Short-Term Nitrogen and Phosphorus Release during the Disturbance of Surface Sediments: A Case Study in an Urbanised Estuarine System (Gold Coast Broadwater, Australia)

Understanding the effects of sediment disturbances on nutrient loadings is important for the management of estuarine settings. This study investigated the initial influence of sediment disturbance on water column nutrient concentrations in a shallow estuarine setting within the Gold Coast Broadwater...

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Main Authors: Ryan J.K. Dunn, Nathan J. Waltham, Peter R. Teasdale, David Robertson, David T. Welsh
Format: Article
Language:English
Published: MDPI AG 2017-04-01
Series:Journal of Marine Science and Engineering
Subjects:
Online Access:http://www.mdpi.com/2077-1312/5/2/16
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spelling doaj-7e642bcba663477f9a4541036fc30ad52021-04-02T08:57:28ZengMDPI AGJournal of Marine Science and Engineering2077-13122017-04-01521610.3390/jmse5020016jmse5020016Short-Term Nitrogen and Phosphorus Release during the Disturbance of Surface Sediments: A Case Study in an Urbanised Estuarine System (Gold Coast Broadwater, Australia)Ryan J.K. Dunn0Nathan J. Waltham1Peter R. Teasdale2David Robertson3David T. Welsh4Griffith School of Engineering, Gold Coast campus, Griffith University, QLD 4222, AustraliaCatchment Management Unit, Gold Coast City Council, PMB 5042 Gold Coast Mail Centre, QLD 9729, AustraliaEnvironmental Futures Centre, Gold Coast campus, Griffith University, QLD 4222, AustraliaEnvironmental Futures Centre, Gold Coast campus, Griffith University, QLD 4222, AustraliaEnvironmental Futures Centre, Gold Coast campus, Griffith University, QLD 4222, AustraliaUnderstanding the effects of sediment disturbances on nutrient loadings is important for the management of estuarine settings. This study investigated the initial influence of sediment disturbance on water column nutrient concentrations in a shallow estuarine setting within the Gold Coast Broadwater, using a laboratory-based approach. Undisturbed sediment cores (200 mm Ø × 330 mm length, plexiglass) were incubated before and after being subjected to a disturbance event, to investigate the effect on the immediate and subsequent short-term water column nutrient concentrations. Sediment NH4+bio and PO43−bio concentrations ranged from 150 to 478 and 1.50 to 8.56 nmol g−1 dry wt, respectively. Water column NH4+ concentrations underwent the greatest increase (>1000% or approx. 14 times greater) immediately following disturbance, with mean effluxes increasing by >300%. Thereafter, water column NH4+ concentrations and efflux rates declined to near initial pre-disturbance concentrations. Water column NH4+ concentrations accounted for 0.58%–5.50% of the depth-integrated sediment NH4+bio concentration, indicating mobilization of the sediment bound exchangeable NH4+. The observed changes in PO43− concentrations and fluxes were much lower in comparison to those observed for N-species. Following disturbance, increases in the water column PO43− concentration accounted for 7.16%–8.22% depth-integrated sediment bioavailable PO43− at +1 and +2 hours, and 5.65% at +7 hours, respectively. These results provide important insight into the potential implications of disturbance events, such as vessel activities and dredging operations, within the case study region, providing information for potential management options and relevant water quality concerns.http://www.mdpi.com/2077-1312/5/2/16nutrientssediment disturbancewater quality
collection DOAJ
language English
format Article
sources DOAJ
author Ryan J.K. Dunn
Nathan J. Waltham
Peter R. Teasdale
David Robertson
David T. Welsh
spellingShingle Ryan J.K. Dunn
Nathan J. Waltham
Peter R. Teasdale
David Robertson
David T. Welsh
Short-Term Nitrogen and Phosphorus Release during the Disturbance of Surface Sediments: A Case Study in an Urbanised Estuarine System (Gold Coast Broadwater, Australia)
Journal of Marine Science and Engineering
nutrients
sediment disturbance
water quality
author_facet Ryan J.K. Dunn
Nathan J. Waltham
Peter R. Teasdale
David Robertson
David T. Welsh
author_sort Ryan J.K. Dunn
title Short-Term Nitrogen and Phosphorus Release during the Disturbance of Surface Sediments: A Case Study in an Urbanised Estuarine System (Gold Coast Broadwater, Australia)
title_short Short-Term Nitrogen and Phosphorus Release during the Disturbance of Surface Sediments: A Case Study in an Urbanised Estuarine System (Gold Coast Broadwater, Australia)
title_full Short-Term Nitrogen and Phosphorus Release during the Disturbance of Surface Sediments: A Case Study in an Urbanised Estuarine System (Gold Coast Broadwater, Australia)
title_fullStr Short-Term Nitrogen and Phosphorus Release during the Disturbance of Surface Sediments: A Case Study in an Urbanised Estuarine System (Gold Coast Broadwater, Australia)
title_full_unstemmed Short-Term Nitrogen and Phosphorus Release during the Disturbance of Surface Sediments: A Case Study in an Urbanised Estuarine System (Gold Coast Broadwater, Australia)
title_sort short-term nitrogen and phosphorus release during the disturbance of surface sediments: a case study in an urbanised estuarine system (gold coast broadwater, australia)
publisher MDPI AG
series Journal of Marine Science and Engineering
issn 2077-1312
publishDate 2017-04-01
description Understanding the effects of sediment disturbances on nutrient loadings is important for the management of estuarine settings. This study investigated the initial influence of sediment disturbance on water column nutrient concentrations in a shallow estuarine setting within the Gold Coast Broadwater, using a laboratory-based approach. Undisturbed sediment cores (200 mm Ø × 330 mm length, plexiglass) were incubated before and after being subjected to a disturbance event, to investigate the effect on the immediate and subsequent short-term water column nutrient concentrations. Sediment NH4+bio and PO43−bio concentrations ranged from 150 to 478 and 1.50 to 8.56 nmol g−1 dry wt, respectively. Water column NH4+ concentrations underwent the greatest increase (>1000% or approx. 14 times greater) immediately following disturbance, with mean effluxes increasing by >300%. Thereafter, water column NH4+ concentrations and efflux rates declined to near initial pre-disturbance concentrations. Water column NH4+ concentrations accounted for 0.58%–5.50% of the depth-integrated sediment NH4+bio concentration, indicating mobilization of the sediment bound exchangeable NH4+. The observed changes in PO43− concentrations and fluxes were much lower in comparison to those observed for N-species. Following disturbance, increases in the water column PO43− concentration accounted for 7.16%–8.22% depth-integrated sediment bioavailable PO43− at +1 and +2 hours, and 5.65% at +7 hours, respectively. These results provide important insight into the potential implications of disturbance events, such as vessel activities and dredging operations, within the case study region, providing information for potential management options and relevant water quality concerns.
topic nutrients
sediment disturbance
water quality
url http://www.mdpi.com/2077-1312/5/2/16
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