Abstract

1. Influence of Foreign Metal Ions on Crystal Morphology and Transformation of Brushite (CaHPO4.2H2O) H.E.L. Madsen, J.B. Pedersen. 2. Inhibition of Calcium Phosphate Precipitation by Polymers in the Presence of Iron(III). the Influence of Chelating Agents Z. Amjad, et al. 3. Interaction of Sodium Polyacrylate with Octacalcium Phosphate A. Bigi, et al. 4. Effect of Alkyl Phosphates on the Formation and Crystallization of Calcium Phosphates in an Aqueous Phase S. Shimabayashi, et al. 5. Calcium Pyrophosphate Crystal Salt Forms and the Influence of Phosphocitrate J.D. Sallis, et al. 6. Performance of Anionic Polymers as Precipitation Inhibitors for Calcium Phosphonates: The Influence of Cationic Polyelectrolytes Z. Amjad, et al. 7. Crystal Growth of Calcium Carbonate in Seawater. The Effect of Temperature and of the Presence of Inhbitors A. Kladi, et al. 8. Calcite Crystal Growth Rate Inhbition by Aquatic Humic Substances M.M. Reddy, A.R. Hoch. 9. The Inhibition of Calcium Carbonate Formation in Aqueous Supersaturated Solutions. Spontaneous Precipitation and Seeded Crystal Growth P.G. Klepetsanis, et al. 10. Calcium Carbonate and Calcium Phosphate Scale Formation and Inhibition at Elevated Temperature P.G. Klepetsanis, et al. 11. Effect of Temperature on Barium Sulfate Scale Inhibition of Diethylene Triamin e Penta (Methylene Phosphonic Acid) M. Yuan. 12. The Role of Calcium Phosphino-Polycarboxylate Complexation in Inhibiting BaSO4 Precipitation from Brine J.J. Xiao, et al. 13. Inorganic Mineral Scale Control in Sugar Evaporators Using Scale Inhibitors J.S. Gill. 14. Control of Crystallization Processes by Diblock Copolymers O. Dogan, et al. 15. An Algicide Using Anionic Polymers to Sequester and Stabilize Copper in an Oxidizing Aqueous Environment J.P. Garris. 16. Rational Development of New Cooling Water Chemical Treatment Programs for Scale and Microbial Control K.D. Demadis, et al. 17. Complexation of Proteins with Polymers in Aqueous Solutions B. Wang, E. Kokufuta. 18. Crystal-Growth Restriction Through Clathrate Hydrate Formation: Applications to Nanoparticle Synthesis G. Irvin Jr., et al.

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