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Heavy metals associated with reduced sulfur in sediments from different deposition environments in the Pearl River estuary, China

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Abstract

Distribution of acid volatile sulfur (AVS) and the simultaneously extracted metals (SEM: Cu, Pb, Zn, Cd, Ni) in sediment profiles has been studied at five sites in Pearl River estuary, China. Of the five sampling locations, Nos.1 and 2 are in the middle shoal, Nos.3 and 4 in the west shoal and No. 5 locates to the south of the estuary. The AVS content in the sediments of the middle shoal varies in a small range (0.25–4.06 μmol g−1), while that of west shoal increases with depth from 0 to ultimately 26.09 μmol g−1. The SEM concentration in the sediment profiles at location Nos. 1, 2 and 5 is generally in the range of 0.95±0.2 μmol g−1 with a slight upward increase, while that in the sediment of west shallows are much higher (1.43–2.42 μmol g−1) with a significant upward increase, especially in the upper layer of ca. 15 cm. The observed upward increase of SEM content at all the sites implies that heavy metal contamination of sediment in the Pearl River estuary is increasing. Calculations of the excess heavy metal content which is defined by SEM-AVS molar difference suggests that the upper sediment in the Pearl River estuary, especially on the west shallows, could be a source of heavy metal contaminants and may cause toxicity to the benthos. The site-specific distribution patterns in the AVS and SEM profiles were interpreted according to the hydrogeochemistry of deposition environments.

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References

  • Allen HE., Fu G, Deng B: 1993, Analysis of acid volatile sulfide (AVS) and simultaneously extracted metals (SEM) for the estimation of potential toxicity in aquatic sediments Environ Toxicol Chem 12:1441–1453

    Article  CAS  Google Scholar 

  • Alloway BJ: 1990, Heavy Metals in Soils. Blackie, London

    Google Scholar 

  • Correia AD, Costa MH: 2000, Effects of sediment geochemical properties on the toxicity of copper-spiked sediments to the marine amphipod Gammarus locusta Science Total Environ 247: 99–106

    Article  CAS  Google Scholar 

  • Cooper DC, Morse JW: 1996, The chemistry of Offatts Bayou, Texas: A seasonally highly sulphidic basin Estuaries 19:595–611

    Article  CAS  Google Scholar 

  • Cooper DC, Morse JW: 1998, Biogeochemical controls on trace metal cycling in anoxic marine sediments Environ Sci Technol 32:327–330

    Article  CAS  Google Scholar 

  • Di Toro DM, Mahony JD, Hansen DJ, Scott KJ, Carlson AR, Ankley GT: 1992, Acid volatile sulfide predicts the acute toxicity of cadmium and nickel in sediments Environ Sci Technol 26:96–101

    Article  CAS  Google Scholar 

  • Halcrow W, Mackay DW, Thornton I: 1973, The distribution of trace metals and fauna in the Firth Clyde in relation to disposal of sewage sludge J Mar Biol Assoc UK 53:721–739

    Article  CAS  Google Scholar 

  • Hu JF, Peng PA, Jia GD, Mai BX, Zhang G. 2006 Distribution and sources of organic carbon, nitrogen and their isotopes in sediments of the subtropical Pearl River estuary and adjacent shelf, Southern China. Marine Chemistry 98, 274–285

    Google Scholar 

  • Huang XP: 1995, Application of the receptor model to research on heavy metal pollution of sediments in Lingdingyang estuary. Trop Oceanol 14: 1–6 (in Chinese)

    Google Scholar 

  • Lee J-S, Lee B-G, Luoma SN, Choi HJ, Koh C-H, Brown CL: 2000, Influence of acid volatile sulfides and metal concentrations on metal partitioning in contaminated sediments Environ Sci Technol 34:4511–4516

    Article  CAS  Google Scholar 

  • Li XD, Wai OWH, Li YS, Coles BJ, Ramsey MH, Thornton I: 2000, Heavy metal distribution in sediment profiles of the Pearl River estuary, China Appl Geochem 15:567–581

    Article  CAS  Google Scholar 

  • Li XD, Shen ZG, Wai OWH, Li YS: 2001, Chemical forms of Pb, Zn and Cu in the sediment of Pearl River estuary Mar Poll Bull 42:215–223

