Skip to main content

Mangroves as filters of shrimp pond effluent: predictions and biogeochemical research needs

  • Conference paper
Asia-Pacific Symposium on Mangrove Ecosystems

Part of the book series: Developments in Hydrobiology ((DIHY,volume 106))

Abstract

Preliminary estimates of the ratio of mangrove forest: shrimp pond area necessary to remove nutrients from shrimp pond effluent are made using budgets of nitrogen and phosphorus output for semi-intensive and intensive shrimp ponds combined with estimates of total net primary production in Rhizophora-dominated mangrove forests in tropical coastal areas. If effluent is delivered directly to mangrove forest plots, it is estimated that, depending on shrimp pond management, between 2 and 22 hectares of forest are required to filter the nitrogen and phosphorus loads from effluent produced by a 1 hectare pond. While such ratios may apply to small scale, integrated shrimp aquaculture - mangrove forestry farming systems, the variability in mangrove hydrodynamics makes it difficult to apply such ratios at a regional scale. Before mangroves can be used to strip shrimp pond effluent more research is required on the effects that high ammonia and particulate organic matter loads in pond effluent have on nutrient transformations in mangrove sediments and on forest growth.

This is a preview of subscription content, log in via an institution to check access.

Access this chapter

Chapter
USD 29.95
Price excludes VAT (USA)
  • Available as PDF
  • Read on any device
  • Instant download
  • Own it forever
eBook
USD 169.00
Price excludes VAT (USA)
  • Available as PDF
  • Read on any device
  • Instant download
  • Own it forever
Softcover Book
USD 219.99
Price excludes VAT (USA)
  • Compact, lightweight edition
  • Dispatched in 3 to 5 business days
  • Free shipping worldwide - see info

Tax calculation will be finalised at checkout

Purchases are for personal use only

Institutional subscriptions

Preview

Unable to display preview. Download preview PDF.

Unable to display preview. Download preview PDF.

References

  • Alongi, D. M., 1988a. Bacterial productivity and microbial biomass in tropical mangrove sediments. Microb. Ecol. 15: 59–79.

    Article  Google Scholar 

  • Alongi, D. M., 1988b. Microbial-meiofaunal interrelationships in a tropical mangrove and sandflat ecosystem. J. mar. Res. 46: 349– 365.

    Article  CAS  Google Scholar 

  • Alongi, D. M., 1991. The role of intertidal mudbanks in the diage- nesis and export of dissolved and particulate materials from the Fly Delta, Papua New Guinea. J. exp. mar. Biol. Ecol. 149: 81– 107.

    Article  Google Scholar 

  • Alongi, D. M., 1993a. The role of bacteria in nutrient recycling in tropical mangrove and other coastal benthic ecosystems. Hydro- biologia in press.

    Google Scholar 

  • Alongi, D. M., 1993b. The relationship of forest type on microbial- nutrient relationships in tropical mangrove sediments. J. exp. mar. Biol. Ecol. in press.

    Google Scholar 

  • Alongi, D. M., K. G. Boto & A. I. Robertson, 1992. Nitrogen and phosphorus cycles. In A. I. Robertson & D. M. Alongi (eds.),Tropical Mangrove Ecosystems. American Geophysical Union Press, Washington: 251–292.

    Chapter  Google Scholar 

  • Barg, U. C., 1992. Guidelines for the promotion of environmental management of coastal aquaculture development. FAO Fisheries Technical Paper No 328, Rome, FAO, 122 pp.

    Google Scholar 

  • Blackburn, T. H., D. Christensen, A. M. Fanger, K. Henriksen, H. Iizumi, N. Iversen & P. Limpsaichol, 1987. Mineralization processes in mangrove and seagrass sediments. In J. Hylleberg (ed.), Ao Yon - a mangrove in the Andaman Sea. Institute of Ecology and Genetics, University of Aarhus, Denmark: 22–32.

    Google Scholar 

  • Billen, G., C. Lancelot & M. Meybeck, 1991. N, P and Si retention along the aquatic continuum from land to ocean. In R. F. C. Mantoura,J. M. Martin & R. Wollast (eds.), Ocean Margin Processes in Global Change. John Wiley and Son Ltd: 1944.

    Google Scholar 

  • Boto, K. G., 1992. Nutrients and mangroves. In D. W. Connell & D. W. Hawker (eds.), Pollution in tropical aquatic systems. CRC Press, Boca Raton: 130–145.

