Booker et al, “Bloom Formation and Stratification by a Planktonic Blue-Green Alga in an Experimental Water Column,” British Phycological Society, vol. 16, p. 411-421, (1981). |
Sebba et al, “Separations Using Colloidal Gas Aphrons,” 2nd International Congress of Chemical Engineering, p. 27-31, (1981). |
Michelsen et al, “In-Situ Biological Oxidation of Hazardous Organics,” Environmental Progress, vol. 3 (No. 2), p. 103-107, (1984). |
Michelsen et al, “In Situ Biodegradation of Dispensed Organics Using a Microdispersion of Air in Water,” Site Remediation, p. 291-298, (1985). |
Kromkamp et al, “Buoyancy Regulation in Light-Limited Continuous Cultures of Microcysits aeruginosa,” Journal Plankton Research, vol. 10 (No. 2), p. 171-183, (1988). |
Bar-Or et al, Cyanobacterial Flocculants, Methods in Enzymology, vol. 167, p. 616-672, (1988). |
Wheatley et al, “Contrast agents for Diagnostic Ultrasound: Development and Evaluation of Polymer-Coated Microbubbles,” Biomaterials, vol. 11, p. 713-717, (1990). |
Hayes et al, “Gas Vesicles are Strengthened by the Outer-Surface Protein, GvpC,” Archives of Microbiology, p. 229-234, (1991). |
Bender et al, “Characterization of Metal-Binding Bioflocculants Produced by the Cyanobacterial Component of Mixed Microbial Mats,” Applied and Environmental Microbiology, vol. 60 (No. 7), p. 2311-2315, (1994). |
Joseph S. D'Arrigo, “Glycoprotein Surfactants Stabilized Long-Lived Gas Microbubbles in the Environment,” Microbial Enhanced Oil Recovery, vol. 18, p. 124-140. |
Walsby, Nature, p. 224, 716, (1969). |
Walsby, Microbiol. Rev., p. 94, (1994). |
Tseng, et al.,J. Chin. Inst. Environ. Eng., vol. 6 (No. 71), (1996). |
Konopka et al, “Isolation and Characterization of Gas Vesicles from Microcyclus aquaticus,” Archives of Microbiology, vol. 112, p. 133-140, (1977). |
Zevenboom et al, “Growth and Photosynthetic Response of the Cyanobacterium Micrcystis aeruginosa in Relation to Photoperiodicity and Irradiance,” Archives of Microbiology, vol. 139, p. 232-239, (1984). |
Oliver et al, “The Sedimentation of Buoyant Microcystis Colonies Caused by Precipitation with an Iron-Containing Colloid,” Proc. R. Soc. Land B., vol. 223 p. 511-528, (1985). |
Kromkamp et al, “Buoyancy Regulation in a Strain of Aphanizomenon flos-aquae (Cyanophyceae): The Importance of a Carbohydrate Accumulation and Gas Vesicle Collapse,” Journal of General Microbiology, vol. 132, p. 2113-2121, (1986). |
Gerloff et al, “The Isoloation, Purification, and Culture of Blue-Green Algae,” American Journal of Botany, vol. 37, p. 216-218, (1950). |
Kratz et al, “Nutrition and Growth of Several Blue-Green Algae,” American Journal of Botany, vol. 42, p. 282-287, (1955). |
Smith et al, “Growth and Gas-Vacuole Development in Vegatative Cells of Anabaena flos-aquae,” Archiv fur Mkrobiologie, vol. 58, p. 117-126, (1967). |
Walsby et al, “Changes in Buoyancy of a Planktonic Blue-Green Algae in Response to Light Intensity,” British Phycological Society, vol. 15, p. 311-319, (1980). |
Kashyap, Sunil, Sundararajan, Anand, and Ju, Lu-Kwang. “Floatation Characteristics of Cyanobacterium Anabaena flos-aquae for Gas Vesicle Production.” Biotechnology and Bioengineering, vol. 60, No. 5, pp. 636-641 (Dec. 5, 1998). |