[1] Das A K, Chakraborty R, Cervera M L, et al. Analytical techniques for the determination of bismuth in solid environmental samples[J]. Trac-trend Anal Chem, 2006, 25(6):599-608
[2] 杨楠,孙红哲. 砷,锑,铋类药物的应用历史和现状[J]. 化学进展, 2009, 21(5):857-865
[3] 张正斌,刘莲生. 海洋化学[M]. 济南:山东教育出版社,2004
[4] Cutter G A, Cutter L S. Behavior of dissolved antimony, arsenic, and selenium in the Atlantic Ocean[J]. Mar Chem, 1995, 49(4):295-306
[5] Wu X D, Song J M, Li X G, et al. Behaviors of dissolved antimony in the Yangtze River Estuary and its adjacent waters[J]. J Environ Monitor, 2011, 13, 2292-2303
[6] 胡明辉,刘道礼,杨逸萍. 海洋中硒的双箱模式及地球化学特性[J]. 厦门大学学报:自然科学版, 1988, 27(1):93-97
[7] 庞智勇,冯流,周俊丽,等. 长江口水体中取代芳烃类污染物的生态风险评价[J]. 环境化学, 2011, 30(2):430-434
[8] Shaw P T. Shelf circulation off the southeast coast of China[J]. Rev Aquat Sci, 1992, 6(1):1-28
[9] 宁修仁,史君贤,蔡昱明,等. 长江口和杭州湾海域生物生产力锋面及其生态学效应[J]. 海洋学报,2004, 26(6):96-106
[10] Milliman J D, Shen H T, Yang Z S, et al. Transport and deposition of river sediment in the Changjiang Estuary and adjacent continental-shelf[J]. Cont Shelf Res, 1985, 4(1-2):37-45
[11] Chen J Y, Li D J, Chen B L, et al. The processes of dynamic sedimentation in the Changjiang Estuary[J]. J Sea Res, 1999, 41(1-2):129-140
[12] Cutter G A. Dissolved arsenic and antimony in the Black-Sea[J]. Deep-Sea Res PT I, 1991, 38:S825-S843
[13] Yao Q Z, Zhang J, Qin X G, et al. The behavior of selenium and arsenic in the Zhujiang (Pearl River) Estuary, South China Sea[J]. Estuar Coast Shelf S, 2006, 67(1-2):170-180
[14] Reyes M N M, Cervera M L, Guardia M de la. Determination of total Sb, Se, Te, and Bi and evaluation of their inorganic species in garlic by hydride-generation-atomic-fluorescence spectrometry[J]. Anal and Bioanal Chem, 2009, 394(6):1557-1562
[15] Wu H, Du B X, Fang C. Flow injection on-line preconcentration coupled with hydride generation atomic fluorescence spectrometry for ultra-trace amounts of bismuth determination in biological and environmental water samples[J]. Anal Lett, 2007, 40(14):2772-2782
[16] Takeda K, K Fujiwara. Determination of nitrate in natural-waters with the photoinduced conversion of nitrate to nitrite[J]. Anal Chim Acta, 1993, 276(1):25-32
[17] Song J M. Chemistry of sediment-sea water interface of China Seas[M]. Beijing: China Ocean Press, 1997
[18] Song J M. Biogeochemical processes of biogenic elements in China Marginal Seas[M]. New York & Hangzhou:Springer-Verlag GmbH & Zhejiang University Press, 2009
[19] Strickland J D H, Parsons T R. A practical handbook of seawater analysis (2nd ed)[M]. Bull Fish Res Bd Can, 1972: 167
[20] Capelli R, Drava G, De Pellegrini R, et al. Study of trace elements in organs and tissues of striped dolphins (Stenella coeruleoalba) found dead along the Ligurian coasts (Italy)[J]. Adv in Environ Res, 2000, 4(1):31-43
