Sediment resuspension in two adjacent shallow coastal lakes: controlling factors and consequences on phosphate dynamics

A combination of field measurements, modelling and laboratory experiments was used to evaluate the potential impact of sediment resuspension on phosphorus (P) dynamics. The study was carried out in two adjacent shallow coastal lakes (Lake Honda and Lake Nueva) which, due to their geographic proximit...

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Published inAquatic sciences Vol. 72; no. 1; pp. 21 - 31
Main Authors de Vicente, Inmaculada, Cruz-Pizarro, Luis, Rueda, Francisco J.
Format Journal Article
LanguageEnglish
Published Basel SP Birkhäuser Verlag Basel 01.01.2010
Springer
Springer Nature B.V
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Abstract A combination of field measurements, modelling and laboratory experiments was used to evaluate the potential impact of sediment resuspension on phosphorus (P) dynamics. The study was carried out in two adjacent shallow coastal lakes (Lake Honda and Lake Nueva) which, due to their geographic proximity (only 200 m apart), are subject to equal meteorological forcing and represent ideal systems to study how morphometry and sediment properties relate to wind events. The focusing factors (a measure of the fluxes of sediment into the water column through resuspension) estimated by comparing settling fluxes measured in surface sediment traps with those measured in bottom traps, were significantly larger (approximately 34% larger) in Lake Honda (LH; 1.18) than in Lake Nueva (LN; 0.88). Our model estimates of resuspension fluxes ( E ) were also ca. 40% larger in LH than in LN, in agreement with the observed focusing factors. The larger resuspension fluxes encountered in LH, in comparison with LN, can mainly be explained by differences in lake morphometry. Still, they could arise from differences in grain size distribution or in benthic algae concentration encountered in the lake sediments. By means of adsorption experiments in the laboratory, we show that resuspension events will have different effects on P-dynamics in LH and LN. While the resuspended material from LH tends to adsorb phosphate (PO 4 3− ), removing it from the water column, in LN the resuspended sediments tend to increase the availability of PO 4 3− in solution. These differences arise from (1) higher concentrations of PO 4 3− in water in LH compared to LN; and (2) larger PO 4 3− adsorption capacity of the LH sediments as a result of the more abundant iron oxyhydroxides and clay.
AbstractList A combination of field measurements, modelling and laboratory experiments was used to evaluate the potential impact of sediment resuspension on phosphorus (P) dynamics. The study was carried out in two adjacent shallow coastal lakes (Lake Honda and Lake Nueva) which, due to their geographic proximity (only 200m apart), are subject to equal meteorological forcing and represent ideal systems to study how morphometry and sediment properties relate to wind events. The focusing factors (a measure of the fluxes of sediment into the water column through resuspension) estimated by comparing settling fluxes measured in surface sediment traps with those measured in bottom traps, were significantly larger (approximately 34% larger) in Lake Honda (LH; 1.18) than in Lake Nueva (LN; 0.88). Our model estimates of resuspension fluxes (E) were also ca. 40% larger in LH than in LN, in agreement with the observed focusing factors. The larger resuspension fluxes encountered in LH, in comparison with LN, can mainly be explained by differences in lake morphometry. Still, they could arise from differences in grain size distribution or in benthic algae concentration encountered in the lake sediments. By means of adsorption experiments in the laboratory, we show that resuspension events will have different effects on P-dynamics in LH and LN. While the resuspended material from LH tends to adsorb phosphate (PO sub(4) super(3-)), removing it from the water column, in LN the resuspended sediments tend to increase the availability of PO sub(4) super(3-) in solution. These differences arise from (1) higher concentrations of PO sub(4) super(3-) in water in LH compared to LN; and (2) larger PO sub(4) super(3-)adsorption capacity of the LH sediments as a result of the more abundant iron oxyhydroxides and clay.
