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Sewage and the biota on seashores: Assessment of impact in relation to natural variability

  • Biological Assessment of Impact
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Abstract

The three largest sewage outfalls serving Sydney, New South Wales, Australia are to be moved several kilometres offshore in 1991–2. Changes in their environmental impact due to these moves are likely, but detection relies on a good understanding of the present impacts on the natural environment. Biological surveys in 1986–8 of rocky intertidal sites located directly at the present cliff outfalls have been compared to several (≥2) other shores some distance away (which serve as controls). This technique of multiple control sites is recommended as a way of including natural variability in the data set. By comparing the community structure at the point of impact to the range among control sites, it is theoretically possible to be more sure of whether purported impacts represent a response out of the ordinary. Effects detected in this way include gross reductions in species diversity, with complete dominace of rocky shore biota by ephemeral green algae and the absence of animals. Zonation disappears close to outfalls. These striking effects were, however, very localised. Denudation experiments suggested great recruitment and productivity of these algae, but the community as a whole is held at an early stage of succession. Such clear alterations attributable to sewage pollution suggests that this ecosystem would be a good indicator of any changes occurring once outfalls are moved offshore. Continued monitoring including multiple control sites is recommended.

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References

  • Borowitzka, M. A.: 1972, ‘Intertidal Algal Species Diversity and the Effect of Pollution’,Aust. J. Mar. Freshwat. Res. 23, 73–84.

    Google Scholar 

  • Clancy, K. G. and Carroll, D. J.: 1986, ‘Key Issues in Planning Submarine Outfalls for Sydney, Australia’,Wat. Sci. Tech. 18, 159–170.

    Google Scholar 

  • Fairweather, P. G.: 1988, ‘Bait Collection of the Cunjevoi,Pyura stolonifera, in NSW: Study Design and Preliminary Results’,Proceedings of Symposium on ‘The IndoPacific Convergence’, IOC Westpac Program Group (in press).

  • Flynn, M. J. and Thistlethwayte, D. K. B.: 1965, ‘Sewage Pollution and Sea Bathing’,Int. J. Air Wat. Poll. 9, 641–651.

    Google Scholar 

  • Green, R. H.: 1979,Sampling Design and Statistical Methods for Environmental Biologists, Wiley-Interscience, New York.

    Google Scholar 

  • Hurlbert, S. J.: 1984, ‘Pseudoreplication and the Design of Ecological Field Experiments’,Ecol. Monogr. 54, 187–211.

    Google Scholar 

  • Keough, M. J. and Butler, A. J.: 1983, ‘Temporal Changes in Species Number in an Assemblage of Sessile Marine Invertebrates’,J. Biogeog. 10, 317–330.

    Google Scholar 

  • Littler, M. M. and Murray, S. N.: 1975, ‘Impact of Sewage on the Distribution, Abundance and Community Structure of Rocky Intertidal Macro-organisms’,Mar. Biol. 30, 277–291.

    Google Scholar 

  • Littler, M. M. and Murray, S. N.: 1978, ‘Influence of Domestic Wasters on Energetic Pathways in Rocky Intertidal Communities’,J. Appl. Ecol.,15, 583–595.

    Google Scholar 

  • May, V.: 1981, ‘Long-term Variation in Algal Intertidal Floras’,Aust. J. Ecol. 6, 329–343.

    Google Scholar 

  • May, V.: 1985, ‘Observations on Algal Floras Close to Two Sewerage Outlets’,Cunninghamia 1, 385–394.

    Google Scholar 

  • May, V., Bennett, I., and Thompson, T. E.: 1970, ‘Herbivore-Algal Relationships on a Coastal Rock Platform (Cape Banks, N.S.W.)’,Oecologia 6, 1–14.

    Google Scholar 

  • McGuinness, K. A.: 1988,The Ecology of Botany Bay and the Effects of Man's Activities: a critical synthesis, Institute of Marine Ecology, University of Sydney.

  • Moodie, E. G., Stewart, R. S., and Bowen, S. E.: 1986, ‘The Impact of Surfactants on Norfolk Island Pines Along the Sydney Coastal Beaches Since 1973’,Env. Poll. (Series A) 41, 153–164.

    Google Scholar 

  • Murray, S. N. and Littler, M. M.: 1978, ‘Patterns of Algal Succession in a Perturbed Marine Intertidal Community’,J. Phycol. 14, 506–512.

    Google Scholar 

  • Scanes, P. R.: 1988, ‘Effects of Hot Water Effluent on Fish Assemblages: The Case for Adequately Replicated Sampling in Environmental Studies’,AMSA Silver Jubilee Conference, December 1988 (in press).

  • Simpson, R. D., Saenger, P., Currie, D., and Smith, S.: 1986,Survey of Benthic Communities at Possible Effluent Discharge Sites for Proposed Coffs Harbour Areas Sewerage: Description and Assessment, Unpublished report for Public Works Department, Coffs Harbour Shire, 57 p.

  • Stewart-Oaten, A., Murddoch, W. W., and Parker, K. P.: 1986, ‘Environmental Impact Assessment: “pseudoreplication”, in Time?’,Ecology 67, 929–940.

    Google Scholar 

  • Stull, J. K., Haydock, C. I., Smith, R. W., and Montagne, D. E.: 1986, ‘Longterm Changes in the Benthic Community on the Coastal Shelf off Palos Verdes, Southern California’,Mar. Biol. 91, 539–551.

    Google Scholar 

  • Underwood, A. J.: 1980, ‘The Effects of Grazing by Gastropods and Physical Factors on the Upper Limits of Distribution of Intertidal Macroalgae’,Oecologia 46, 201–213.

    Google Scholar 

  • Underwood, A. J.: 1981a, ‘Structure of a Rocky Intertidal Community in NSW: Patterns of Vertical Distribution and Seasonal Changes’,J. Exp. Mar. Biol. Ecol. 51, 57–85.

    Google Scholar 

  • Underwood, A. J.: 1981b, ‘Techniques of Analysis of Variance in Experimental Marine Biology and Ecology’,Oceanogr. Mar. Biol. Ann. Rev. 19, 513–605.

    Google Scholar 

  • Underwood, A. J.: 1989a, ‘Rocky Intertidal Shores’, in L. S. Hammond and R. Synnot (eds.),Australian Marine Biology, Longman Cheshire, Melbourne (in press).

    Google Scholar 

  • Underwood, A. J. 1989b, ‘The Analysis of Stress in Natural Populations’,Biol. J. Linn. Soc. (in press).

  • Underwood, A. J. and Jernakoff, P. J.: 1981, ‘Effects of Interactions Between Algae and Grazing Gastropods on the Structure of a Low-Shore Intertidal Algam Community’,Oecologia 48, 221–233.

    Google Scholar 

  • Underwood, A. J., Denley, E. J., and Moran, M. J.: 1983, ‘Experimental Analyses of the Structure and Dynamics of Mid-Shore Rocky Intertidal Communities in NSW’,Oecologia 56, 202–219.

    Google Scholar 

  • Westman, W. E.: 1978, ‘Measuring the Inertia and Resilience of Ecosystems’,BioSci. 28, 705–710.

    Google Scholar 

  • Winer, B. J.: 1971,Statistical Principles in Experimental Design, 2nd ed. McGraw-Hill, New York.

    Google Scholar 

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Fairweather, P.G. Sewage and the biota on seashores: Assessment of impact in relation to natural variability. Environ Monit Assess 14, 197–210 (1990). https://doi.org/10.1007/BF00677916

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