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how oxygen, nutrients, pollutants, or fine sediments migrate between surface water and the bed, or to quantify how restoration actions affect life-sustaining processes such as fish spawning and methane
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Project advert This research will investigate how aquatic macroinvertebrate assemblages and sediment regimes change following the introduction of Large Woody Structures (LWS) into river systems
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holistic understanding of shallow (0–10 m depth) near-coastal systems, in which sediment-water interactions are particularly intense. The PhD project will directly contribute to Work package 3 “Benthic
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project ‘Coupling biological pump changes to variations in the Atlantic Meridional Overturning Circulation (AMOC) during rapid climate transitions’. Your job The AMOC transports warm saline waters from
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methane fluxes, we will determine the methane fluxes between the sediment, the water, and the atmosphere in selected study areas (Darß-Zings Bodden Chain and Greifswalder Bodden). To this end, you will
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the production of the greenhouse gas methane in coastal marine sediments worldwide. Methanotrophs play a key role in removing the methane through aerobic and anaerobic microbial processes. The efficiency
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the production of the greenhouse gas methane in coastal marine sediments worldwide. Methanotrophs play a key role in removing the methane through aerobic and anaerobic microbial processes. The efficiency
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for the production, consumption, transport and emissions of greenhouse gases such as carbon dioxide and methane. Methane is the second most important anthropogenic greenhouse gas contributing to global warming today
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gradient that determines atmospheric water transport to extra-tropical regions. To this end, you will generate proxy data to assess temperature, hydrology and carbon cycle information. Methods might include
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quantities of organic carbon in sediments. While detrital inputs and belowground biomass are considered the primary sources of sedimentary carbon stocks in seagrass meadows, less is known about the exudation