• Login
    View Item 
    •   NM-AIST Home
    • Materials, Energy, Water and Environmental Sciences
    • Research Articles
    • View Item
    •   NM-AIST Home
    • Materials, Energy, Water and Environmental Sciences
    • Research Articles
    • View Item
    JavaScript is disabled for your browser. Some features of this site may not work without it.

    Ecosystem metabolism in the deep and oligotrophic Lake Tanganyika

    Thumbnail
    View/Open
    Abstract (65.64Kb)
    Date
    2024-06-24
    Author
    Mziray, Prisca
    Staehr, Peter
    Christensen, Jesper
    Kimirei, Ismael
    Lugomela, Charles
    Trolle, Dennis
    O'Reilly, Catherine
    Metadata
    Show full item record
    Abstract
    This study investigated variability in ecosystem metabolism in the meromictic, oligotrophic, and deep Lake Tanganyika. A large buoy equipped with a weather station, oxygen and temperature sensors for every 10 m down to 102 m depth and an irradiance sensor at 0 and 22 m depth, provided a three-month data with one-minute frequency. These data enabled us to derive detailed description of water column mixing and light conditions along with daily depth specific rates of gross primary production, ecosystem respiration and net production over a 3-month period. We applied a mass balance approach which included dissolved oxygen exchange between depth layers driven by mixed-layer deepening and eddy diffusivity from a one-dimensional hydrodynamic model. The vertical extent of the upper mixed layer varied between 21–40 m and the extent of the metalimnion varied between 48–75 m, with the euphotic zone (20–38 m) extending into the metalimnion on several days, providing enough light for primary production to occur below the upper mixed layer. Vertical profiles of metabolism showed several periods with elevated primary production in the metalimnion around the deep chlorophyll maximum. This deep productivity may compensate for the decreasing primary production in the epilimnion caused by climate change induced reductions in nutrient inputs from deeper waters.
    URI
    https://doi.org/10.1016/j.jglr.2024.102337
    https://dspace.nm-aist.ac.tz/handle/20.500.12479/2625
    Collections
    • Research Articles

    Nelson Mandela-AIST copyright © 2021  DuraSpace
    Theme by 
    Atmire NV
     

     

    Browse

    All PublicationsCommunities & CollectionsBy Issue DateAuthorsTitlesSubjectsThis CollectionBy Issue DateAuthorsTitlesSubjects

    My Account

    LoginRegister

    Nelson Mandela-AIST copyright © 2021  DuraSpace
    Theme by 
    Atmire NV