Umdu, E. S., Tuncer, M., & Seker, E. (2009). Transesterification of Nannochloropsis oculata
microalga’s lipid to biodiesel on Al 2 O 3 supported CaO and MgO catalysts. Bioresource
Technology, 100, 2828–2831.
Vergini, S., Aravantinou, A. F., & Manariotis, I. D. (2016). Harvesting of freshwater and marine
microalgae by common flocculants and magnetic microparticles. Journal of Applied
Phycology, 28, 1041–1049.
Wahlen, B. D., Willis, R. M., & Seefeldt, L. C. (2011). Biodiesel production by simultaneous
extraction and conversion of total lipids from microalgae, cyanobacteria, and wild
mixed-cultures. Bioresource Technology, 102, 2724–2730.
Wang, L., Min, M., Li, Y., Chen, P., Chen, Y., Liu, Y., et al. (2010). Cultivation of green algae
Chlorella sp. in different wastewaters from municipal wastewater treatment plant. Applied
Biochemistry and Biotechnology, 162, 1174–1186.
Wen, Z., Yu, X., Tu, S. T., Yan, J., & Dahlquist, E. (2009). Intensification of biodiesel synthesis
using zigzag micro-channel reactors. Bioresource Technology, 100, 3054–3060.
Xin, L., Hong-ying, H., Ke, G., & Ying-xue, S. (2010). Effects of different nitrogen and
phosphorus concentrations on the growth, nutrient uptake, and lipid accumulation of a
freshwater microalga Scenedesmus sp. Bioresource Technology, 101, 5494–5500.
Zhang, Y., Li, Y., Zhang, X., & Tan, T. (2015). Biodiesel production by direct transesterification
of microalgal biomass with co-solvent. Bioresource Technology, 196, 712–715.
Zhang, X., Ma, Q., Cheng, B., Wang, J., Li, J., & Nie, F. (2012). Research on KOH/La-Ba-Al 2 O 3
catalysts for biodiesel production via transesterification from microalgae oil. Journal of
Natural Gas Chemistry, 21, 774–779.
Zheng, Y., Roberts, M., Kelly, J., Zhang, N., & Walker, T. (2015). Harvesting microalgae using
the temperature-activated phase transition of thermoresponsive polymers. Algal Research, 11,
90–94.
Zheng, M., Skelton, R. L., & Mackley, M. R. (2007). Biodiesel reaction screening using
oscillatory flow meso reactors. Process Safety and Environment Protection, 85, 365–371.
Zheng, H., Yin, J., Gao, Z., Huang, H., Ji, X., & Dou, C. (2011). Disruption of Chlorella vulgaris
cells for the release of biodiesel-producing lipids: A comparison of grinding, ultrasonication,
bead milling, enzymatic lysis, and microwaves. Applied Biochemistry and Biotechnology, 164,
1215–1224.
Zhou, N., Zhang, Y., Wu, X., Gong, X., & Wang, Q. (2011). Hydrolysis of Chlorella biomass for
fermentable sugars in the presence of HCl and MgCl 2 . Bioresource Technology, 102, 10158–
10161.
4 Process Intensification of Biofuel Production …
87
Précédent

- 97/313

Suivant