Tao S, Li BG, He XC et al. Spatial and temporal variations and possible sources of dichlorodiphenyltrichloroethane (DDT) and its metabolites in rivers in Tianjin, China. Chemosphere, 2007, 68:10-16.
[2]
Liu WX, He W, Qin N et al. Residues, distributions, sources and ecological risks of OCPs in the water from Lake Chao, China. The Scientific World Journal, 2012. doi:10.1100/2012/897697.
[3]
Ouyang HL, He W, Qin N et al. Levels, temporal-spatial variations and sources of organochlorine pesticides in ambient air of Lake Chaohu, China. The Scientific World Journal, 2012. doi:10.1100/2012/504576.
[4]
He W, Qin N, He QS et al. Characterization, ecological and health risks of DDTs and HCHs in water from a large shallow Chinese lake. Ecological Informatics, 2012, 12:77-84.
[5]
Iwata H, Tanabe S, Tatsukawa R. A new view on the divergence of HCH isomer compositions in oceanic air. Marine Pollution Bulletin, 1993, 26:302-305.
[6]
Iwata H, Tanabe S, Ueda K et al. Persistent organochlorine residues in air, water, sediments, and soils from the Lake Baikal region, Russia. Environmental Science and Technology, 1995, 29(3):792-801.
[7]
Walker K, Vallero AD, Lewis GR. Factors influence the distribution of lindane and other hexachlorocyclohexance in the environment. Environmental Science and Technology, 1999, 33(24):4372-4378.
[8]
Liu WX, Li Y, Zuo Q et al. Residual characteristics of HCHs and DDTs in surface soils from the western zone of Bohai Bay.Acta Scientiae Circumstantiae, 2008, 28(1):142-149.
[9]
Xu FL, Kong XZ, He W et al. Distributions, sources and ecological risks of HCHs in the sediments from Haihe Plain, Northern China. Environmental Sciences and Pollution Research, 2013, 20(4):2009-2019.
[10]
Wang Y, Wu WJ, He W et al. Residues and ecological risks of organochlorine pesticides in Lake Small Baiyangdian, North China. Environmental Monitoring and Assessment, 2013, 185(1):917-929.
[11]
Hitch RK, Day HR. Unusual persistence of DDT in some western USA soils. Bulletin of Environmental Contamination and Toxicology, 1992, 48(2):259-264.
[12]
Qiu XH, Zhu T, Yao B et al. Contribution of dicofol to the current DDT pollution in China. Environmental Science and Technology, 2005, 39:4385-4390.
[13]
Sun YZ, Wang XT, Li XH et al. Distribution of persistent organochlorine pesticides in tissue/organ of silver carp (Hypophthalmichthys molitrix) from Guanting Reservoir, China. Journal of Environmental Sciences, 2005, 17(5):722-726.
[14]
Wang Y, He W, Qin N et al. Distributions, sources, and ecological risks of DDT-related contaminants in water, suspended particulate matter, and sediments from Haihe Plain, Northern China. Environmental Monitoring and Assessment, 2013, 185(2):1777-1790.
[15]
Eitzer BD, Mattina MJI, Iannuchi-Berger W. Compositional and chiral profiles of weathered chlordane residues in soil. Environmental Toxicology and Chemistry, 2001, 20(10):2198-2204.
[16]
Sovocool GW, Lewis RG, Harless RL et al. Analysis of technical chlordane by gas chromatography/mass spectrometry. Analytical Chemistry, 1977, 49(6):734-740.
[17]
Schubert B, Heininger P, Keller M et al. Monitoring of contaminants in suspended particulate matter as an alternative to sediments. Trends in Analytical Chemistry, 2012, 36:58-70.
[18]
Long ER, MacDonald DD, Smith SL et al. Incidence of adverse biological effects within ranges of chemical concentrations in marine and estuarine sediments. Environmental Management, 1995, 19(1):81-97.
[19]
Smith SL, MacDonald DD, Keenleyside KA et al. A preliminary evaluation of sediment quality assessment values for freshwater ecosystems.Journal of Great Lakes Research, 1996, 22(3):624-638.
[20]
MacDonald DD, Ingersoll CG, Berger TA. Development and evaluation of consensus-based sediment quality guidelines for freshwater ecosystems. Archives of Environment Contamination and Toxicology, 2000, 39:20-31.
