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Tài liệu tiếng Anh:

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speciation and concentration assessment of Zn and Cd by sequential extraction in surface sediment of Klang River, Malaysia”, Microchemical Journal, vol. 95, pp. 285-292.

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biogeochemistry, bioavailability and risks of metals”, Springer: New York, 2nd Edition.

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metal and trace metal analysis in soil by sequential extraction: a review of procedures”, International Journal of Enviromental Analytical Chemistry, volume 2010.

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heavy metals in soils and sediment. An account of the improvement and harmonization of extraction techniques undertaken under the auspices of the BCR of the commission of the European communities”, International Journal of Environmental Analytical Chemistry, vol. 51, pp. 135- 151.

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near the Australian Antarctic Station, Casey”, Science of The Total Environment, vol. 389(2-3), Pages 466-474.

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quality guidelines for the protection of aquatic life, Summary tables, Updated. In:Canadian Environmental Quality Guidelines 1999”, Canadian Council of Ministers of the Environment, Winnipeg, Excerpt from Publication No. 1299; ISBN 1-896997-34-1.

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Refugio Rodriguez - Vazquez, Hector M. Poggi - Varaldo (2005), “Chemical fractionation of boron and heavy metals in soils irrigated with wastewater in central Mexico”, Agriculture, Ecosystems and Environment, vol. 108, pp. 57- 71.

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metals in surface sediments, from the tropical Zuari estuary, central west coast of India”, Environmemt Monitoring Assessment, vol. 158, pp. 117-137.

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(2009), “Concentration of trace elements in arable soi after long-term application of organic and inorganic fertilizers”, Nutrient Cycling in Agroecosystems, vol. 85(3), pp. 241- 252.

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Metal Pollution in the Aquatic Environment”, (Ed) Forstner U, Whittman G.T.W, Spinger-Verlag, Berlin, pp 197-270.

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“Fractination of some heavy metals in bottom sediments from the midung dịchle Odra River (Germany/ Poland)”, Polish Journal of Enviromental Studies, vol.14(3), pp. 305-317.

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contaminated by historic mine wastes: a study of multi- element mine wastes in West Devon, England and using arsenic as an element of potential concern to human health”, The Science of the Total Environment, vol. 249, pp. 171-221.

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metal availability in polluted soils by two sequential extraction procedures using factor analysis”, Environmental Pollution, vol. 110(1), pp. 3-9.

  1. Ip Carman, C.M, Li, X.D, Zhang G., Wai, O.W.H, Li, Y.S (2007), “Trace metal distribution in sediments of the Pearl River Estuary and the surrounding coastal area, South China ”, Environment. Pollution, vol. 147, pp. 311-323.

  2. Juan Liu, Yonggheng Chen, JinWang (2010), “Factor analysis and sequential

extraction unveil geochemical processes relevant for trace metal distribution in fluvial sediments of a pyrite mining area, China”, Carbonate Evaporites, vol. 25, pp. 51-63.

  1. Juan Luis, Trujillo-Cardenas, Nereida P. Saucedo-Torres, Pedro Faustino Zarate del Valle, Nely Rios-Donato, Eduardo Mendizabal, Sergio Gomez-Salazar (2010), “Speciation and sources of toxic metals in sediment of lake Chapala, Mexico”, Journal of the Mexican Chemical Society, vol. 54(2), pp. 79-87.

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metals in bottom sediments of lakes”, Journal of Environmental Studies, vol. 8(5), pp. 331- 339.

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collected at lakes Volvi and Koronia, N. Greece”, Environment International, vol. 30, pp. 11-17.

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sequential extraction procedures applied to the soeciation of cadmium in soils”, International Journal of Environmental Analytical Chemistry, vol. 74(1-4), pp. 289- 303.

  1. Marcos Pérez-López, María Hermoso de Mendoza, Ana López Beceiro and

Francisco Soler Rodríguez (2008), “Heavy metal (Cd, Pb, Zn) and metalloid (As) content in raptor species from Galicia (NW Spain)”, Ecotoxicology and Environmental Safety, vol. 70(1), Pages 154-162.

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Reiko Sugawara, Bal Ram Singh (2010), “Effect of Lherzolite on chemical fractions of Cd and Zn and their uptake by plants in contaminated soil”, Water, Air and Soil pollution, vol. 207(1-4), pp. 241-251.

  1. M.Horsfall JR and A.I. Spiff (2001), “Distribution and partitioning of trace

metals in sediments of lower reaches of the New Calabar River, Port Harcourt, Nigeria”, Environmental Monitoring and Assessment, vol. 78, pp. 309-326.

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sedimentary organicmatter in the oceans. I. Organic carbon presentation”, Deep Sea Research, vol. 26, pp. 1347.

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  2. New York State Department of Environmental Conservation (1993), “Technical guidance for Screening Contaminanted Sediments”, Division of Fish, Wildlife and Marine Resourse: New York State Department of Environmental Conservation.

  3. Nga Pham Thi Thu and Rodney T.Buckney (2007), “Metal speciation in

sediment in West Lake (Ho Tay), Ha Noi, Viet Nam”, International Journal Water, vol. 3(4), pp. 356-367.

  1. Ogla Ch. Manouri, Nikolaos D. Papadimas, Sophia E. Salta (1998), “Three

approaches to the analysis of zinc(II) in pharmaceutical formulations by means of different spectrometric methods”, II Farmaco, vol. 53, pp. 563 – 569.

  1. Ontario Ministry of Environment and Energy (August 1993), “Guidelines for the Protection and Management of aquatic Sediment Quality in Ontario”.

  2. P.O. Oviasogie, C.L.Ndiokwere (2008), “Fractionation of Lead and Cadmium in refuse dump soil treated with cassava mill effluent” , The Journal of Agriculture and Environment, vol. 9, pp. 10-15.

  3. P. S. Harikumar; U.P. Nasir; M. P. Mujeebu Rahman (2009), “Distribution of

heavy metal in the core sediments of a tropical wetland system” , International journal of Environmental Science and Technology, vol. 6(2), pp. 225-232.

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“Determination and speciation of heavy metals in sediments of the Pisuaarga River” , Water Research, vol. 24(3), pp. 373-379.

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mineralogy, morphology, and multivariate statistical technique for quantifying metal pollution in highly polluted aquatic sediments - a case study: Brahmani and Nandira Rivers, India” , Journal of Hazardous Materials, vol. 163, pp. 632-644.

  1. Sangjoon Lee, Ji- Won Moon and Hi-Soo Moon (2003), “Heavy metals in the

bed and suspended sediments of anyang River, Korea: Implication for water quality”, Environmental Geochemistry and Health, vol. 25, pp. 433-452.

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  2. Tam, N.F.Y, Wong, Y.S (2000), “Spatial variation of heavy metal in surface

sediments of Hong Kong mangrove swamps”, Environmental Pollution, vol. 110, pp. 195-205.

  1. U.S EPA (1997), “Toxicological Benchmarks for Screening Contaminants of

Potential concern for Effects on Sediment - Associated Biota, Report of the Sediment Criteria Subcommittee, Science Advusory Board”, ES/ER/TM-95/R4, U.S environmental Protection Agency, Washington, DC.

  1. WHO (2006), “Element speciation in human health risk assessment,

Environmental Health criteria 234” , World Health Organization.

  1. Wisconsin Department of Natural Resources (2003), “Consensus based

sediment quality guideline, Recommendations for Use & Application. Interim Guidance” , Wisconsin Department of Natural Resources , Report WT-732 2003.

  1. http://en.wikipedia.org/wiki/Sediment







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