Register      Login
Environmental Chemistry Environmental Chemistry Society
Environmental problems - Chemical approaches

Articles citing this paper

Organic complexation of copper in deep-sea hydrothermal vent systems

Sylvia G. Sander A D , Andrea Koschinsky B , Gary Massoth C , Matthew Stott C and Keith A. Hunter A
+ Author Affiliations
- Author Affiliations

A Marine and Freshwater Chemistry, Department of Chemistry, University of Otago, PO Box 56, Dunedin, New Zealand.

B Geosciences and Astrophysics, School of Engineering and Science, Jacobs University Bremen, Campus Ring 8, Bremen D-28759, Germany.

C GNS Sciences, Wairakei Research Center, 114 Karetoto Road, Wairakei, New Zealand.

D Corresponding author. Email: sylvias@chemistry.otago.ac.nz

Environmental Chemistry 4(2) 81-89 https://doi.org/10.1071/EN06086
Submitted: 28 December 2006  Accepted: 22 March 2007   Published: 17 April 2007



57 articles found in Crossref database.

Concentrations and distributions of dissolved amino acids in fluids from Mid-Atlantic Ridge hydrothermal vents
KLEVENZ VERENA, SUMOONDUR ARYANI, OSTERTAG-HENNING CHRISTIAN, KOSCHINSKY ANDREA
GEOCHEMICAL JOURNAL. 2010 44(5). p.387
On the nature of dissolved copper ligands in the early buoyant plume of hydrothermal vents
Cotte Laura, Omanović Dario, Waeles Matthieu, Laës Agathe, Cathalot Cécile, Sarradin Pierre-Marie, Riso Ricardo D.
Environmental Chemistry. 2018 15(2). p.58
Critical review perspective: elemental speciation analysis methods in environmental chemistry - moving towards methodological integration
Feldmann Jörg, Salaün Pascal, Lombi Enzo
Environmental Chemistry. 2009 6(4). p.275
Distribution and stability of Mn complexes in the ocean: Influence of hydrothermal plumes and weather events
Thibault de Chanvalon Aubin, Luther George W., Oldham Véronique E., Tebo Bradley M., Coffey Nicole R., Shaw Timothy F.
Limnology and Oceanography. 2023 68(2). p.455
A comparison of in situ vs. ex situ filtration methods on the assessment of dissolved and particulate metals at hydrothermal vents
Cotte Laura, Waeles Matthieu, Pernet-Coudrier Benoît, Sarradin Pierre-Marie, Cathalot Cécile, Riso Ricardo D.
Deep Sea Research Part I: Oceanographic Research Papers. 2015 105 p.186
Distribution and speciation of copper and its relationship with FDOM in the East China Sea
Wong Kuo Hong, Obata Hajime, Kim Taejin, Wakuta Yohei, Takeda Shigenobu
Marine Chemistry. 2019 212 p.96
Trace Metal Biogeochemistry and Ecology of Deep-Sea Hydrothermal Vent Systems (2016)
Demina Liudmila L.
Natural organic matter controls metal speciation and toxicity for marine organisms: a review
Pontoni Ludovico, La Vecchia Claudia, Boguta Patrycja, Sirakov Maria, D’Aniello Enrico, Fabbricino Massimiliano, Locascio Annamaria
Environmental Chemistry Letters. 2022 20(1). p.797
A First Analysis of Metallome Biosignatures of Hyperthermophilic Archaea
Cameron Vyllinniskii, House Christopher H., Brantley Susan L.
Archaea. 2012 2012 p.1
Trace Metal Biogeochemistry and Ecology of Deep-Sea Hydrothermal Vent Systems (2016)
Sander S. G., Koschinsky A.
Sources, sinks, and cycling of dissolved organic copper binding ligands in the ocean
Ruacho Angel, Richon Camille, Whitby Hannah, Bundy Randelle M.
Communications Earth & Environment. 2022 3(1).
Treatise on Geochemistry (2014)
Bruland K.W., Middag R., Lohan M.C.
The complex provenance of Cu-binding ligands in the South-East Atlantic
Zitoun R., Achterberg E.P., Browning T.J., Hoffmann L.J., Krisch S., Sander S.G., Koschinsky A.
Marine Chemistry. 2021 237 p.104047
Mineral–microbe interactions in deep-sea hydrothermal systems: a challenge for Raman spectroscopy
Breier J. A., White S. N., German C. R.
Philosophical Transactions of the Royal Society A: Mathematical, Physical and Engineering Sciences. 2010 368(1922). p.3067
Chemical Speciation of Copper in a Salt Marsh Estuary and Bioavailability to Thaumarchaeota
Whitby Hannah, Hollibaugh James T., van den Berg Constant M. G.
Frontiers in Marine Science. 2017 4
Copper-binding ligands in the NE Pacific
Whitby Hannah, Posacka Anna M., Maldonado Maria T., van den Berg Constant M.G.
Marine Chemistry. 2018 204 p.36
Numerical Approach to Speciation and Estimation of Parameters Used in Modeling Trace Metal Bioavailability
Sander Sylvia G., Hunter Keith A., Harms Hauke, Wells Mona
Environmental Science & Technology. 2011 45(15). p.6388
Size fractionation of trace metals in the Edmond hydrothermal plume, Central Indian Ocean