    Google Scholar 

  • Boto, K. G., D. M. Alongi & A. L. J. Nott, 1989. Dissolved organic carbon-bacteria interactions at the sediment water interface in a tropical mangrove system. Mar. Ecol. Prog. Ser. 51: 243–251.

    Article  CAS  Google Scholar 

  • Boto, K. G. & J. T. Wellington, 1988. Seasonal variations in concentrations and fluxes of dissolved organic and inorganic materials in a tropical, tidally-dominated mangrove waterway. Mar. Ecol. Prog. Ser. 50:151–160.

    Article  CAS  Google Scholar 

  • Chua, T.-E. & E. Tech, 1990. Aquaculture in Asia: Quo Vadis? In M. M. Joseph (ed.), Aquaculture in Asia. Asian Fisheries Society, Indian Branch, Mangalore: 13–30.

    Google Scholar 

  • Chua, T.-E., J. N. Paw & F. Y. Guarin, 1989. The environmental impact of aquaculture and the effects of pollution on coastal aquaculture development in Southeast Asia. Mar. Pollut. Bull. 20: 335–343.

    Article  Google Scholar 

  • Clough, B. F., 1992. Primary productivity and growth of mangrove forests. In A. I. Robertson & D. M. Alongi (eds.), Tropical Mangrove Ecosystems. American Geophysical Union Press, Washington:225–250.

    Chapter  Google Scholar 

  • Clough, B. F., K. G. Boto & P. M. Attiwill, 1983. Mangroves and sewage: a reevaluation. In H. J. Teas (ed.), Biology and ecology of mangroves. Dr W. Junk Publishers, The Hague: 151–161.

    Google Scholar 

  • Gong, W. K. & J. E. Ong, 1990. Plant biomass and nutrient flux in a managed mangrove forest in Malaysia. Estuar. coast. shelf Sci. 31: 519–530.

    Article  CAS  Google Scholar 

  • Hatcher, B. G., R. E. Johannes & A. I. Robertson, 1989. Review of research relevant to conservation of shallow tropical marine ecosystems. Oceanogr. mar. Biol. ann. Rev. 27: 337–414.

    Google Scholar 

  • Haron, H. A. H., 1981. A working plan for the second 30 year rotation of the Matang Mangrove Forest Reserve, Perak. Perak State Forestry Department, Ipoh, Malaysia, 115 pp.

    Google Scholar 

  • Holford, I. C. R. & W. H. Patrick, Jr., 1979. Effects of redox potential and pH on phosphate removal from wastewater during land application. Prog. Water Techn. 11: 215–225.

    CAS  Google Scholar 

  • Hong, P. N. & L. D. An, 1992. Preliminary study on the environmental characteristics and the utilization of the coastal accretions of Ngoc Hien District - Minh Hai Province. Report to State Committee for Sciences, Hanoi, 77 pp.

    Google Scholar 

  • Hong, P. N. & H. T. San, 1993. Mangroves of Vietnam. IUCN, Bangkok, 173 pp.

    Google Scholar 

  • Kanit & Putha, 1992. Qualitative and quantitative properties of wastewater discharged from intensive shrimp ponds at Amphoe Ranod, Songkhla Province. National Institute of Coastal Aquaculture,Department of Fisheries, Thailand, Technical Paper No 5, 26 pp.

    Google Scholar 

  • Komiyama, A., K. Ogino, S. Aksornkoae & S. Sabhasri, 1987. Root biomass of a mangrove forest in southern Thailand. 1. Estimation by the trench method and the zonal structure of root biomass. J. trop. Ecol. 3: 97–108.

    Article  Google Scholar 

  • Kristensen, E., M. Holmer & N. Bussarawit, 1991. Benthic metabolism and sulphate reduction in a south-east Asian mangrove swamp. Mar. Ecol. Prog. Ser. 73: 93–103.

    Article  CAS  Google Scholar 

  • Kungvankij, P., 1985. Overview of penaeid shrimp culture in Asia. In Y. Taki, J.H. Primavera & J.A. Llobrera (eds.), Proceedings of the first international conference on the culture of penaeid shrimp/prawns. South East Asia Fisheries Development Centre, Iloilo: 11–22.

    Google Scholar 

  • Lin, C. K., 1993. Resource recovery from wastewater of intensive shrimp farming. In Positive impacts of shrimp farming on the environment, coastal quality and socioeconomic conditions in Thailand. Department of Fisheries Thailand Seminar, Songkhla Province, Thailand: 126–136.

