Improving lipid recovery from Scenedesmus wet biomass by surfactant-assisted disruption
暂无分享,去创建一个
Bruce E. Rittmann | Prathap Parameswaran | P. Parameswaran | B. Rittmann | Y. Lai | YenJung Sean Lai | Federica De Francesco | Alyssa Aguinaga | A. Aguinaga | F. D. Francesco
[1] R. Viola,et al. Detergent selection for enhanced extraction of membrane proteins. , 2012, Protein expression and purification.
[2] P. Hatcher,et al. New insights on the structure of algaenan from Botryoccocus braunii race A and its hexane insoluble botryals based on multidimensional NMR spectroscopy and electrospray-mass spectrometry techniques. , 2003, Phytochemistry.
[3] G. Lucchesi,et al. Degradation of cationic surfactants using Pseudomonas putida A ATCC 12633 immobilized in calcium alginate beads , 2013, Biodegradation.
[4] A. Shaija,et al. A review on the extraction of lipid from microalgae for biodiesel production , 2015 .
[5] Hong-Ying Hu,et al. Effects of different nitrogen and phosphorus concentrations on the growth, nutrient uptake, and lipid accumulation of a freshwater microalga Scenedesmus sp. , 2010, Bioresource technology.
[6] T. Thurnheer,et al. Microbial degradation of xenobiotics , 1986 .
[7] S. M. Mousavi,et al. A novel surfactant-assisted ionic liquid pretreatment of sugarcane bagasse for enhanced enzymatic hydrolysis. , 2014, Bioresource technology.
[8] Yanna Liang,et al. Biomass and lipid productivities of Chlorella vulgaris under autotrophic, heterotrophic and mixotrophic growth conditions , 2009, Biotechnology Letters.
[9] W. Cong,et al. Enzyme-assisted aqueous extraction of lipid from microalgae. , 2012, Journal of agricultural and food chemistry.
[10] Jong-Duk Kim,et al. Cationic surfactant-based method for simultaneous harvesting and cell disruption of a microalgal biomass. , 2013, Bioresource technology.
[11] Lizhong Zhu,et al. Enhanced soil flushing of phenanthrene by anionic-nonionic mixed surfactant. , 2008, Water research.
[12] Y. Chisti. Biodiesel from microalgae. , 2007, Biotechnology advances.
[13] Ana Rodríguez,et al. On the double role of surfactants as microalga cell lysis agents and antioxidants extractants , 2012 .
[14] Weiqi Wang,et al. Co-degradation with glucose of four surfactants, CTAB, Triton X-100, SDS and Rhamnolipid, in liquid culture media and compost matrix , 2007, Biodegradation.
[15] P. Parameswaran,et al. Effects of pulsed electric field treatment on enhancing lipid recovery from the microalga, Scenedesmus. , 2014, Bioresource technology.
[16] Aijie Wang,et al. Volatile fatty acids accumulation and rhamnolipid generation in situ from waste activated sludge fermentation stimulated by external rhamnolipid addition , 2013 .
[17] S. Kim,et al. Solubilization conditions for hydrophobic membrane protein, oleosin, in soybeans , 2007 .
[18] Q. Hu,et al. A flexible culture process for production of the green microalga Scenedesmus dimorphus rich in protein, carbohydrate or lipid. , 2013, Bioresource technology.
[19] Joo-Hwa Tay,et al. Microalgal drying and cell disruption--recent advances. , 2015, Bioresource technology.
[20] A. E. Greenberg,et al. Standard methods for the examination of water and wastewater : supplement to the sixteenth edition , 1988 .
[21] Eric P. Knoshaug,et al. Enzymatic cell wall degradation of Chlorellavulgaris and other microalgae for biofuels production , 2012, Planta.
[22] Edgard Gnansounou,et al. Cyanobacteria and microalgae: a positive prospect for biofuels. , 2011, Bioresource technology.
[23] A. Rath,et al. Detergent binding explains anomalous SDS-PAGE migration of membrane proteins , 2009, Proceedings of the National Academy of Sciences.
