VLIZ
VLAAMS INSTITUUT VOOR DE ZEE
MARIEN EN KUSTGEBONDEN ONDERZOEK & BELEID IN VLAANDEREN
   
© VLIZ © VLIZ © VLIZ © VLIZ © VLIZ
 
 
  English  Sitemap  Print
U bent hier: VLIZ > datacentrum
menu1 Over het VLIZ menu2 Infoloket menu3 Zeebibliotheek menu4 Cijfers&Beleid menu5 Faciliteiten menu6 Datacentrum
   
Datacentrum
  - IMIS: Integrated Marine Information System -
log in

Personen | Instituten | Publicaties | Projecten | Datasets | Kaarten
meld een fout in dit recordmandje (0): toevoegen | tonen Print-vriendelijke versie

Effect of burrowing macrobenthos on the flux of dissolved substances across the water-sediment interfacePeer reviewed article
Bird, F.L.; Ford, P.W.; Hancock, G.J. (1999). Effect of burrowing macrobenthos on the flux of dissolved substances across the water-sediment interface Mar. Freshw. Res. 50(6): 523-532
In: Marine and Freshwater Research. CSIRO: Melbourne. ISSN 1323-1650, meer

Beschikbaar in Auteurs 

Trefwoord
    Marien

Auteurs  Top 

Abstract
    The effect of burrowing activities of ghost shrimp (Neocallichirus limosus and Biffarius arenosus) and heart urchin (Echinocardium cordatum) on the flux of dissolved substances across the water-sediment interface was examined by comparing the transport of the tracer deuterium oxide (D2O) between sediments and overlying water in experimental laboratory tanks with and without fauna. This experiment was complemented by measurements of the diffusive flux of naturally occurring isotopes of radium (Ra-224 and Ra-223) from the sediments into the water column. Despite different burrowing habits, all three species enhanced flux of D2O and the Ra isotopes by similar amounts. In sandy sediments, both shrimps and urchins enhanced flux of D2O across the water-sediment interface 2.5 fold. In muddy sediments, however, results were inconclusive. There was little difference in flux of Ra-224 and Ra-223 between muddy and sandy sediments; flux was 2.3-3.9 times higher in the presence of the burrowing species than in their absence. These findings emphasize (i) the important role of burrowing macrofauna in the transport of dissolved substances between the sediment and water bodies and (ii) the dependence of various biogeochemical processes, including nutrient release, on the benthic macrofauna of Port Phillip Bay.

 Top | Auteurs 
 

 

Vlaams Instituut voor de Zee
InnovOcean site
Wandelaarkaai 7
B-8400 OOSTENDE, België
Tel: +32 [0]59/34 21 30
Fax: +32 [0]59/34 21 31
Email: info@vliz.be
   

 

Vlaamse Gemeenschap Provincie West-Vlaanderen