Fu, C. C., Hung, T. C., Chen, J. Y., Su, C. H., & Wu, W. T. (2010). Hydrolysis of microalgae cell
walls for production of reducing sugar and lipid extraction. Bioresource Technology, 101,
8750–8754.
Gao, S., Yang, J., Tian, J., Ma, F., Tu, G., & Du, M. (2010). Electro-coagulation-flotation process
for algae removal. Journal of Hazardous Materials, 177, 336–343.
Gendy, T. S., & El-Temtamy, S. A. (2013). Commercialization potential aspects of microalgae for
biofuel production: An overview. Egyptian Journal of Petroleum, 22, 43–51.
Ghayal, D., Pandit, A. B., & Rathod, V. K. (2013). Optimization of biodiesel production in a
hydrodynamic cavitation reactor using used frying oil. Ultrasonics Sonochemistry, 20,
322–328.
Gogate, P. R., & Pandit, A. B. (2004). Sonochemical reactors: Scale up aspects. Ultrasonics
Sonochemistry, 11, 105–117.
Gole, V. L., & Gogate, P. R. (2012). Intensification of synthesis of biodiesel from nonedible oils
using sonochemical reactors. Industrial and Engineering Chemistry Research, 51(37),
11866–11874.
González-Fernández, C., Sialve, B., Bernet, N., & Steyer, J. P. (2012a). Thermal pretreatment to
improve methane production of Scenedesmus biomass. Biomass and Bioenergy, 40, 105–111.
González-Fernández, C., Sialve, B., Bernet, N., & Steyer, J. P. (2012b). Comparison of ultrasound
and thermal pretreatment of Scenedesmus biomass on methane production. Bioresource
Technology, 110, 610–616.
Guo, H., Daroch, M., Liu, L., Qiu, G., Geng, S., & Wang, G. (2013). Biochemical features and
bioethanol production of microalgae from coastal waters of Pearl River Delta. Bioresource
Technology, 127, 422–428.
Gupta, A., & Verma, J. P. (2015). Sustainable bio-ethanol production from agro-residues: A
review. Renewable and Sustainable Energy Reviews, 41, 550–567.
Han, F., Pei, H., Hu, W., Jiang, L., Cheng, J., & Zhang, L. (2016). Beneficial changes in biomass
and lipid of microalgae Anabaena variabilis facing the ultrasonic stress environment.
Bioresource Technology, 209, 16–22.
Harun, R., Danquah, M. K., & Forde, G. M. (2010). Microalgal biomass as a fermentation
feedstock for bioethanol production. Journal of Chemical Technology and Biotechnology, 85,
199–203.
Harvey, A. P., Mackley, M. R., & Seliger, T. (2003). Process intensification of biodiesel
production using a continuous oscillatory flow reactor. Journal of Chemical Technology and
Biotechnology, 78, 338–341.
He, B. B., Singh, A. P., & Thompson, J. C. (2006). A novel continuous-flow reactor using reactive
distillation for biodiesel production. Transactions of the ASABE, 49, 107–112.
Ho, S. H., Huang, S. W., Chen, C. Y., Hasunuma, T., Kondo, A., & Chang, J. S. (2013).
Bioethanol production using carbohydrate-rich microalgae biomass as feedstock. Bioresource
Technology, 135, 191–198.
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.
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.
Joshi, S., Gogate, P. R., Moreira, P. F., & Giudici, R. (2017). Intensification of biodiesel
production from soybean oil and waste cooking oil in the presence of heterogeneous catalyst
using high speed homogenizer. Ultrasonics Sonochemistry, 39, 645–653.
Kashid, M. N., & Kiwi-Minsker, L. (2009). Microstructured reactors for multiphase reactions:
State of the art. Industrial and Engineering Chemistry Research, 48, 6465–6485.
Keymer, P., Ruffell, I., Pratt, S., & Lant, P. (2013). High pressure thermal hydrolysis as
pre-treatment to increase the methane yield during anaerobic digestion of microalgae.