    Google Scholar 

  • Moriarty, D. J. W., 1986. Bacterial productivity in ponds used for culture of penaeid prawns. Microb. Ecol. 12: 259–269.

    Article  CAS  Google Scholar 

  • Nedwell, D. B., 1974. Sewage treatment and discharge into tropical coastal waters. Search 5: 187–190.

    Google Scholar 

  • Nedwell, D. B., 1975. Inorganic nitrogen metabolism in a eutrophicated tropical mangrove estuary. Wat. Res. 9: 221–231.

    Article  CAS  Google Scholar 

  • Ong, J. E., 1982. Mangroves and aquaculture in Malaysia. Ambio 11: 252–257.

    Google Scholar 

  • Robertson, A. I., D. M. Alongi & K. G. Boto, 1992. Food chains and carbon fluxes. In A. I. Robertson & D. M. Alongi (eds.), Tropical Mangrove Ecosystems. American Geophysical Union Press, Washington: 293–326.

    Chapter  Google Scholar 

  • Robertson, A. I., P. A. Daniel, P. Dixon & D. Alongi, 1993. Pelagic biological processes along a salinity gradient in the Fly Delta and adjacent river plume (Papua New Guinea). Cont. Shelf Res. 13: 205–224.

    Article  Google Scholar 

  • Robertson, A. I. & P. Dixon, 1993. Separating live and dead fine roots using colloidal silica: an example from mangrove forests. Plant and Soil 157: 151–154.

    Google Scholar 

  • Robertson, A. I. & P. Dixon, in preparation. Fine root mass, decomposition and production in three tropical mangrove forests.

    Google Scholar 

  • Spain, A. V. & J. A. Holt, 1980. The elemental status of the foliage and branchwood of seven mangrove species from northern Queensland. Divison of Soils Divisional Report No. 49. CSIRO, Australia. 8 pp.

    Google Scholar 

  • Stanley, S. O., K. G. Boto, D. M. Alongi & F. T. Gillan, 1987. Composition and bacterial utilization of free amino acids in tropical mangrove sediments. Mar. Chem. 22: 13–30.

    Article  CAS  Google Scholar 

  • Vogt, K. A., C. C. Grier & D. J. Vogt, 1986. Production, turnover and nutrient dynamics of above- and belowground detritus of world forests. Adv. ecol. Res. 15: 303–377.

    Article  Google Scholar 

  • Wolanski, E., Y. Mazda & P. Ridd, 1992. Mangrove hydrodynamics. In A.I. Robertson & D.M. Alongi (eds.), Tropical Mangrove Ecosystems. American Geophysical Union Press, Washington: 43–62.

    Chapter  Google Scholar 

  • Wolanski, E. & P. Ridd, 1986. Tidal mixing and trapping in mangrove swamps. Estuar. coast, shelf Sci. 23: 759–771.

    Article  Google Scholar 

  • Wolanski, E. & P. Ridd, 1990. Mixing and trapping in Australian tropical coastal waters. In R.T. Cheng (ed.), Residual currents and long-term transport. Coastal and Estuarine Studies, Vol. 38, Springer-Verlag, N.Y.: 165–183.

    Chapter  Google Scholar 

  • Woodroffe, C., 1992. Mangrove sediments and geomorphology. In A. I. Robertson & D. M. Alongi (eds.), Tropical Mangrove Ecosystems. American Geophysical Union Press, Washington: 7–42.

    Chapter  Google Scholar 

Download references

Author information

Authors and Affiliations

Authors

Editor information

Yuk-Shan Wong Nora F. Y. Tam

Rights and permissions

Reprints and permissions

Copyright information

© 1995 Springer Science+Business Media Dordrecht

About this paper

Cite this paper

Robertson, A.I., Phillips, M.J. (1995). Mangroves as filters of shrimp pond effluent: predictions and biogeochemical research needs. In: Wong, YS., Tam, N.F.Y. (eds) Asia-Pacific Symposium on Mangrove Ecosystems. Developments in Hydrobiology, vol 106. Springer, Dordrecht. https://doi.org/10.1007/978-94-011-0289-6_35

Download citation

  • DOI: https://doi.org/10.1007/978-94-011-0289-6_35

  • Publisher Name: Springer, Dordrecht

  • Print ISBN: 978-94-010-4127-0

  • Online ISBN: 978-94-011-0289-6

  • eBook Packages: Springer Book Archive

Publish with us

Policies and ethics