Research Progress on Solubility of Ca5(PxAs1-XO4)3(OH) and Ca5(PxAs1-XO4)3F

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Abstract:

Solubility studies of apatite in water and acidic media have been focused on the solubility products. Aim at highlighting on current developments, the solubility products of calcium arsenate-phosphate hydroxyapatite/fluorapatite [Ca5(PxAs1-xO4)3(OH)/Ca5(PxAs1-xO4)3 F, 1≥x≥0] in literature is sorted out. Literature values of the solubility products vary greatly. These discrepant solubility products can be due to differences between the minerals, the way the experiments in the studies have been conducted, the failure to achieve equilibrium.

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Advanced Materials Research (Volumes 518-523)

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888-892

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May 2012

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© 2012 Trans Tech Publications Ltd. All Rights Reserved

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[1] G. Boulon: submitted to Journal of Rev. Phys. Appl (1986).

Google Scholar

[2] J. Rakovan, in: Phosphates: Geochemical, Geological and Materials Importance, Growth and surface properties of apatite, edtied by Mineralogical Society of America, Washington (2002).

DOI: 10.1515/9781501509636-006

Google Scholar

[3] Å. Bengtsson, Solubility and surface complexation studies of apatites. Doctoral Thesis, Depart- ment of Chemistry, Umeå University, Sweden (2007).

Google Scholar

[4] R.P. Shellis, R.M. Wilson: submitted to Journal of Colloid Interface Sci (2004).

Google Scholar

[5] Å Bengtsson, A. Shchukarev, P. Persson and S. Sjöberg: submitted to Journal of Geochimica et Cosmochimica Acta (2009).

Google Scholar

[6] P. Ducheyne, Q. Qiu: submitted to Journal of Biomaterials (1999).

Google Scholar

[7] H. McDowell, T.M. Gregory and W.E. Brown: submitted to Journal of Research of the International Bureau of Standards (1977).

Google Scholar

[8] T.S.B. Narasaraju, U.S. Rai: submitted to Journal of Chem (1979).

Google Scholar

[9] W.E. Brown, T.M. Gregory and L.C. Chow: submitted to Journal of Caries Research (1977).

Google Scholar

[10] F.C.M. Driessens, R.M.H. Verbeeck: submitted to Journal of Crystal Growth (1981).

Google Scholar

[11] L.R. LeGeros: submitted to Journal of Karger (1991).

Google Scholar

[12] E. Valsami-Jones, K.V. Ragnarsdottir, A. Putnis, D. Bosbach, A.J. Kemp and G. Cressey: submitted to Journal of Chemical Geology (1998).

DOI: 10.1016/s0009-2541(98)00081-3

Google Scholar

[13] Pengchu Zhang, J.A. Ryan and J. Yang: submitted to Journal of Environ. Sci. Technol (1998).

Google Scholar

[14] M.T. Fulmer, I.C. Ison, C.R. Hankermayer: submitted to Journal of Biomaterials (2002).

Google Scholar

[15] S.V. Dorozhkia: submitted to Journal of Progress in Crystal Growth and Characterization of Materials (2002).

Google Scholar

[16] S.V. Dorozhkin: submitted to Journal of Mater. Sci (2007).

Google Scholar

[17] Yinian Zhu, Xuehong Zhang, Yudao Chen, Qinglin Xie, Junkang Lan, Meifang Qian and Na He: submitted to Jour- nal of Chem. Geol (2009).

Google Scholar

[18] W.Stumm, J.J. Morgan,. Aquatic chemistry. Chemical Equilibria and Rates in Natural Waters. John Wiley & Sons, Inc., New York (1996).

Google Scholar

[19] J. Santillan-Medrano, J.J. Jurinak: submitted to Journal of Soil Sci. Soc. Am. Proc (1975).

Google Scholar

[20] P.P. Mahapatra, L.M. Mahapatra and B. Mishra: submitted to Journal of Chem (1986).

Google Scholar

[21] S.C.B. Myneni, S.J. Traina, T.J. Logan and G.A. Waychunas: submitted to Journal of Environ. Sci. Technol (1997).

Google Scholar

[22] J.V. Bothe, P.W. Brown: submitted to Journal of Environ. Sci. Technol (1999).

Google Scholar

[23] Yinian Zhu, Xuehong Zhang, Fei Long, Huili Liu, Meifang Qian and Na He: submitted to Journal of Mater. Lett (2009).

Google Scholar

[24] Yinian Zhu, Xuehong Zhang, Honghu Zeng, Huili Liu, Na He and Meifang Qian: submitted to Journal of Environ. Chem. Lett. (2010).

Google Scholar

[25] C.M.B. Henderson, A.M.T. Bell, J.M. Charnock, K.S. Knight, R.F. Wendlandt, D.A. Plant and W.J. Harrison: submitted to Journal of Mineral. Mag. (2009).

Google Scholar

[26] Yinian Zhu, Hua Zhang ,Yanpeng Liang, Huili Liu and Xuehong Zhang: submitted to Journal of Acta Scientiae Circumstantiae (in Chinese, 2005).

Google Scholar

[27] J.V. Bothe, P.W. Brown: submitted to Journal of Hazard. Mater. B (1999).

Google Scholar

[28] Liwei Xu, Yinian Zhu, Huili Liu, Tengrui Long: submitted to Journal of Environmental Engineering. (in Chinese, 2010).

Google Scholar

[29] Liwei Xu, Study on Solubility and Stability of Arsenate/Phosphate Solid Solution. Doctoral Thesis, Chongqing University, China (in Chinese, 2011).

Google Scholar

[30] Y. Pan, M.E. Fleet, in: Phosphates: Geochemical, Geobiological, and Materials Importance, Compositions of the apatite-group minerals: substitution mechanisms and controlling factors (2002).

DOI: 10.1515/9781501509636-005

Google Scholar

[31] H. Qu, A.L. Vasiliev and M. Aindow: submitted to Journal of Mater. Sci.Mater.Med (2005).

Google Scholar

[32] T.D. Farr, K.L. Elmore: submitted to Journal of Physical Chemistry (1962).

Google Scholar

[33] F.C.M. Driessensr, Mineral aspects of dentistry. Karger, Basel (1982).

Google Scholar

[34] Liwei Xu, Yinian Zhu, Meina Liang, Na He, Tengrui Long: submitted to Journal of ACTA CHIMICA SINICA. (in Chinese, 2011).

Google Scholar