Using Chironomus dilutus to identify toxicants and evaluate the ecotoxicity of sediments in the Haihe River Basin
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[1] Haibo Zhang,et al. Levels, distributions and sources of veterinary antibiotics in the sediments of the Bohai Sea in China and surrounding estuaries. , 2016, Marine pollution bulletin.
[2] V. Dietze,et al. Evaluation of impact factors on PM2.5 based on long-term chemical components analyses in the megacity Beijing, China. , 2016, Chemosphere.
[3] B. Shan,et al. Impact of extreme oxygen consumption by pollutants on macroinvertebrate assemblages in plain rivers of the Ziya River Basin, north China , 2016, Environmental Science and Pollution Research.
[4] B. Shan,et al. Distributions, fluxes, and toxicities of heavy metals in sediment pore water from tributaries of the Ziya River system, northern China , 2016, Environmental Science and Pollution Research.
[5] Yawei Wang,et al. PBDEs, PCBs and PCDD/Fs in the sediments from seven major river basins in China: Occurrence, congener profile and spatial tendency. , 2016, Chemosphere.
[6] Zhiguo Cao,et al. Biologic risk and source diagnose of 16 PAHs from Haihe River Basin, China , 2016, Frontiers of Environmental Science & Engineering.
[7] Hong Zhang,et al. Heavy metals in estuarine surface sediments of the Hai River Basin, variation characteristics, chemical speciation and ecological risk , 2016, Environmental Science and Pollution Research.
[8] C. Chanway,et al. Bioaugmentation in a pilot-scale constructed wetland to treat domestic wastewater in summer and autumn , 2016, Environmental Science and Pollution Research.
[9] Hervé Macarie,et al. Crop protection and environmental health: legacy management and new concepts , 2016, Environmental Science and Pollution Research.
[10] Hong Wang,et al. A new tool for assessing sediment quality based on the Weight of Evidence approach and grey TOPSIS. , 2015, The Science of the total environment.
[11] Huizhen Li,et al. Identifying the causes of sediment‐associated toxicity in urban waterways in South China: Incorporating bioavailabillity‐based measurements into whole‐sediment toxicity identification evaluation , 2015, Environmental toxicology and chemistry.
[12] Yu Zhao,et al. Nitrogen mineralization and geochemical characteristics of amino acids in surface sediments of a typical polluted area in the Haihe River Basin, China , 2015, Environmental Science and Pollution Research.
[13] Xin Ke,et al. Toxicity identification evaluation of sediments in Liaohe River. , 2015, Marine pollution bulletin.
[14] D. Abessa,et al. Use, development and improvements in the protocol of whole-sediment toxicity identification evaluation using benthic copepods. , 2015, Marine pollution bulletin.
[15] A. Fonseca,et al. Toxicity Identification Evaluation (Phase I) of water and sediment samples from a tropical reservoir contaminated with industrial and domestic effluents , 2014, Environmental Monitoring and Assessment.
[16] Jingling Liu,et al. Effect of water current on the distribution of polycyclic aromatic hydrocarbons, heavy metals and benthic diatom community in sediments of Haihe estuary, China , 2014, Environmental Science and Pollution Research.
[17] Jing Zhang,et al. Polycyclic aromatic hydrocarbons in surface sediment of typical estuaries and the spatial distribution in Haihe river basin , 2014, Ecotoxicology.
[18] Yu Zhao,et al. Heavy metal contamination of overlying waters and bed sediments of Haihe Basin in China. , 2013, Ecotoxicology and environmental safety.
[19] R. Burgess,et al. What's causing toxicity in sediments? Results of 20 years of toxicity identification and evaluations , 2013, Environmental toxicology and chemistry.
[20] Marja Lamoree,et al. Effects‐directed analysis (EDA) and toxicity identification evaluation (TIE): Complementary but different approaches for diagnosing causes of environmental toxicity , 2013, Environmental toxicology and chemistry.
[21] J. Garmendia,et al. Application of Toxicity Identification Evaluation (TIE) procedures for the characterization and management of dredged harbor sediments. , 2013, Marine pollution bulletin.
[22] J. Baguley,et al. Use of a novel sediment exposure to determine the effects of triclosan on estuarine benthic communities , 2013, Environmental toxicology and chemistry.
[23] Fuliu Xu,et al. Distributions, sources, and ecological risks of DDT-related contaminants in water, suspended particulate matter, and sediments from Haihe Plain, Northern China , 2013, Environmental Monitoring and Assessment.
