
Chemat, F., Vian, M. A., & Cravotto, G. (2012). Green extraction of natural products: Concept and
principles. International Journal of Molecular Sciences, 13, 8615–8627.
Chen, W. H., Lin, B. J, Huang, M.-Y., & Chang, J. S. (2015). Thermochemical conversion of
microalgal biomass into biofuels: A review. Bioresource Technology, 184, 314–327, ISSN
0960-8524.
Chew, K. W., Yap, J. Y., Show, P. L., Suan, N. H., Juan, J. C., Ling, T. C., et al. (2017).
Microalgae biorefinery: High value products perspectives. Bioresource Technology, 229,
53–62.
Chiaramonti, D., Prussi, M., Buffi, M., Casini, D., & Rizzo, A. M. (2015). Thermochemical
conversion of microalgae: Challenges and opportunities. Energy Procedia, 75, 819–826.
Chilton, V., Mantrand, N., & Morel, B. (2016). Patent landscape report: Microalgae-related
technologies. Patent Landscape Report. Retrieved from http://www.wipo.int/edocs/pubdocs/en/
wipo_pub_947_5.pdf.
Chisti, Y. (2007). Biodiesel from microalgae. Biotechnology Advances, 25(3), 294–306.
Chisti, Y. (2008). Biodiesel from microalgae beats bioethanol. Trends in Biotechnology, 26(3),
126–131.
Chng, L. M., Chan, D. J. C., & Lee, K. T. (2015). Sustainable production of bioethanol using
lipid-extracted biomass from Scenedesmus dimorphus. Journal of Cleaner Production, 130,
68–73.
5 Microalgae Biorefineries for Energy …
129