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Investigation of a wood treatment facility: Impact on an aquatic ecosystem in the San Joaquin River, Stockton, California

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Abstract

Polychlorinated dibenzo-p-dioxins (PCDDs), polychlorinated dibenzofurans (PCDFs), polychlorinated biphenyls (PCBs), and metals were monitored in the river sediments near the McCormick and Baxter (MCB) wood treatment facility, Stockton, CA. Transplanted clams and resident fish species were used to assess bioavailability. The highest PCDD and PCDF contamination in sediments were confined to an area next to the facility and an area in the nearby Stockton harbor (DK location). Pentachlorophenol (PCP) wood treatment at MCB was the most probable source of the contamination. PCBs contaminated a wider area of the Stockton Ship Channel and harbor. Metal concentrations were uniformly low except for the metalloid arsenic in the Old Mormon Slough and lead and zinc near boat docks in the Stockton harbor. Despite high mortality rates, clams (Corbicula fluminea) bioaccumulated PCBs, PCDDs, and PCDFs. In clams, PCBs and 2,3,7,8 TCDD were much closer to equilibrium with the sediments than were higher chlorinated PCDDs and PCDFs. All fish were at background levels for 2,3,7,8 TCDD. All fish had lower lipid adjusted PCDD/F and PCB concentrations in the skinned muscle than in the whole fish. PCBs in fish were above background levels for United States river systems. Although high contamination exists in the river near this superfund site, adverse effects on the aquatic community could not be demonstrated.

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References

  • Ahlborg UG, Becking GC, Birnbaum LS, Brouwer A, Derks HJGM, Freeley M, Golor G, Hanberg A, Larsen JC, Liem AKD, Safe SH, Schlatter C, Waern F, Younes M, Yrjanheikki E (1994) Toxic equilvalency factors for dioxin-like PCBs: Report on a WHO-ECEH and IPCS consultation, December 1993. Chemosphere 28:1049–1067

    Google Scholar 

  • Ankley GT, Cook PM, Carlson AR, Call DJ, Swenson JA, Corcoran HF (1992) Bioaccumulation of PCBs from sediments by oligochaetes and fishes: Comparison of studies. Canadian J Fish Aquat Sci 49:2080–2085

    Google Scholar 

  • Baker JE, Capel PD, Eisenreich SJ (1986) Influence of colloids on sediment-water partition coefficients of pentachlorobiphenyl congeners in natural water. Environ Sci Technol 20:1136–1143

    Google Scholar 

  • Buck G (1993) The New York state angler cohort—Exposure, characterization, reproduction, and developmental health. Report in the workshop on perinatal exposure to dioxin-like compounds, June 13–15, 1993. In: Lindstrom G, Hooper NK, Petreas MX, Stephens RD (eds) Environ Health Perspect (in press)

  • Cook PM, Kuehl DW (1991) Bioaccumulation and toxicity of TCDD and related compounds in aquatic ecosystems: Biological basis for risk assessment of dioxins and related compounds. Banbury Report 35, Cold Spring Harbor Press, pp 143–166

  • Crunkilton RL, Smith LM, Petty JD, Kleopfer RD (1987) Residues of 2,3,7,8-tetrachlorodibenzo-p-dioxin in the Spring River, Missouri. Water Air Soil Pollut 32:219–231

    Google Scholar 

  • Dewailly E, Bruneau S, Ayotte P, Laliberte C, Gingras S, Belanger D, Ferron L (1993) Health status at birth of Inuit newborns prenatally exposed to organochlorines. Chemosphere 27:359–366

    Google Scholar 

  • Dewailly E, Nantel AJ, Webere J-P, Meyer F (1989) High levels of PCBs in the breast milk of Inuit women from arctic Quebec. Bull Environ Contam Toxicol 43:641–646

    Google Scholar 

  • Hagenmaier H, Brunner H (1987) Isomerspecific analysis of pentachlorophenol and sodium pentachlorophenate for 2,3,7,8-substituted PCDD and PCDF at sub-ppb levels. Chemosphere 16:1759–1764

    Google Scholar 

  • Hayward DG, Charles JM, Voss de Bettancourt C, Stephens SE, Stephens RD, Papanek PJ, Lance LL, Ward C (1989) PCDDs and PCDFs in breast milk as correlated with fish consumption in Southern California. Chemosphere 18:455–468

    Google Scholar 

  • Kuehl DW, Cook PM, Batterman AR, Lothenbach D, Butterworth BC (1987a) Bioavailability of polychlorinated dibenzo-p-dioxins and dibenzofurans from contaminated Wisconsin river sediment to carp. Chemosphere 16:667–679

    Google Scholar 

  • Kuehl DW, Cook PM, Batterman AR, Butterworth BC (1987b) Isomer dependent bioavailability of polychlorinated dibenzo-p-dioxins and dibenzofurans from municipal incinerator fly ash to carp. Chemosphere 16:657–666

    Google Scholar 

  • Kuehl DW, Butterworth BC, McBride A, Kroner S, Bahnick D (1989) Contamination of fish by 2,3,7,8-tetrachlorodibenzo-p-dioxin: A survey of fish from major watersheds in the United States. Chemosphere 18:1997–2014