Jones KC, de Voogt P. Persistent organic pollutants (POPs):state of the science. Environmental Pollution, 1999, 100:209-221.
[25]
Willett KL, Ulrich EM, Hites RA. Differential toxicity and environmental fates of hexachlorocyclohexane isomers. Environmental Science and Technology, 1998, 32(15):2197-2207.
[26]
Quan X, Niu JF, Chen S et al. Effects of Fe2O3, organic matter and carbonate on photocatalytic degradation of lindane in the sediment from the Liao River, China. Chemosphere, 2003, 52:1749-1755.
[27]
Wong MH, Leung AOW, Chan JKY et al. A review on the usage of POP pesticides in China, with emphasis on DDT loadings in human milk. Chemosphere, 2005, 60:740-752.
[28]
Tang ZW, Yang ZF, Shen ZY et al. Residues of organochlorine pesticides in water and suspended particulate matter from the Yangze River catchment of Wuhan, China. Environmental Monitoring and Assessment, 2008, 137:427-439.
[29]
Tao S, Xu FL, Wang XJ et al. Organochlorine pesticides in agricultural soil and vegetables from Tianjin, China. Environmental Science and Technology, 2005, 39(8):2494-2499.
[30]
Tao S, Liu WX, Li Y et al. Organochlorine pesticides contaminated surface soil as reemission source in the Haihe Plain, China. Environmental Science and Technology, 2008, 42(22):8395-8400.
[31]
Gewurtz SB, Helm PA, Waltho J et al. Spatial distributions and temporal trends in sediment contamination in Lake St. Clair. Journal of Great Lakes Research, 2007, 33(3):668-685.
[32]
Li J, Zhang G, Guo LL et al. Organochlorine pesticides in the atmosphere of Guangzhou and Hongkong:Regional sources and long-range atmospheric transport. Atmospheric Environment, 2007, 41:3889-3903.
[33]
Feng JL, Zhai MX, Liu Q et al. Residues of organochlorine pesticides (OCPs) in upper reach of the Huaihe River, East China. Ecotoxicology and Environmental Safety, 2011, 74:2252-2259.
[34]
Liu M, Cheng SB, Ou DN et al. Organochlorine pesticides in surface sediments and suspended particulate matters from the Yangtze estuary, China. Environmental Pollution, 2008, 156:168-173.
[35]
Dai GH, Liu XH, Liang G et al. Distribution of organochlorine pesticides (OCPs) and polychlorinated biphenyls (PCBs) in surface water and sediments from Baiyangdian Lake in North China. Journal of Environmental Sciences, 2011, 23(10):1640-1649.
[36]
Yang RQ, Lv AH, Shi JB et al. The levels and distribution of organochlorine pesticides (OCPs) in sediments from the Haihe River, China. Chemosphere, 2005, 61:347-354.
[37]
Doong RA, Lee SH, Lee CC et al. Characterization and composition of heavy metals and persistent organic pollutants in water and estuarine sediments from Gaoping River, Taiwan. Marine Pollution Bulletin, 2008, 57:846-857.
[38]
Zhao ZH, Zhang L, Wu JL et al. Assessment of the potential mutagenicity of organochlorine pesticides (OCPs) in contaminated sediments from Taihu Lake, China. Mutation Research, 2010, 696:62-68.
[39]
Barakat AO, Mostafa A, Wade TL et al. Spatial distribution and temporal trends of persistent organochlorine pollutants in sediments from Lake Maryut, Alexandria, Egypt. Marine Pollution Bulletin, 2012, 64:395-404.
[40]
Barakat AO, Mostafa A, Wade TL et al. Assessment of persistent organochlorine pollutants in sediments from Lake Manzala, Egypt. Marine Pollution Bulletin, 2012, 64:1713-1720.
Pandit GG, Sahu SK, Sharma S et al. Distribution and fate of persistent organochlorine pesticides in coastal marine environment of Mumbai. Environment International, 2006, 32(2):240-243.
[43]
Bidleman TF, Jantunen LMM, Helm PA et al. Chlordane enantiomers and temporal trends of chlordane isomers in Arctic air. Environmental Science and Technology, 2002, 36(4):539-544.