[24] Awwa,et al. Standard Methods for the examination of water and wastewater , 1999 .
[25] Ming-jun Zhu,et al. Enhanced biodegradation of sugarcane bagasse by Clostridium thermocellum with surfactant addition , 2014 .
[26] Farid Chemat,et al. Combined Extraction Processes of Lipid from Chlorella vulgaris Microalgae: Microwave Prior to Supercritical Carbon Dioxide Extraction , 2011, International journal of molecular sciences.
[27] Qi Zhou,et al. Effect of sodium dodecyl sulfate on waste activated sludge hydrolysis and acidification , 2007 .
[28] J. Møller,et al. Interaction of membrane proteins and lipids with solubilizing detergents. , 2000, Biochimica et biophysica acta.
[29] S. Stagg-Williams,et al. Pulsed electric field (PEF) as an intensification pretreatment for greener solvent lipid extraction from microalgae , 2013, Biotechnology and bioengineering.
[30] Catherine N. Mulligan,et al. Surfactant-enhanced remediation of contaminated soil: a review , 2001 .
[31] Arnaud Hélias,et al. Life-cycle assessment of biodiesel production from microalgae. , 2009, Environmental science & technology.
[32] F. Widdel,et al. Anaerobic degradation of n-hexane in a denitrifying bacterium: Further degradation of the initial intermediate (1-methylpentyl)succinate via C-skeleton rearrangement , 2002, Archives of Microbiology.
[33] C. Largeau,et al. INFLUENCE OF CELL WALL COMPOSITION ON THE RESISTANCE OF TWO CHLORELLA SPECIES (CHLOROPHYTA) TO DETERGENTS 1 , 1996 .
[34] L. Rodolfi,et al. Microalgae for oil: Strain selection, induction of lipid synthesis and outdoor mass cultivation in a low‐cost photobioreactor , 2009, Biotechnology and bioengineering.
[35] J. Murphy,et al. Mechanism and challenges in commercialisation of algal biofuels. , 2011, Bioresource technology.
[36] Bruce E Rittmann,et al. Evaluation of cell-disruption effects of pulsed-electric-field treatment of Synechocystis PCC 6803. , 2011, Environmental science & technology.
[37] J. Folch,et al. A simple method for the isolation and purification of total lipides from animal tissues. , 1957, The Journal of biological chemistry.
[38] Bruce E Rittmann,et al. Evaluation of methods to extract and quantify lipids from Synechocystis PCC 6803. , 2011, Bioresource technology.
[39] Gursong Yoo,et al. An effective, cost-efficient extraction method of biomass from wet microalgae with a functional polymeric membrane , 2014 .
[40] Aijie Wang,et al. Evaluation of surfactants on waste activated sludge fermentation by pyrosequencing analysis. , 2015, Bioresource technology.
[41] Eun-hee Lee,et al. Degradation of hexane and other recalcitrant hydrocarbons by a novel isolate, Rhodococcus sp. EH831 , 2010, Environmental science and pollution research international.
[42] Philip T. Pienkos,et al. Acid-catalyzed algal biomass pretreatment for integrated lipid and carbohydrate-based biofuels production , 2015 .
[43] P. Webley,et al. Extraction of oil from microalgae for biodiesel production: A review. , 2012, Biotechnology advances.
[44] M. Prussi,et al. Oil production by the marine microalgae Nannochloropsis sp. F&M-M24 and Tetraselmis suecica F&M-M33. , 2012, Bioresource technology.
[45] Q. Hu,et al. Microalgal triacylglycerols as feedstocks for biofuel production: perspectives and advances. , 2008, The Plant journal : for cell and molecular biology.
[46] B. Rittmann. Opportunities for renewable bioenergy using microorganisms. , 2008, Biotechnology and bioengineering.
[47] Jefferson W. Tester,et al. Quantitative uncertainty analysis of Life Cycle Assessment for algal biofuel production. , 2013, Environmental science & technology.