FP6Individual fellowship2007–2008

NITROQUEST · The roles of anaerobic and aerobic microbial processes on nitrogen loss from intertidal and estuarine sediments

FP6 — Marie Curie Actions (Human Resources and Mobility)

Duration
2007-01-01 → 2008-06-30
EU contribution
€112,858
Participants
1
Scheme
EIF

Lines connect the coordinator with its partners. CORDIS does not always give exact coordinates for projects before 2014. These points are placed at city or country level.

Results in brief

Final Activity Report Summary - NITROQUEST (The roles of anaerobic and aerobic microbial processes on nitrogen loss from intertidal and estuarine sediments)

A new, naturally occurring process, carried out by bacteria, has been discovered in the Ocean. The bacteria convert ammonium (an inorganic form of nitrogen (N)) to nitrogen gas (N2), which is emitted to the atmosphere. This means that ammonium (NH4), which is used for living organisms in the water, is not available. Although it is likely, we do not know if this process is dominant in continental shelf sediments at intertidal areas. These areas are increasingly subject to high nutrient (nitrogen, phosphorus, etc) loads from anthropogenic (domestic, industrial and agricultural) activity, which can result in enrichment (eutrophication) of the waterbody and, ultimately, ecosystem destruction, including fishkills. Knowledge of the rates of N-cycling in sediments from areas around the points of discharge of anthropogenically-generated N is of immediate value to basic science and to, for example, policy makers. The primary objective of the research for this Intra-European Fellowship - NitroQuest - was to investigate the role, and rates, of specific bacterial processes in intertidal sediments. Three sites along the Weser river in Northern Germany, as well as a tidal sand flat at Janssand in the German Wadden Sea, and four sites around the island of Helgoland in the North Sea were chosen for investigation. Experiments using sediment samples incubated with various chemical states of the rare '15N' isotope and the 'unlabeled' '14N' isotope of nitrogen were carried out and the amount of N2 gas produced was measured. The results indicate that the sediments - especially sandy sediments, which comprise a large majority of the sediments on the continental slope of northern Europe - are a large sink for land-derived nitrogen along the coastal zone. Denitrification (the transformation of nitrate to N2 gas) and anammox were detected in riverine, intertidal and estuary sediments and our measurements indicated that those processes were confined to different depths in the sediment. The data also suggest that sediment mixing, due to the tidal influence, was strong, and resulted in increased nitrogen loss (as N2 production). In fact, the rates of nitrogen loss in mixed sediments were up to 30 times higher than in unixed samples. In summary, and in contrast to conventional views, our results indicate that the sediments sampled are the site of some of the highest N-loss rates in the coastal zone of Wadden Sea and North Sea. Thus, such sediments could play a significant role in N-removal from shelf environments, which account for 50-70% of oceanic N-loss.

Data: CORDIS, © European Union

Project objective

The proposed fellowship will study the roles of anaerobic and aerobic microbial processes on nitrogen loss in estuarine and intertidal sediments. The applicant has 5 years experience in anaerobic microbiology, microbial ecology and environmental biotechnology. He has developed a strong profile, with 19 peer-reviewed papers and over 35 conference proceedings. In order for the applicant to reach his career goals, it is essential that he build on his experience by being trained at a world-leading institute in biogeochemistry.The overall objectives for the applicant are to:(1) gain complementary scientific experience in micro-sensor development, in situ physiological measurement and mathematical modelling;(2) advance his understanding of biogeochemistry and(3) reinforce his position of professional maturity and establish an independent career.The science underpinning the proposal is of international importance; the fact that the anaerobic ammonium oxidation (anammox) process might be important in the oceanic nitrogen cycle has implications for our understanding of global biogeochemical tranformations. Little is known about the factors underpinning this process in sediments and the proposed use of frontline methodologies, including micro-sensor applications and in situ rate measurements using stable isotopes, and excellent host collaborators will put the applicant in a position to make significant scientific and professional advances in this area.Furthermore, since anammox has been demonstrated to be valuable for exploitation in environmental biotechnologies, such as anaerobic waste treatment, the collation and scale-up of more comprehensive and sophisticated datasets on environmental anammox phenomena will assist in the optimisation and further widespread application of these sustainable technologies.

Original text from CORDIS.

Participants

  • MAX-PLANCK-GESELLSCHAFT ZUR FOERDERUNG DER WISSENSCHAFTEN E.V./MAX-PLANCK-INSTITUT FUER MARINE MIKROBIOLOGIE · MUENCHENCoordinatorCity levelGermany

Links

Data: CORDIS, © European Union