    Google Scholar 

  • Leaf A, Weber P (1988) Cardiovascular effects of n-3 fatty acids. New Eng J Med 318:549–557

    Google Scholar 

  • McKee P, Burt A, McCurin D (1990) Levels of dioxins, furans and other organic contaminants in harbour sediments near a wood preserving plant using pentachlorophenol and cresote. Chemosphere 20(10–12):1679–1685

    Google Scholar 

  • NATO, Committee on the Challenges of Modern Society (1988) Pilot study on international information exchange on dioxins and related compounds international toxicity equivalency factor (I-TEF) method of risk assessment for complex mixtures of dioxins and related compounds. Report #176

  • Niimi AJ, Oliver BG (1989) Distribution of polychlorinated biphenyl congeners and other halocarbons in whole fish and muscle among Lake Ontario salmonids. Environ Sci Technol 23:83–88

    Google Scholar 

  • — (1988) Trophodynamic analysis of polychlorinated biphenyl congeners and other chlorinated hydrocarbons in the Lake Ontario ecosystem. Environ Sci Technol 22:388–397

    Google Scholar 

  • Parkerton TF, Connolly JP, Thomann RV, Uchrin CG (1993) Do aquatic effects or human health end points govern the development of sediment-quality criteria for nonionic organic chemicals? Environ Toxicol Chem 12:507–523

    Google Scholar 

  • Rappe C, Buser HR, Stalling DL, Smith LM (1981) Identification of polychlorinated dibenzofurans in environmental samples. Nature 292:524–527

    Google Scholar 

  • Smith LM, Stalling DL, Johnson JL (1984) Determination of part-pertrillion levels of polychlorinated dibenzofurans and dioxins in environmental samples. Anal Chem 56:1830–1842

    Google Scholar 

  • Stalling DL, Smith LM, Petty JD, Hogan JW, Hogan JL, Rappe C, Buser HR (1983) Residues of polychlorinated dibenzo-p-dioxins and dibenzofurans in Laurentian Great Lakes fish. In: Tucker RE, Young AL, Gray AP (eds) Human and environmental risks of chlorinated dioxins and related compounds. Plenum Press, NY, p 221

    Google Scholar 

  • Stephens RD, Petreas MX, Hayward DG, Chang RR, Goldman LR (1992) Biotransfer and bioaccumulation of dioxins and dibenzofurans from soil. Division of Environmental Chemistry, American Chemical Society, 203rd National Meeting April 5–10, pp 833–836

  • Svensson B-G, Nilsson A, Hansson M, Rappe C, Akesson B, Skerfving S (1991) Exposure to dioxins and dibenzofurans through the consumption of fish. New Eng J Med 324:8–12

    Google Scholar 

  • Turner JL (1966) Distribution and food habits of centrarchid fishes in the Sacramento-San Joaquin delta in ecological studies of the Sacramento-San Joaquin delta. California Department of Fish and Game, Fish Bulletin 136, pp 144–153

  • United States Environmental Protection Agency (1992) National Study of Chemical Residues in Fish. Volume II. Office of Science and Technology (WH-551) Washington, DC 20460, EPA 823-r-92–008b

    Google Scholar 

  • U.S. Fish and Wildlife Service (1989) The ecology of the Sacramento-San Joaquin delta system. Biological report 85(7.22), U.S. Department of the Interior and the U.S. Environmental Protection Agency, Washington, DC

    Google Scholar 

  • Von Schacky C (1987) Prophylaxis of atherosclerosis with marine omega-3 fatty acids: A comprehensive strategy. Ann Int Med 107:890–899

    Google Scholar 

  • Walker MK, Peterson RE (1991) Potencies of polychlorinated dibenzo-p-dioxin, dibenzofuran, and biphenyl congeners relative to 2,3,7,8 tetrachlorodibenzo-p-dioxin for producing early life stage mortality in rainbow trout (Oncorhynchus mykiss). Aquat Toxicol 21:219–238

    Google Scholar 

  • Wang JCS (1986) Fishes of the Sacramento-San Joaquin estuary and adjacent waters, California: A guide to the early life histories. Interagency Ecological Study Program for the Sacramento-San Joaquin Estuary, Technical Report No. 9

  • Williams LL, Giesy JP (1992) Relationships among concentrations of individual polychlorinated biphenyl (PCB) congeners, 2,3,7,8-tetrachlorodibenzo-p-dioxin equivalents (TCDD-EQ), and rearing mortality of chinook salmon (Oncorhynchus tshhawytscha) eggs from Lake Michigan. J Great Lakes Res 18:108–124

    Google Scholar 

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Hayward, D.G., Petreas, M.X., Winkler, J.J. et al. Investigation of a wood treatment facility: Impact on an aquatic ecosystem in the San Joaquin River, Stockton, California. Arch. Environ. Contam. Toxicol. 30, 30–39 (1996). https://doi.org/10.1007/BF00211326

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  • DOI: https://doi.org/10.1007/BF00211326

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