Dr. Saranya Jayachandran
Post-Doktorandin
Topic 6: Marines und polares Leben
FB2: Marine Biogeochemie
FE CH Chemische Ozeanographie
AG Biogeochemie der Wassersäule
Büro:
Raum 12/321
Tel.: 0431 600 1723
E-Mail: sjayachandran(at)geomar.de
Anschrift:
GEOMAR Helmholtz-Zentrum für Ozeanforschung Kiel
Gebäude 12
Wischhofstrasse 1-3
24148 Kiel
Forschungsschwerpunkte
- Auswirkungen von Extremereignissen auf Küstenökosysteme
- Biogeochemie der Wassersäule
- Biogeochemische Beobachtungen
Projekte
- ElbeXtreme (2024 - heute) | Website: marextreme.de/elbextreme
- SapHTies (2023 - 2024) | Website: projects.lne.eu/jrp-saphties/
- AIMS³ (2023 - 2024) | Website: aims3.cdrmare.de
Vita
- Indian Institute of Technology Kharagpur | Promotion
- CSIR - National Institute of Oceanography | Projektassistentin
- Cochin University of Science and Technology | M. Sc. Hydrochemie
- University of Calicut | B. Sc. Chemie
- 2019: Global Ocean Oxygen Network (GO2NE) Summer School, Xiamen, China
- 2017: Anni Talwani Memorial Grant for Women Researcher von der Indian Geophysical Union (IGU) während der 54. Jahrestagung, Hyderabad, Indien
- 2011: Indische Akademie der Wissenschaften am CSIR - National Institute of Oceanography, Visakhapatnam, Indien | Sommer-Forschungsstipendiatin
Publikationen
- Jayachandran, S., Chakraborty, P., Sarkar, A., Kumar, D., Babu, P.C. (2021). Post depositional changes of sedimentary organic matter influence chromium speciation in continental slope sediments - A case study. Science of the Total Environment, 777, p.145783.
DOI: https://doi.org/10.1016/j.scitotenv.2021.145783 - Jayachandran, S., Chakraborty, P., Ramteke, D., Chennuri, K., Chakraborty, S. (2018). Effect of pH on transport and transformation of Cu-sediment complexes in mangrove systems. Marine Pollution Bulletin, 133, pp.920-929.
DOI: https://doi.org/10.1016/j.marpolbul.2018.03.054 - Padalkar, P.P., Chakraborty, P., Chatterjee, S., Pradhan, D., Sarkar, A., Jayachandran, S. (2025). Mercury speciation in a complex tropical estuarine system: Understanding natural and anthropogenic influences. Regional Studies in Marine Science, 82, p.104000.
DOI: https://doi.org/10.1016/j.rsma.2024.104000 - Chennuri, K., Chakraborty, P., Jayachandran, S., Mohakud, S.K., Ishita, I., Ramteke, D., Padalkar, P.P., Babu, P.C. and Babu, K.R. (2020). Operationally defined mercury (Hg) species can delineate Hg bioaccumulation in mangrove sediment systems: A case study. Science of The Total Environment, 701, p.134842.
DOI: https://doi.org/10.1016/j.scitotenv.2019.134842 - Chakraborty, P., Jayachandran, S., Lekshmy, J., Padalkar, P., Sitlhou, L., Chennuri, K., Shetye, S., Sardar, A. and Khandeparker, R. (2019). Seawater intrusion and resuspension of surface sediment control mercury (Hg) distribution and its bioavailability in water column of a monsoonal estuarine system. Science of the Total Environment, 660, pp.1441-1448.
DOI: https://doi.org/10.1016/j.scitotenv.2018.12.477
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