[1] Matamoros V, Bayona J M, Elimination of pharmaceuticals and personal care products in subsurface flow constructed Wetlands[J].Environ Sci Technol, 2006, 40:5811-5816
[2] 曾祥英,陈多宏,桂红艳,等.环境中合成麝香污染物的研究进展[J]. 环境监测管理技术, 2006, 18(3): 7-10
[3] Berset J D, Kupper T, Etter R, et al. Considerations about the enantioselective transformation of polycyclic musks in wastewater, treated wastewater and sewage sludge and analysis of their fate in a sequencing batch reactor plant[J]. Chemosphere, 2004, 57(8): 987-996
[4] Sumner N R, Guitart C, Fuentes G, et al. Inputs and distributions of synthetic musk fragrances in an estuarine and coastal environment; a case study. [J]. Environ Pollut, 2009, 158(1): 215-222
[5] Toivanen N, Toimela T, Thti H. Effect of polycyclic musks on the aromatase activity in JEG-3 chorion carcinoma cells[J]. Toxicol Lett, 2008, 180(Suppl 1): S118-S118
[6] Yamauchi R, Ishibashi H, Hirano M, et al. Effects of synthetic polycyclic musks on estrogen receptor, vitellogenin, pregnane X receptor, and cytochrome P450 3A gene expression in the livers of male medaka (Oryzias latipes) [J]. Aquat Toxicol, 2008, 90(4):261-268
[7] 梁高锋,王珺,周静,等. 气相色谱-质谱联用测定母乳中合成麝香[J]. 环境化学,2010,29(1): 113-116
[8] Schmid P, Kohler M, Gujer E, et al. Persistent organic pollutants, brominated flame retardants and synthetic musks in fish from remote Alpine lakes in Switzerland[J]. Chemosphere, 2007, 67(9):S16-S21
[9] Gatermann R, Biselli S, Hühnerfass H,et al. Synthetic musks in the environment. Part 2: Enantioselective transformation of the polycyclic musk fragrances HHCB, AHTN, AHDI, and ATII in freshwater fish[J]. Arch Environ Contam Toxicol, 2002, 42(4): 447-453
[10] 桑文静, 周雪飞, 张亚雷.城市污水厂污泥中合成麝香分析方法的研究进展[J]. 中国给水排水, 2009,25(8):17-21
[11] Wan Y, Wei Q, Hu J, et al. Levels, tissue distribution, and age-related accumulation of synthetic musk fragrances in Chinese Sturgeon (Acipenser sinensis): comparison to organochlorines[J]. Environ Sci Technol, 2007, 41(2): 424-430