[21] Kim J P. Methylmercury in rainbow-trout (Oncorhynchus mykiss) from Lakes Okareka, Okaro, Rotomahana, Rotorua and Tarawera, North Island, New Zealand[J]. Sci Total Environ, 1995, 164(3):209-219
[22] Lares M L, Flores-Munoz G, Lara-Lara R. Temporal variability of bioavailable Cd, Hg, Zn, Mn and Al in an upwelling regime[J]. Environ Pollut, 2002, 120(3):595-608
[23] Szefer P, Frelek K, Szefer K, et al. Distribution and relationships of trace metals in soft tissue, byssus and shells of Mytilus edulis trossulus from the southern Baltic[J]. Environ Pollut, 2002, 120(2):423-444
[24] Chen C T A, Ruo R, Paid S C, et al. Exchange of water masses between the East China Sea and the Kuroshio off northeastern Taiwan[J]. Contl Shelf Res, 1995, 15(1):19-39
[25] Zhang J, Liu S M, Ren J L, et al. Nutrient gradients from the eutrophic Changjiang (Yangtze River) Estuary to the oligotrophic Kuroshio waters and re-evaluation of budgets for the East China Sea Shelf[J]. Prog Oceanogr, 2007, 74(4):449-478
[26] 王保栋. 黄海和东海营养盐分布及其对浮游植物的限制[J]. 应用生态学报, 2003, 14(7):1122-1126
[27] Beardsley R C, Limeburner R, Yu H, et al. Discharge of the Changjiang (Yangtze River) into the East China Sea[J]. Cont Shelf Res, 1985, 4(1-2):57-76
[28] Ren J L, Zhang J, Li D D, et al. Behavior of dissolved inorganic arsenic in the Yellow Sea and East China Sea[J]. Deep-Sea Res PT Ⅱ, 2010, 57(11-12):1035-1046
[29] 王保栋,刘峰. 南黄海溶解氧的平面分布及其季节变化[J]. 海洋学报, 1999, 21(4):47-53
[30] Abdullah M I, Shiyu Z, Mosgren K. Arsenic and selenium species in the oxic and anoxic waters of the Oslofjord, Norway[J]. Mar Pollut Bull, 1995, 31(1-3):116-126
[31] Conde J E, Alaejos M S. Selenium concentrations in natural and environmental waters[J]. Chem Rev, 1997, 97(6):1979-2003
[32] 赵保仁,任广法. 长江口上升流海区的生态环境特征[J]. 海洋与湖沼, 2001, 32(3):327-333
[33] Gao Y Z, He J Z, Ling W T, et al. Effects of organic acids on copper and cadmium desorption from contaminated soils[J]. Environ Int, 2003, 29(5):613-618
[34] 孙卫玲,邓宝山. pH 对铜在黄土中吸持及其形态的影响[J]. 环境科学, 2001, 22(003):78-83
[35] Zhou D M, Chen H M, Wang S Q, et al. Effects of organic acids, o-phenylenediamine and pyrocatechol on cadmium adsorption and desorption in soil[J]. Water Air Soil Pollut, 2003, 145(1):109-121
[36] 徐明岗,李菊梅,张青. pH 对黄棕壤重金属解吸特征的影响[J]. 生态环境, 2004, 13(3):312-315
[37] Wilson N, Webster-Brown J. The fate of antimony in a major lowland river system, the Waikato River, New Zealand[J]. App Geochem, 2009, 24(12):2283-2292
[38] 沈焕庭,贺松林,茅志昌,等. 中国河口最大浑浊带刍议[J].泥沙研究, 2001, 1:23-29
[39] 章骅,何品晶,吕凡,等. 重金属在环境中的化学形态分析研究进展[J]. 环境化学, 2011, 30(1):130-137
[40] 石晓勇,王修林,陆茸,等. 东海赤潮高发区春季溶解氧和pH分布特征及影响因素探讨[J]. 海洋与湖沼, 2005, 36(5):404-412
[41] 温婷婷. 黄东海营养盐分布特征以及台湾东北部冷涡上升流的初步研究[D]. 青岛:中国海洋大学硕士学位论文,2005