A combination of field measurements, modelling and laboratory experiments was used to evaluate the potential impact of sediment resuspension on phosphorus (P) dynamics. The study was carried out in two adjacent shallow coastal lakes (Lake Honda and Lake Nueva) which, due to their geographic proximity (only 200 m apart), are subject to equal meteorological forcing and represent ideal systems to study how morphometry and sediment properties relate to wind events. The focusing factors (a measure of the fluxes of sediment into the water column through resuspension) estimated by comparing settling fluxes measured in surface sediment traps with those measured in bottom traps, were significantly larger (approximately 34% larger) in Lake Honda (LH; 1.18) than in Lake Nueva (LN; 0.88). Our model estimates of resuspension fluxes ( E ) were also ca. 40% larger in LH than in LN, in agreement with the observed focusing factors. The larger resuspension fluxes encountered in LH, in comparison with LN, can mainly be explained by differences in lake morphometry. Still, they could arise from differences in grain size distribution or in benthic algae concentration encountered in the lake sediments. By means of adsorption experiments in the laboratory, we show that resuspension events will have different effects on P-dynamics in LH and LN. While the resuspended material from LH tends to adsorb phosphate (PO 4 3− ), removing it from the water column, in LN the resuspended sediments tend to increase the availability of PO 4 3− in solution. These differences arise from (1) higher concentrations of PO 4 3− in water in LH compared to LN; and (2) larger PO 4 3− adsorption capacity of the LH sediments as a result of the more abundant iron oxyhydroxides and clay.
A combination of field measurements, modelling and laboratory experiments was used to evaluate the potential impact of sediment resuspension on phosphorus (P) dynamics. The study was carried out in two adjacent shallow coastal lakes (Lake Honda and Lake Nueva) which, due to their geographic proximity (only 200 m apart), are subject to equal meteorological forcing and represent ideal systems to study how morphometry and sediment properties relate to wind events. The focusing factors (a measure of the fluxes of sediment into the water column through resuspension) estimated by comparing settling fluxes measured in surface sediment traps with those measured in bottom traps, were significantly larger (approximately 34% larger) in Lake Honda (LH; 1.18) than in Lake Nueva (LN; 0.88). Our model estimates of resuspension fluxes (E) were also ca. 40% larger in LH than in LN, in agreement with the observed focusing factors. The larger resuspension fluxes encountered in LH, in comparison with LN, can mainly be explained by differences in lake morphometry. Still, they could arise from differences in grain size distribution or in benthic algae concentration encountered in the lake sediments. By means of adsorption experiments in the laboratory, we show that resuspension events will have different effects on P-dynamics in LH and LN. While the resuspended material from LH tends to adsorb phosphate (PO4 3-), removing it from the water column, in LN the resuspended sediments tend to increase the availability of PO4 3- in solution. These differences arise from (1) higher concentrations of PO4 3- in water in LH compared to LN; and (2) larger PO4 3-adsorption capacity of the LH sediments as a result of the more abundant iron oxyhydroxides and clay. [PUBLICATION ABSTRACT
Author de Vicente, Inmaculada
Rueda, Francisco J.
Cruz-Pizarro, Luis
Author_xml – sequence: 1
  givenname: Inmaculada
  surname: de Vicente
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  fullname: Cruz-Pizarro, Luis
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  givenname: Francisco J.
  surname: Rueda
  fullname: Rueda, Francisco J.
  organization: Instituto del Agua, Universidad de Granada, Dpto. Ingeniería Civil, Universidad de Granada. Universidad de Granada
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Issue 1
Keywords Wind action
Shallow lakes
Sediment
Resuspension
Phosphate
oxides
surface sediments
algae
resuspension
morphometry
clay
coastal zone
wetlands
dynamics
winds
flux
lakes
clastic rocks
Thallophyta
laboratory studies
phosphorus
models
adsorption
field studies
Plantae
concentration
impacts
sedimentary rocks
lagoons
traps
grain size
oxihydroxides
lake sediments
phosphates
shallow-water environment
Language English
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Springer Nature B.V
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Snippet A combination of field measurements, modelling and laboratory experiments was used to evaluate the potential impact of sediment resuspension on phosphorus (P)...
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SubjectTerms Adsorption
Algae
Biogeochemistry
Biomedical and Life Sciences
Coasts
Earth sciences
Earth, ocean, space
Ecology
Exact sciences and technology
Freshwater
Freshwater & Marine Ecology
Lake morphometry
Lake sediments
Lakes
Life Sciences
Marine & Freshwater Sciences
Marine and continental quaternary
Oceanography
Phosphorus
Research Article
Resuspended sediments
Sediments
Surficial geology
Water column
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Title Sediment resuspension in two adjacent shallow coastal lakes: controlling factors and consequences on phosphate dynamics
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