Adsorption on and Surface Chemistry of Hydroxyapatite by Zahid Amjad (auth.), Dwarika N. Misra (eds.) PDF

By Zahid Amjad (auth.), Dwarika N. Misra (eds.)

ISBN-10: 1475790120

ISBN-13: 9781475790122

ISBN-10: 1475790147

ISBN-13: 9781475790146

Hydroxyapatite is the structural prototype of the most inorganic constituent of bone and the teeth and, including fluorapatite, is additionally one of many important minerals in advertisement phosphate ores. The adsorption features and floor chemistry of hydroxyapatite are very important in knowing the expansion, dissolution and adhesion mechanisms of bone and the teeth tissues and in elucidating the criteria in mineral beneficiation resembling floation and flocculation. This quantity basically records the lawsuits of the symposium at the similar subject held on the American Chemical Society assembly in Kansas urban, MO, September 12-17, 1982. It contains a few papers that have been no longer offered on the symposium yet doesn't contain the whole software. This quantity presents, on a restricted scale, a multidisciplinary evaluate of present paintings within the box of adsorptive habit and floor chemistry of hydroxyapatite and comprises sure evaluate articles. There are papers every one on adsorption, adsorption and its results on crystal development or dissolution kinetics, results of electrochemical parameters on solubility and adsorption, and more recent actual equipment (exoemission and high-resolution NMR) of analyzing hydroxyapatite floor. there's one paper every one on constitution modelling of apatite floor according to octacalcium phosphate interface and on biodegradation of sintered hydroxyapatite.

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2, 1265 (1976). D. R. Nagraj, L. McAllister and P. Somasundaran, Int. J. Min. ~' 4:111(1977). J. c. Voegel, s. Gillmeth and R. M. Frank, J. Colloid Interface Sci. 84:108 (1981). A. C. Juriaanse, J. Arends and J. J. Ten Bosch, J. Colloid Interface Sci. 76:220 (1980). A. c. Juriaanse, J. Arends, and J. J. Ten Bosch, J. , 76:212 (1980). H. R. Rawls, T. Bartels and J. Arends, J. Colloid Interface Sci. 87:339 (1982). J. V. Garcia-Ramos, P. Carmona and A. Hidalgo, J. Colloid Interface Sci. 83:479 (1981).

Smith, A. M. Posner and J. P. Quirk, J. Colloid Interface Science 54:176(1976). 22. M. s. Wu, W. I. Higuchi, J. L. Fox and M. Friedman, J. Dent. Res. 55:496 (1976). 23. w. E. Brown, T. M. Gregory and L. C. Chow, Caries Res. 11(Suppl. 1) :118 (1977). 24. H. McDowell, T. M. Gregory, and W. E. Brown, J. Res. Nat. Bur. Stand. 81A:273 (1977). 25. M. B. Fawzi, z. L. Fox, M. G. Dedhiya, W. I. Higuchi and J. J. Hefferren, J. Colloid Interface Science. 67:304 (1978). 26. s. Larsen, Nature 212:605 (1966) 27.

SOLUBILITY AND INTERFACIAL PROPERTIES 49 c. Vogel and R. M. Frank, J. Colloid Interface Sci. 83:26(1981). 73. J. v. Garcia-Ramos and P. Carmona, Canadian J. Chem. 59:222 ( 1981). 74. D. W. Fuerstenau, J. Lin, S. Chander and G. D. Parfitt, "Adsorption and Electrokinetic Effects of Amino Acids on Rutile and Hydroxyapatite," paper to be presented at the ACS Meeting, Washington, D. , Aug. 28 -Sept. 2, 1983. 75. G. 1):243 (1977). 72. J. APPENDIX I. LANGMUIR ISOTHERM FOR ADSORPTION FROM SOLUTION We have observed that there is some confusion about the use of the Langmuir adsorption isotherm in the dental and biological literature, particularly with reference to the units of the parameter A brief derivation is given below for the benefit of reK.

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