Bioresource Technology, 131, 128–133.
84
S. Joshi and P. Gogate
walls for production of reducing sugar and lipid extraction. Bioresource Technology, 101,
8750–8754.
Gao, S., Yang, J., Tian, J., Ma, F., Tu, G., & Du, M. (2010). Electro-coagulation-flotation process
for algae removal. Journal of Hazardous Materials, 177, 336–343.
Gendy, T. S., & El-Temtamy, S. A. (2013). Commercialization potential aspects of microalgae for
biofuel production: An overview. Egyptian Journal of Petroleum, 22, 43–51.
Ghayal, D., Pandit, A. B., & Rathod, V. K. (2013). Optimization of biodiesel production in a
hydrodynamic cavitation reactor using used frying oil. Ultrasonics Sonochemistry, 20,
322–328.
Gogate, P. R., & Pandit, A. B. (2004). Sonochemical reactors: Scale up aspects. Ultrasonics
Sonochemistry, 11, 105–117.
Gole, V. L., & Gogate, P. R. (2012). Intensification of synthesis of biodiesel from nonedible oils
using sonochemical reactors. Industrial and Engineering Chemistry Research, 51(37),
11866–11874.
González-Fernández, C., Sialve, B., Bernet, N., & Steyer, J. P. (2012a). Thermal pretreatment to
improve methane production of Scenedesmus biomass. Biomass and Bioenergy, 40, 105–111.
González-Fernández, C., Sialve, B., Bernet, N., & Steyer, J. P. (2012b). Comparison of ultrasound
and thermal pretreatment of Scenedesmus biomass on methane production. Bioresource
Technology, 110, 610–616.
Guo, H., Daroch, M., Liu, L., Qiu, G., Geng, S., & Wang, G. (2013). Biochemical features and
bioethanol production of microalgae from coastal waters of Pearl River Delta. Bioresource
Technology, 127, 422–428.
Gupta, A., & Verma, J. P. (2015). Sustainable bio-ethanol production from agro-residues: A
review. Renewable and Sustainable Energy Reviews, 41, 550–567.
Han, F., Pei, H., Hu, W., Jiang, L., Cheng, J., & Zhang, L. (2016). Beneficial changes in biomass
and lipid of microalgae Anabaena variabilis facing the ultrasonic stress environment.
Bioresource Technology, 209, 16–22.
Harun, R., Danquah, M. K., & Forde, G. M. (2010). Microalgal biomass as a fermentation
feedstock for bioethanol production. Journal of Chemical Technology and Biotechnology, 85,
199–203.
Harvey, A. P., Mackley, M. R., & Seliger, T. (2003). Process intensification of biodiesel
production using a continuous oscillatory flow reactor. Journal of Chemical Technology and
Biotechnology, 78, 338–341.
He, B. B., Singh, A. P., & Thompson, J. C. (2006). A novel continuous-flow reactor using reactive
distillation for biodiesel production. Transactions of the ASABE, 49, 107–112.
Ho, S. H., Huang, S. W., Chen, C. Y., Hasunuma, T., Kondo, A., & Chang, J. S. (2013).
Bioethanol production using carbohydrate-rich microalgae biomass as feedstock. Bioresource
Technology, 135, 191–198.
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.
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.
Joshi, S., Gogate, P. R., Moreira, P. F., & Giudici, R. (2017). Intensification of biodiesel
production from soybean oil and waste cooking oil in the presence of heterogeneous catalyst
using high speed homogenizer. Ultrasonics Sonochemistry, 39, 645–653.
Kashid, M. N., & Kiwi-Minsker, L. (2009). Microstructured reactors for multiphase reactions:
State of the art. Industrial and Engineering Chemistry Research, 48, 6465–6485.
Keymer, P., Ruffell, I., Pratt, S., & Lant, P. (2013). High pressure thermal hydrolysis as
pre-treatment to increase the methane yield during anaerobic digestion of microalgae.
Bioresource Technology, 131, 128–133.
84
S. Joshi and P. Gogate