[24] R. Burgess,et al. Linkage of genomic biomarkers to whole organism end points in a Toxicity Identification Evaluation (TIE). , 2013, Environmental science & technology.
[25] D. Mount,et al. Mechanistic sediment quality guidelines based on contaminant bioavailability: Equilibrium partitioning sediment benchmarks , 2013, Environmental toxicology and chemistry.
[26] Huaidong Zhou,et al. PHAHs in 14 principal river sediments from Hai River basin, China. , 2012, The Science of the total environment.
[27] Yaqi Cai,et al. Occurrence, distribution and bioaccumulation of antibiotics in the Haihe River in China. , 2012, Journal of environmental monitoring : JEM.
[28] B. B. Nayak,et al. Geochemical speciation and risk assessment of heavy metals in the river estuarine sediments--a case study: Mahanadi basin, India. , 2011, Journal of hazardous materials.
[29] M. Lydy,et al. Identifying the causes of sediment-associated toxicity in urban waterways of the Pearl River Delta, China. , 2011, Environmental science & technology.
[30] Huiying Li,et al. Distribution and ecological risk of polychlorinated biphenyls and organochlorine pesticides in surficial sediments from Haihe River and Haihe Estuary Area, China. , 2010, Chemosphere.
[31] J. A. Baig,et al. Time saving modified BCR sequential extraction procedure for the fraction of Cd, Cr, Cu, Ni, Pb and Zn in sediment samples of polluted lake. , 2008, Journal of hazardous materials.
[32] J. Hunt,et al. Patterns and trends in sediment toxicity in the San Francisco Estuary. , 2007, Environmental research.
[33] S. Sauvé,et al. Cadmium and zinc in soil solution extracts following the application of phosphate fertilizers. , 2007, The Science of the total environment.
[34] Peter M Chapman,et al. Determining when contamination is pollution - weight of evidence determinations for sediments and effluents. , 2007, Environment international.
[35] G. Jiang,et al. The levels and distribution of organochlorine pesticides (OCPs) in sediments from the Haihe River, China. , 2005, Chemosphere.
[36] R. Burgess,et al. Use of powdered coconut charcoal as a toxicity identification and evaluation manipulation for organic toxicants in marine sediments , 2004, Environmental toxicology and chemistry.
[37] W. Brack. Effect-directed analysis: a promising tool for the identification of organic toxicants in complex mixtures? , 2003, Analytical and bioanalytical chemistry.
[38] Gary S. Lawrence,et al. Weight-of-Evidence Issues and Frameworks for Sediment Quality (And Other) Assessments , 2002 .
[39] R. Burgess,et al. An overview of toxicant identification in sediments and dredged materials. , 2002, Marine pollution bulletin.
[40] D. Macdonald,et al. Development and Evaluation of Consensus-Based Sediment Quality Guidelines for Freshwater Ecosystems , 2000, Archives of environmental contamination and toxicology.
[41] E. Weiner. National Recommended Water Quality Criteria , 2000 .
[42] D. Mount,et al. Effect of zeolite on toxicity of ammonia in freshwater sediments: Implications for toxicity identification evaluation procedures , 1998 .
[43] R. Renner. The contaminated sediment management strategy. , 1998, Environmental science & technology.
[44] L. Burkhard,et al. Identification of surfactants as toxicants in a primary effluent , 1992 .
[45] Richard E. Lund,et al. Aqueous Ammonia Equilibrium Calculations: Effect of pH and Temperature , 1975 .
[46] Yu Zhao,et al. Development and preliminary application of a method to assess river ecological status in the Hai River Basin, north China. , 2016, Journal of environmental sciences.
[47] Shen Hongya. Bio-Toxicity and bioavailability of metal-spiked freshwater sediments to benthic invertebrates , 2014 .
[48] F. Onorati,et al. A multidisciplinary weight of evidence approach for classifying polluted sediments: Integrating sediment chemistry, bioavailability, biomarkers responses and bioassays. , 2012, Environment international.
[49] Fuliu Xu,et al. Residues and ecological risks of organochlorine pesticides in Lake Small Baiyangdian, North China , 2012, Environmental Monitoring and Assessment.
[50] R. Burgess,et al. Marine Sediment Toxicity Identification Evaluations (TIEs): History, Principles, Methods, and Future Research , 2008 .
[51] C. Chan,et al. Air pollution in mega cities in China , 2008 .