Occurrence and Treatment of Pharmaceuticals and Personal Care Products in Surface Water around the Global Region

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Abstract:

The occurrence of pharmaceuticals and personal care products (PPCPs) in surface water, and their potential impacts on human health are emerging issues all over the world. This paper summarizes the data from worldwide research groups, aiming to illustrate the occurrence of PPCPS, and their potential threatens to human health. Furthermore, the current efficient treatment methods for the PPCPS were discussed as well.

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720-724

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January 2014

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© 2014 Trans Tech Publications Ltd. All Rights Reserved

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[1] C.G. Daughton, T.A. Temes: Environmental Health Perspectives, 107(1999) 907.

Google Scholar

[2] K. Reddersen, T. Heberer, U. Diinnbier: Chemosphere, 49 (2002): 539-544.

Google Scholar

[3] J.Q. Jiang, Z. Zhou, V.K. Sharma: Desalination 248 (2009) 578–585.

Google Scholar

[4] T.A. Temes, A. Joss, H. Siegrist: Environmental Science & Technology, 38 (2004) 392-399.

Google Scholar

[5] B.J. Richardson, P.K.S. Lam, M. Martin: Marine Pollution Bulletin, 50(2005): 913-920.

Google Scholar

[6] B.H. Sorensen , S.N. Nielsen, P. Lanzky: Chemosphere, 36(1998)357-393.

Google Scholar

[7] B.D. Blair, J.P. Crago, C.J. Hedman, R.D. Klaper: Chemosphere 93 (2013) 2116–2123.

Google Scholar

[8] P.J. Ferguson, M.J. Bernot, J.C. Doll, T.E. Lauer: Science of The Total Environment Volumes 458–460(2013) 187–196.

Google Scholar

[9] G.R. Boyda, H. Reemtsma, D.A. Grimm, S. Mitra: The Science of the Total Environment 311 (2003) 135–149.

Google Scholar

[10] A.L. Spongberg, J.D. Witter, J. Acun, J. Vargas, M. Murillo, G. Uman, E. Gòme, G. Perez: Water Research 45 (2011) 6709-6717.

Google Scholar

[11] M. Kuster, M. J. L. Alda, M. D. Hernando, M. Petrovic, J.M. Alonso, D. Barcelò: Journal of Hydrology (2008) 358, 112–123.

Google Scholar

[12] B.K. Horderna, R.M. Dinsdale, A.J. Guwy: Water Research, 42 (2008) 3498-3518.

Google Scholar

[13] Y. Yoon, J. Ryu, J. Oh, B.G. Choi, S.A. Snyder: Science of the Total Environment 408 (2010) 636–643.

Google Scholar

[14] A. Gulkowska, Y. He, M.K. So, L.W.Y. Yeung, H.W. Leung, J.P. Giesy, P.K.S. Lam, M. Martin, B.J. Richardson: Mar. Pollut. Bull. 54 (2007) 1287–1293.

DOI: 10.1016/j.marpolbul.2007.04.008

Google Scholar

[15] Z.H. Yan, X.F. Yang, G.H. Lu, J.C. Liu, Z.X. Xie, D.H. Wu: Science of the Total Environment 470–471 (2014) 171–179.

Google Scholar

[16] S. B. Ducey, A. Sapkota: Appetite 56 (2011) 516–549.

Google Scholar

[17] R.M. Narbait, D.R. Huyen, T. Dang, J. Morrissette, T. Matsuura, S. Y. Jasim, S. Tabe, P. Yang: Chemical Engineering Journal 225 (2013) 848–856.

Google Scholar

[18] J.L. Liu, M.H. Wong: Environment International 59 (2013) 208–224.

Google Scholar

[19] K.E. Murray, S.M. Thomas, A.A. Bodour: Environmental Pollution 158 (2010) 3462-3471.

Google Scholar

[20] E.R. Cooper, T.C. Siewicki, K. Phillips: Sci Total Environ398 (2008) 26–33.

Google Scholar

[21] Q. Sui, B. Wang, W.T. Zhao, J. Huang, G. Yu, S.B. Deng: Chemosphere89 (2012) 280–6.

Google Scholar

[22] Y.F. Li, G.B. Zhu, W.J. Ng, S. K. Tan: Science of the Total Environment 468–469 (2014) 908–932.

Google Scholar

[23] M. Yalero: water research 44(2010) 3669-3678.

Google Scholar

[24] L.D. Nghiem, A.I. Schäfer, M. Elimelech: Environ. Sci. Technol. 39 (2005) 7698–7705.

Google Scholar