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Nutrient removal from swine wastewater using a thermotolerant strain of Chlorella sp. grown under outdoor conditions Gracida-Valdepena ML, Navarro-Aguirre F, Herrera-Acosta K, Ulloa-Mercado G, Meza-Escalante E, Plascencia-Jatomea R, Gonzalez-Meza G, Serrano-Palacios D Journal of Chemical Technology and Biotechnology, 95(4), 1243, 2020 |
2 |
Outdoor pilot-scale production of Nannochloropsis gaditana: Influence of culture parameters and lipid production rates in tubular photobioreactors Pedro AS, Gonzalez-Lopez CV, Acien FG, Molina-Grima E Bioresource Technology, 169, 667, 2014 |
3 |
Artificial neural network model for predicting production of Spirulina platensis in outdoor culture Pappu JSM, Vijayakumar GK, Ramamurthy V Bioresource Technology, 130, 224, 2013 |
4 |
Lipid accumulation and growth characteristics of Chlorella zofingiensis under different nitrate and phosphate concentrations Feng PZ, Deng ZY, Fan L, Hu ZY Journal of Bioscience and Bioengineering, 114(4), 405, 2012 |
5 |
Lipid accumulation and growth of Chlorella zofingiensis in flat plate photobioreactors outdoors Feng PZ, Deng ZY, Hu ZY, Fan L Bioresource Technology, 102(22), 10577, 2011 |
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Outdoor cultivation of lutein-rich cells of Muriellopsis sp in open ponds Blanco AM, Moreno J, Del Campo JA, Rivas J, Guerrero MG Applied Microbiology and Biotechnology, 73(6), 1259, 2007 |
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Photosynthetic performance of a cyanobacterium in a vertical flat-plate photobioreactor for outdoor microalgal production and fixation of CO2 Zhang K, Miyachi S, Kurano N Biotechnology Letters, 23(1), 21, 2001 |
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PRODUCTIVITY OF THE CYANOBACTERIUM SPIRULINA-PLATENSIS IN CULTURES USING SUNLIGHT CHANAWONGSE L, LEE YK, BUNNAG B, TANTICHAROEN M Bioresource Technology, 48(2), 143, 1994 |