Page 66 - Aquauclature Research and Studies (01)
P. 66
AQUAUCLATURE
56
Research and Studies 1 (1): 15-01, 2026 page of 193
Ricker, W.E. (1975): Computation and interpretation of biological statistics
of fish populations. Fish . Res. Board Can. Bull., 191: 1- 382.
Rois, D. S.; Carmen, M.; Torres, C.; Torras, J.; Salvado, Josep M.; Mateo-
Sanz ; Laureamo Jimenez. (2013). Microalgae – based biodiesel:
Economic analysis of downstream process realistic scenarios. Bio-
resource Technology. 136: 617 – 625.
Sachez - Saavedra, M. P. and Voltolina, D. (2005). The growth rate, biomass
production and composition of Chaetoeros sp. Growth with different
light sources . Aquacult. Eng 35 (2):161-165.
Sales, R. and Abreu, P. C.(2014). Use of natural pH variation to increase the
flocculation of the marine microalgae Nannochloropsis oculata.
Appl. Biochem Biotechnol (2015)175:2012–2019 DOI
10.1007/s12010-014-1412-2.
SAS. (2004). SAS/STAT User guide, Version 9.1.2. Cary .NC, USA: SAS
Institute Inc.
Sauer, M., Marx, H. Mattanovich, D. (2012). From rumen to industry. Micro-
bial Cell Factories 11(1):121 DOI: 10.1186/1475-2859-11-121.
Sharma,A. K.; Sahoo, P. K. ; Singhal, S.; Patel A.(2016). Impact of various
media and organic carbon sources on biofuel production potential
from Chlorella spp.3 Biotech. 2016 Dec; 6(2): 116. Published online
2016 May 31. doi: 10.1007/ s13205-016-0434-
6.PMCID:PMC4909020
Shelf, G.; Oron, G. ; Moraine. R. (1978). Economic aspects of microalgae
production on sewage. Archiv fȕr Hydrobiologie beiheft Ergednisse
der Limnologie, 11: 280- 294.
Singh, M.; Reynolds, D.L. ; Das, K.C. (2011). Microalgal system for treat-
ment of effluent from poultry litter anaerobic digestion. Bioresour.
Technol. 102: 10841–10848.
Sun, A.; Davis, R.; Starbuck, M.; Ben-Amotz, A.; Pate, R. ;Pienkos, P. T.
(2011).
“Comparative cost analysis of algal oil production for biofuels,” Energy, vol.
36, no. 8, pp. 5169–5179, View at Publisher. View at Google Scholar. View
at Scopus

