[1] Seo Y H, Park D, Oh Y K, et al.Harvesting of microalgae cell using oxidized dye wastewater[J].Bioresource Technology, 2015, (192):802-806
[2]Kenny P, Flynn K J.In silico optimization for production of biomass and biofuel feedstocks from microalgae[J].Journal of Applied Phycology, 2015, 27(1):33-48
[3]Koberg M.Optimization of bio-diesel production from oils,cooking oils,microalgae,and castor and jatropha seeds: probing various heating sources and catalysts[J].Energy & Environmental Science, 2012, 5(6):7460-7469
[4]Spiden E M, Yap B H J, Hill D R A, et al.Quantitative evaluation of the ease of rupture of industrially promising microalgae by high pressure homogenization[J].Bioresource Technology, 2013, 140(3):165-171
[5]Milledge J J, Heaven S.A review of the harvesting of micro-algae for biofuel production[J].Reviews in Environmental Science and BioTechnology, 2013, 12(2):165-178
[6]Wu Z, Zhu Y, Huang W, et al.Evaluation of flocculation induced by pH increase for harvesting microalgae and reuse of flocculated medium[J].Bioresource technology, 2012, 110(2):496-502
[7]Prochazkova G, Safarik I, Branyik T.Harvesting microalgae with microwave synthesized magnetic microparticles[J].Bioresource Technology, 2013, 130(1):472-477
[8]Coward T, Lee J G M, Caldwell G S.Development of a foam flotation system for harvesting microalgae biomass[J].Algal Research, 2013, 2(2):135-144
[9]Ozkan A, Berberoglu H.Physico-chemical surface properties of microalgae[J].Colloids & Surfaces B Biointerfaces, 2013, 112(3):287-293
[10]Garg S, Wang L, Schenk P M.Effective harvesting of low surface-hydrophobicity microalgae by froth flotation[J].Bioresource Technology, 2014, 159(2):437-441
[11] Fowkes F M.Contact angle, wettability, and adhesion[M]// Contact angle, wettability and adhesion :. American Chemical Society, 1964:888-892.
[12]Rosenberg M, Gutnick D, Rosenberg E.Adherence of bacteria to hydrocarbons: A simple method for measuring cell-surface hydrophobicity[J].Fems Microbiology Letters, 1980, 9(1):29-33
[13]陈家长, 王菁, 裘丽萍, 等.对鱼腥藻和普通小球藻生长竞争的影响[J].生态环境学报, 2014, 42(2):316-320
[14]欧阳峥嵘, 温小斌, 耿亚红, 等.光照强度、温度、、盐度对小球藻光合作用的影响[J].植物科学学报, 2010, 28(1):49-55
[15]Eroglu, Melis, Anastasios.Extracellular terpenoid hydrocarbon extraction and quantitation from the green microalgae Botryococcus braunii varShowa[J].Bioresource Technology, 2010, 101(7):2359-2366
[16]Callow M E, Callow J A, Ista L K, et al.Use of self-assembled monolayers of different wettabilities to study surface selection and primary adhesion processes of green algal (Enteromorpha) zoospores[J].Applied & Environmental Microbiology, 2000, 66(8):3249-3254
[17]A.F. Toussaint,PELuner,The wetting properties of grafted cellulose films[J].Journal of Adhesion Science and Technology, 1993, 7(6):635-648
[18]孟顺龙, 王菁, 裘丽萍, 等.氮磷质量浓度对普通小球藻和鱼腥藻生长竞争的影响[J].生态环境学报, 2015, 5(4):658-664
[19]Pi?eres J, Barraza J.Energy barrier of aggregates coal particle–bubble through the extended DLVO theory[J].International Journal of Mineral Processing, 2011, 100(1):14-20
[20]Coward T, Lee J G M, Caldwell G S.Harvesting microalgae by CTAB-aided foam flotation increases lipid recovery and improves fatty acid methyl ester characteristics[J].Biomass & Bioenergy, 2014, 67(9):354-362
[21] Zhao Y, Li Y P, Huang J, et al.Rebound and attachment involving single bubble and particle in the separation of plastics by froth flotation[J].Separation & Purification Technology, 2015, (144):123-132
|