Antimony, arsenic and mercury in the aquatic environment and fish in a large antimony mining area in Hunan, China.
暂无分享,去创建一个
Fengchang Wu | Hai-qing Liao | Fengchang Wu | Bijun Liu | Z. Fu | Qiujing Deng | Changli Mo | Jing Zhu | D. Amarasiriwardena | Dulasiri Amarasiriwardena | Haiqing Liao | Zhiyou Fu | Bijun Liu | Changli Mo | Jing Zhu | Qiujing Deng
[1] M. Johnson,et al. Distribution of antimony in contaminated grassland: 2--Small mammals and invertebrates. , 1990, Environmental pollution.
[2] H. Sigel,et al. Handbook on metals in clinical and analytical chemistry , 1994 .
[3] D. Craw,et al. Antimony distribution and environmental mobility at an historic antimony smelter site, New Zealand. , 2004, Environmental pollution.
[4] D. Adriano. Trace Elements in the Terrestrial Environment , 1986 .
[5] W. Goessler,et al. Arsenic speciation in farmed Hungarian freshwater fish. , 2005, Journal of agricultural and food chemistry.
[6] Bijun Liu,et al. [Pollution characteristics of antimony, arsenic and mercury in human hair at Xikuangshan antimony mining area and Guiyang City, China]. , 2009, Huan jing ke xue= Huanjing kexue.
[7] J. Zertuche‐González,et al. Elemental concentrations in different species of seaweeds from Loreto Bay, Baja California Sur, Mexico: implications for the geochemical control of metals in algal tissue. , 2001, Environmental pollution.
[8] T. Kazi,et al. The correlation of arsenic levels in drinking water with the biological samples of skin disorders. , 2008, The Science of the total environment.
[9] D. Fisher,et al. Increasing atmospheric antimony contamination in the northern hemisphere: snow and ice evidence from Devon Island, Arctic Canada. , 2005, Journal of environmental monitoring : JEM.
[10] Montserrat Filella,et al. Antimony in the environment: a review focused on natural waters: II. Relevant solution chemistry , 2002 .
[11] Peter Lockwood,et al. Bioaccumulation of antimony and arsenic in a highly contaminated stream adjacent to the Hillgrove Mine, NSW, Australia , 2009 .
[12] C. Brihaye,et al. A routine speciation method for a pollution survey of coastal sea water , 1985 .
[13] Ping Li,et al. Mercury pollution from artisanal mercury mining in Tongren, Guizhou, China , 2008 .
[14] H. Robberecht,et al. Copper, zinc, manganese, iron, lead, cadmium, mercury and arsenic in fish from Lake Tanganyika, Burundi. , 1994, The Science of the total environment.
[15] M. He. Distribution and phytoavailability of antimony at an antimony mining and smelting area, Hunan, China , 2007, Environmental geochemistry and health.
[16] C. Wood,et al. Metabolic Costs and Physiological Consequences of Acclimation to Aluminum in Juvenile Rainbow Trout (Oncorhynchus mykiss). 2: Gill Morphology, Swimming Performance, and Aerobic Scope , 1994 .
[17] Xinbin Feng,et al. Environmental contamination of heavy metals from zinc smelting areas in Hezhang County, western Guizhou, China. , 2006, Environment international.
[18] Bin Chen,et al. Antimony: global environmental contaminant. , 2005, Journal of environmental monitoring : JEM.
[19] E. Abad,et al. Study on PCBs, PCDD/Fs, organochlorine pesticides, heavy metals and arsenic content in freshwater fish species from the River Turia (Spain). , 2003, Chemosphere.
[20] G. Paton,et al. Antimony bioavailability in mine soils. , 2003, Environmental pollution.
[21] Arctic Canadaw. Increasing atmospheric antimony contamination in the northern hemisphere: snow and ice evidence from Devon Island, , 2005 .
[22] J. T. Byrd. Comparative geochemistries of arsenic and antimony in rivers and estuaries , 1990 .
[23] M Tighe,et al. Soil, water, and pasture enrichment of antimony and arsenic within a coastal floodplain system. , 2005, The Science of the total environment.
[24] R. Hedrick,et al. Proliferative kidney disease of salmonid fish , 1993 .
[25] Montserrat Filella,et al. Antimony in the environment: A review focused on natural waters. III. Microbiota relevant interactions , 2007 .
[26] M. Yamazaki,et al. Physico-chemical speciation of trace elements in urban streams by size fractionation , 1992 .
[27] W. Pickering,et al. Sorption of antimony species by humic acid , 1995 .
[28] M. Horvat,et al. Heavy metals in the vicinity of a chlor-alkali factory in the Upper Negro River ecosystem, Northern Patagonia, Argentina. , 2003, The Science of the total environment.
[29] E. M. Sorensen. Metal Poisoning in Fish , 1991 .
[30] T. Sterckeman,et al. Assessment of the Contamination of Cultivated Soils by Eighteen Trace Elements Around Smelters in the North of France , 2002 .
[31] I. Thornton,et al. Arsenic, antimony and bismuth in soil and pasture herbage in some old metalliferous mining areas in England , 1993, Environmental geochemistry and health.
[32] James W. Moore,et al. Mercury concentrations in fish inhabiting two polluted lakes in Northern Canada , 1980 .
