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High ammonium production from sediments in hypereutrophic shrimp ponds

底栖区 环境科学 小虾 沉积物 营养物 海洋学 生态学 生物 地质学 古生物学
作者
Michele A. Burford,AR Longmore
出处
期刊:Marine Ecology Progress Series [Inter-Research Science Center]
卷期号:224: 187-195 被引量:78
标识
DOI:10.3354/meps224187
摘要

MEPS Marine Ecology Progress Series Contact the journal Facebook Twitter RSS Mailing List Subscribe to our mailing list via Mailchimp HomeLatest VolumeAbout the JournalEditorsTheme Sections MEPS 224:187-195 (2001) - doi:10.3354/meps224187 High ammonium production from sediments in hypereutrophic shrimp ponds Michele A. Burford1,3,*, Andrew R. Longmore2,3 1CSIRO Marine Research, PO Box 120, Cleveland, Queensland 4163, Australia 2Marine and Freshwater Resources Institute, Queenscliff, Victoria 3225, Australia 3Cooperative Research Centre for Aquaculture, Australia *E-mail: michele.burford@csiro.au ABSTRACT: Intensive shrimp ponds are hypereutrophic ecosystems with high nutrient loading rates. The contribution of sediment nutrient fluxes to nutrient cycling in shrimp ponds was studied. Benthic processes were quantified using benthic chambers (clear and dark) on the sediment of intensive shrimp ponds at 3 farms. The ponds contained 2 distinct sediment zones: an outer zone of sand and rubble swept clean by the action of paddlewheels and other aerators (65 to 85% of the pond area), and an inner zone where settled particulate matter formed a sludge pile. The high nutrient loads, in the form of formulated feed, coupled with high sediment deposition resulted in an anoxic sediment in the pond center with a low respiratory quotient (oxygen:carbon dioxide ratio). The carbon dioxide effluxes were 2- to 4-fold higher than oxygen consumption. The highest nutrient flux rates from the sediment were those of ammonium (NH4+), particularly in the inner sludge zone (up to 182 mmol m-2 d-1). Inferred denitrification efficiency was low (<2%), particularly in the inner sludge zone. Denitrification rates, as measured by the acetylene block method, confirmed this. Denitrification may be limited by nitrate (NO3-) availability. It is unclear why NO3- concentrations were low, but nitrifiers either may have been inhibited by pond conditions or were unable to become established due to the routine water discharges to maintain adequate water quality. Fluxes of urea and PO43- were also low. This study shows that low rates of nitrogen loss from denitrification, relative to the high nitrogen inputs, results in high NH4+ concentrations in the water column. The discharges of pond water mean that sediment processes in shrimp ponds ultimately affect the nitrogen loads discharged into the aquatic environment, exacerbating the potential for eutrophication caused by shrimp farming activities. KEY WORDS: Benthic chambers · Nutrient fluxes · Shrimp · Ammonium · Aquaculture ponds Full text in pdf format PreviousNextExport citation RSS - Facebook - Tweet - linkedIn Cited by Published in MEPS Vol. 224. Online publication date: December 18, 2001 Print ISSN: 0171-8630; Online ISSN: 1616-1599 Copyright © 2001 Inter-Research.
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