    Article  CAS  Google Scholar 

  • Liu Y, Han M, Wu L, Nobuo M: 1998, Recent evolution of outlets in Zhujiang River delta and the prospect for land reclamation. Acta Geogr Sin 53:492–500 (in Chinese with English abstract)

    Google Scholar 

  • Mucha AP, Teresa M, Vasconcelos SD, Bordalo AA: 2004, Vertical distribution of the macrobenthic community and its relationship to trace metals and natural sediment characteristics in the lower Douro estuary, Portugal Estuar Coast Shelf Sci 59:663–673

    Article  CAS  Google Scholar 

  • Machado M, Carvalho MF, Santelli RE, Maddock JEL: 2004, Reactive sulfides relationship with metals in sediments from a eutrophicated estuary in Southeast Brazil Mar Pollut Bull 49:89–92

    Article  CAS  Google Scholar 

  • Matisoff G, Holdren Jr GR: 1995, A model for sulfur accumulation in soft water lake sediments Water Resour Res 31:1751–1760

    Article  CAS  Google Scholar 

  • Morse JW: 1994, Interaction of trace-metals with authigenic sulfide minerals – Implications for their bioavailabilityMar Chem 46:1–6

    Article  CAS  Google Scholar 

  • Morse JW, Luther GW III: 1999, Chemical influence on trace metal-sulfide interactions in anoxic sediments Geochimi Cosmochim Acta 63:3373–3378

    Article  CAS  Google Scholar 

  • Ridgway J, Shimmield G: 2002, Estuaries as repositories of historical contamination and their impact on shelf seas Estuar Coast Shelf Sci 55:903–928

    Article  CAS  Google Scholar 

  • Salomons W, Förstner U 1984, Metals in the HydrocycleSpringer, Berlin

    Google Scholar 

  • Teasdale PR, Apte SC, Ford PW, Batley GE, Koehnken L: 2003, Geochemical cycling and speciation of copper in waters and sediments of Macquarie harbour Western Tasmania EstuarineCoast Shelf Sci 57:475–487

    Article  CAS  Google Scholar 

  • Urban NR, Brezonik PL, Baker LA, Sherman LA 1994, Sulfide reduction and diffusion in sediments of little Rock, Wisconsin Limnol Oceanogr 39:797–815

    Article  CAS  Google Scholar 

  • Van den Berg GA, Buykx SEJ, Van den Hoop MAGT: 2001, Vertical profile of trace metals and acid volatile sulphide in a dynamic sedimentary environment: Lake Ketel, The Netherland Appl Geochem 16:781–791

    Article  Google Scholar 

  • Van den Hoop MAGT, Den Hollander HA, Kerdijk HN: 1997, Spatial and seasonal variations of acid volatile sulphide (AVS) and simultaneously extracted metals (SEM) in Dutch marine and freshwater sediments Chemosphere 35:2307–2316

    Article  Google Scholar 

  • Wen WY, Zhang GX, Du WC, 1995. A study on water pollution in the Zhujiang estuary. In: Wong CK, et al (ed.) Environmental Research in Pearl River and Coastal Areas. Guangdong Higher Education Press, Guangzhou, China, pp. 99–108 (in Chinese)

    Google Scholar 

  • Wong CK, Chu KH, Chen QC, Ma XL, 1995. Environmental Research in Pearl River and Coastal Areas. Guangdong Higher Education Press, Guangzhou, China

    Google Scholar 

  • Zheng JL. 1992 The study of heavy metals in the Pearl River estuary. In Chen JS, Zhou JY, eds, Heavy Metal Research in the Aquatic Environment of China. Environmental Science Press of China, pp. 369–387 (in Chinese)

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Acknowledgements

This research was financially supported by Chinese Academy of Sciences (Grant ZKCX2-SW−212, 2000 (254)) and Guangzhou Institute of Geochemistry (Grant GIGCX-03–07).

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Correspondence to Fanrong Chen.

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Chen, F., Yang, Y., Zhang, D. et al. Heavy metals associated with reduced sulfur in sediments from different deposition environments in the Pearl River estuary, China. Environ Geochem Health 28, 265–272 (2006). https://doi.org/10.1007/s10653-006-9042-4

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  • DOI: https://doi.org/10.1007/s10653-006-9042-4

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