[33] M. Johnson,et al. Distribution of antimony in contaminated grassland: 1--Vegetation and soils. , 1990, Environmental pollution.
[34] Cooley,et al. Accumulation and distribution of dietary uranium in lake whitefish (Coregonus clupeaformis). , 2002, Aquatic toxicology.
[35] W. Goessler,et al. Arsenic accumulation and speciation in freshwater fish living in arsenic-contaminated waters , 2007 .
[36] Y. Tanizaki,et al. Physicochemical speciation of trace elements in river waters by size fractionation , 1992 .
[37] Montserrat Filella,et al. Antimony in the environment: a review focused on natural waters: I. Occurrence , 2002 .
[38] R. Mason,et al. Factors Controlling the Bioaccumulation of Mercury, Methylmercury, Arsenic, Selenium, and Cadmium by Freshwater Invertebrates and Fish , 2000, Archives of environmental contamination and toxicology.
[39] C. Wood,et al. Metabolic Costs and Physiological Consequences of Acclimation to Aluminum in Juvenile Rainbow Trout (Oncorhynchus mykiss). 1: Acclimation Specificity, Resting Physiology, Feeding, and Growth , 1994 .
[40] J. Mattei,et al. Comparison of Arsenic and Antimony Contents in Tissues and Organs of Brown Trout Caught from the River Presa Polluted by Ancient Mining Practices and from the River Bravona in Corsica (France): A Survey Study , 2009, Archives of environmental contamination and toxicology.
[41] W. Goessler,et al. Arsenic speciation in freshwater organisms from the river Danube in Hungary. , 2006, Talanta.
[42] T Gebel,et al. Arsenic and antimony: comparative approach on mechanistic toxicology. , 1997, Chemico-biological interactions.
[43] Zhang Runyu. Environmental characteristics of water near the Xikuangshan antimony mine,Hunan Province , 2009 .
[44] R. Pedlar,et al. Accumulation and distribution of dietary arsenic in lake whitefish (Coregonus clupeaformis). , 2002, Aquatic toxicology.
[45] C. Wai,et al. Distribution and Mobilization of Arsenic and Antimony Species in the Coeur D'Alene River, Idaho , 1990 .
[46] M. He,et al. Effects of different forms of antimony on rice during the period of germination and growth and antimony concentration in rice tissue , 1999 .
[47] C. Montes,et al. The use of the red swamp crayfish (Procambarus clarkii, Girard) as indicator of the bioavailability of heavy metals in environmental monitoring in the River Guadiamar (SW, Spain). , 2006, The Science of the total environment.
[48] R. Handy,et al. Surface absorption of aluminium by gill tissue and body mucus of rainbow trout, Salmo gairdneri, at the onset of episodic exposure , 1989 .
[49] C. Mori,et al. Arsenic accumulation in a freshwater fish living in a contaminated river of Corsica, France. , 2009, Ecotoxicology and environmental safety.
[50] Wen Xue-qin. Geochemical spatial distribution of mercury in China , 2007 .
[51] M. Yamazaki,et al. Physicochemical Speciation of Trace Elements in River Water by Means of Ultrafiltration , 1985 .
[52] R. Ortega,et al. The concentrations of arsenic and other toxic elements in Bangladesh's drinking water. , 2002, Environmental health perspectives.
[53] H Karadede,et al. Concentrations of some heavy metals in water, sediment and fish species from the Atatürk Dam Lake (Euphrates), Turkey. , 2000, Chemosphere.
[54] J. Kramers,et al. Two thousand years of atmospheric arsenic, antimony, and lead deposition recorded in an ombrotrophic peat bog profile, Jura Mountains, Switzerland , 1996 .
[55] S. U. Qadri,et al. Measuring the elimination of arsenic by the gills of rainbow trout (Salmo gairdneri) by using a two compartment respirometer , 1984, Bulletin of environmental contamination and toxicology.
[56] R. Debus,et al. Mobility of antimony in soil and its availability to plants. , 2000, Chemosphere.
[57] Junfeng Li,et al. Urban environmental mercury in Changchun, a metropolitan city in Northeastern China: source, cycle, and fate. , 2004, The Science of the total environment.
[58] M. Storelli,et al. Interspecific variation in total arsenic body concentrations in elasmobranch fish from the Mediterranean Sea. , 2004, Marine pollution bulletin.
[59] T. Randák,et al. Arsenic Content in Tissues of Fish from the River Elbe , 2005 .
[60] M. Andreae,et al. Determination of antimony(III), antimony(V), and methylantimony species in natural waters by atomic absorption spectrometry with hydride generation , 1981 .
[61] M. Rabinowitz,et al. Investigation of unrecognized former secondary lead smelting sites: confirmation by historical sources and elemental ratios in soil. , 2002, Environmental pollution.
[62] Yuwei Chen,et al. Antimony speciation at ultra trace levels using hydride generation atomic fluorescence spectrometry and 8-hydroxyquinoline as an efficient masking agent , 2001 .
[63] H. Dunkelberg,et al. Human biomonitoring of arsenic and antimony in case of an elevated geogenic exposure. , 1998, Environmental health perspectives.
[64] Y. Kara,et al. Antimony and Heavy Metals Accumulation in Some Macroinvertebrates in the Yesilirmak River (N Turkey) near the Sb-mining Area , 2007, Bulletin of environmental contamination and toxicology.