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Quantifying macrodetritus fluxes from a small temperate estuary
Author(s) -
Rebecca V. GladstoneGallagher,
Dean R. Sandwell,
Andrew M. Lohrer,
Carolyn J. Lundquist,
Conrad A. Pilditch
Publication year - 2017
Publication title -
marine and freshwater research
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.693
H-Index - 88
eISSN - 1448-6059
pISSN - 1323-1650
DOI - 10.1071/mf16408
Subject(s) - estuary , intertidal zone , environmental science , ecosystem , temperate climate , oceanography , nutrient , biogeochemistry , litter , particulates , flux (metallurgy) , fishery , ecology , biology , materials science , metallurgy , geology
Empirical measurements of estuary-to-coast material fluxes usually exclude the fraction of primary production that is exported as macrodetritus (marine plant litter), potentially leaving a gap in our understanding of the role of estuaries as outwelling systems. To address this gap, we sampled water and suspended material seasonally from the mouth of Pepe Inlet, Tairua Estuary, New Zealand. From samples collected hourly over 24h, we calculated the lateral tidal fluxes (import, export, net flux) of macrodetritus, particulate and dissolved forms of nitrogen (N) and phosphorus (P). Annually, the inlet was a net exporter of N and P (5145 and 362kg respectively). However, macrodetritus accounted for 87%). Nevertheless, seasonal pulses in the source and supply of macrodetritus may have consequences for the temporal scales over which this resource subsidy affects receiving ecosystems (e.g. intertidal sandflats). These mensurative investigations are useful to inform estuarine nutrient budgets that quantify the ecosystem services provided by temperate estuaries (e.g. contribution to fisheries food webs).

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