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Marine sediments with rapid oxic/anoxic transitions are difficult to monitor in real time. Organic overload that may lead to anoxia and buildup of hydrogen sulfide can be caused by a variety of factors such as sewage spills, harbor water stagnation, algal blooms and the vicinity of aquaculture operations. We have tested a novel multiprobe technology (named SPEAR) on marine sediments to evaluate its performance in monitoring sediments and overlaying water. Our results show the ability of the SPEAR probes to distinguish electrochemical changes at 2-3 mm scale and at hourly cycles. SPEAR probes have the ability to identify redox interfaces and redox transition zones in sediments, but do not use micromanipulators (which are cumbersome in field and underwater applications). We propose that the best target habitats for SPEAR-type monitoring are rapidly evolving muddy deposits and sediments near aquaculture operations where pollution with organics stresses the ecosystem.
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Rocznik
Tom
Strony
1037--1041
Opis fizyczny
Bibliogr. 17 poz., fot., rys.
Twórcy
autor
- DFR Systems SRL, R&D Department, Bucharest, Romania
autor
- DFR Systems SRL, R&D Department, Bucharest, Romania
autor
- University of Southern California, Los Angeles, 90089, USA
autor
- University of Craiova, Biology and Environmental Engineering Department, Frontier Biology and Astrobiology Research Center, Craiova, 200585, Romania
Bibliografia
- [1] J. Llort, C. Langlais, R. Matear, S. Moreau, A. Lenton, P.G. Strutton, Journal of Geophysical Research Oceans 123, 971-984 (2018).
- [2] C. Robinson, Front. Mar. Sci. 5, 533 (2019).
- [3] C. Nejneru, C. Savin, M.C. Perju, D.D. Burduhos-Nergis, M. Costea, C. Bejinariu, IOP Conference Series: Materials Science and Engineering 572 (1), 012106 (2019).
- [4] M.C. Perju, C.A. Tugui, C. Nejneru, Key Engineering Materials 660, 143-149 (2015).
- [5] D. Breitburg, L.A. Levin, A. Oschlies, M. Grégoire, F.P. Chavez, D.J. Conley, V. Garçon, D. Gilbert, D. Gutiérrez, K. Isensee, G.S. Jacinto, K.E. Limburg, I. Montes, S.W.A. Naqvi, G.C. Pitcher, N.N. Rabalais, M.R. Roman, K.A. Rose, B.A. Seibel, M. Telszewski, M. Yasuhara, J. Zhang, Science 359 (6371), eaam7240 (2018).
- [6] l. Bergström, M. Karlsson, U. Bergström, L. Pihl, P. Kraufvelin, Ambio 48, 565-579 (2019).
- [7] T.C. Malone, A. Newton, The Globalization of Cultural Eutrophication in the Coastal Ocean: Causes and Consequences, Review Article, Front. Mar. Sci., (2020). DOI: https://doi.org/10.3389/fmars.2020.00670.
- [8] J.S. Gray, R.S. Wu, Y.Y. Or, Marine Ecology Progress Series 238, 249-279 (2002). DOI: https://doi.org/10.3354/meps238249
- [9] J. Carstensen, Front. Mar. Sci. 1, 33 (2014).
- [10] M.D.M. Dryden, A.R. Wheeler, PLoS ONE 10, e0140349 (2015).
- [11] P. Lopin, K.V. Lopin, PLoS ONE 13, e0201353 (2018).
- [12] A. Ainla, M.P.S. Mousavi, M.N. Tsaloglou, J. Redston, J.G. Bell, M.T. Fernández-Abedul, G.M. Whitesides, Anal. Chem. 90, 6240-6246 (2018).
- [13] G.N. Meloni, J. Chem. Educ. 93, 1320-1322 (2016).
- [14] R. Pruna, F. Palacio, A. Baraket, J. Bausells, A. Errachid, M. López, Low-Cost Impedance Measurements for Lab-on-a-Chip Architectures: Towards Potentiostat Miniaturization. In Proceedings of the Multidisciplinary Digital Publishing Institute Proceedings, Paris, France, 3-6 September 2017, P. 604.
- [15] P. Bezuidenhout, S. Smith, T.H. Joubert, Appl. Sci. 8, 968 (2018).
- [16] G. Jasinski, A. Strzelczyk, P. Koscinski, Low Cost Electro-chemical sensor module for measurement of gas concentration. In Proceedings of the IOP Conference Series: Materials Science and Engineering, Bangalore, India, 14-16 July 2016; Vol. 104, p. 012034.
- [17] V.M. Cimpoiasu, R. Popa, I.C. Moga, K.H. Nealson, Buletinul AGIR 4, 90-94 (2020)
Uwagi
1. This work was supported by a grant of the Romanian Ministry of Education and Research, CCDI- UEFISCDI, project number PN-III-P2-2.1-PTE-2019-0198, within PNCDI III.
2. Opracowanie rekordu ze środków MNiSW, umowa nr SONP/SP/546092/2022 w ramach programu "Społeczna odpowiedzialność nauki" - moduł: Popularyzacja nauki i promocja sportu (2024).
Typ dokumentu
Bibliografia
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bwmeta1.element.baztech-db26b2b9-d7b6-4b31-9c2c-939212d1e4a2