Sands C.M., Connelly D.P., Statham P.J., German C.R.
Earth and Planetary Science Letters. 2012 319-320 p.15
Rare earth elements (REEs) in the tropical South Atlantic and quantitative deconvolution of their non-conservative behavior
Zheng Xin-Yuan, Plancherel Yves, Saito Mak A., Scott Peter M., Henderson Gideon M.
Geochimica et Cosmochimica Acta. 2016 177 p.217
Dissolved and particulate metals (Fe, Zn, Cu, Cd, Pb) in two habitats from an active hydrothermal field on the EPR at 13°N
Sarradin Pierre-Marie, Lannuzel Delphine, Waeles Matthieu, Crassous Philippe, Le Bris Nadine, Caprais Jean Claude, Fouquet Yves, Fabri Marie Claire, Riso Ricardo
Science of The Total Environment. 2008 392(1). p.119
Marine Analytical Chemistry (2023)
Middag Rob, Zitoun Rebecca, Conway Tim
Iron isotope fractionation in a buoyant hydrothermal plume, 5°S Mid-Atlantic Ridge
Bennett Sarah A., Rouxel Olivier, Schmidt Katja, Garbe-Schönberg Dieter, Statham Peter J., German Christopher R.
Geochimica et Cosmochimica Acta. 2009 73(19). p.5619
The distribution and stabilisation of dissolved Fe in deep-sea hydrothermal plumes
Bennett Sarah A., Achterberg Eric P., Connelly Douglas P., Statham Peter J., Fones Gary R., German Christopher R.
Earth and Planetary Science Letters. 2008 270(3-4). p.157
Amelioration of free copper by hydrothermal vent microbes as a response to high copper concentrations
Klevenz Verena, Sander Sylvia G., Perner Mirjam, Koschinsky Andrea
Chemistry and Ecology. 2012 28(5). p.405
Transport of carbon dioxide and heavy metals from hydrothermal vents to shallow water by hydrate-coated gas bubbles
Stensland Anne, Baumberger Tamara, Lilley Marvin D., Okland Ingeborg E., Dundas Siv H., Roerdink Desiree L., Thorseth Ingunn H., Pedersen Rolf B.
Chemical Geology. 2019 513 p.120
Some Biogeochemical Characteristics of the Trace Element Bioaccumulation in the Benthic Fauna of the Piip Volcano (The Southwestern Bering Sea)
Demina Liudmila L., Galkin Sergey V., Krylova Elena M., Budko Dmitry F., Solomatina Aleksandra S.
Minerals. 2021 11(11). p.1233
Concentrations and distributions of amino acids in black and white smoker fluids at temperatures over 200 °C
Fuchida Shigeshi, Mizuno Yuki, Masuda Harue, Toki Tomohiro, Makita Hiroko
Organic Geochemistry. 2014 66 p.98
A multi-modal approach to measuring particulate iron speciation in buoyant hydrothermal plumes
Stewart Brandy D., Sorensen Jeffry V., Wendt Kathleen, Sylvan Jason B., German Christopher R., Anantharaman Karthik, Dick Gregory J., Breier John A., Toner Brandy M.
Chemical Geology. 2021 560 p.120018
Exploring the ocean for hydrothermal venting: New techniques, new discoveries, new insights
Baker Edward T.
Ore Geology Reviews. 2017 86 p.55
Copper-binding ligands in deep-sea pore waters of the Pacific Ocean and potential impacts of polymetallic nodule mining on the copper cycle
Paul Sophie A. L., Zitoun Rebecca, Noowong Ann, Manirajah Mythili, Koschinsky Andrea
Scientific Reports. 2021 11(1).
Organic complexation of copper in estuarine waters: An assessment of the multi-detection window approach
Wong Kuo Hong, Obata Hajime, Kim Taejin, Mashio Asami Suzuki, Fukuda Hideki, Ogawa Hiroshi
Marine Chemistry. 2018 204 p.144
Speciation of dissolved copper within an active hydrothermal edifice on the Lucky Strike vent field (MAR, 37°N)
Sarradin Pierre-Marie, Waeles Matthieu, Bernagout Solène, Le Gall Christian, Sarrazin Jozée, Riso Ricardo
Science of The Total Environment. 2009 407(2). p.869
Sulfur, sulfides, oxides and organic matter aggregated in submarine hydrothermal plumes at 9°50′N East Pacific Rise
Breier J.A., Toner B.M., Fakra S.C., Marcus M.A., White S.N., Thurnherr A.M., German C.R.
Geochimica et Cosmochimica Acta. 2012 88 p.216
Trace Metal Biogeochemistry and Ecology of Deep-Sea Hydrothermal Vent Systems (2016)
Demina Liudmila L., Galkin Sergey V.
Mineralizations and transition metal mobility driven by organic carbon during low-temperature serpentinization
Ménez Bénédicte, Pasini Valerio, Guyot François, Benzerara Karim, Bernard Sylvain, Brunelli Daniele
Lithos. 2018 323 p.262
Dissolved copper speciation in the Tasman Sea, SW Pacific Ocean
Thompson C.M., Ellwood M.J., Sander S.G.
Marine Chemistry. 2014 164 p.84
Aqueous copper bioavailability linked to shipwreck-contaminated reef sediments
Hartland Adam, Zitoun Rebecca, Middag Rob, Sander Sylvia, Laferriere Alix, Saeed Huma, De Luca Sharon, Ross Philip M.
Scientific Reports. 2019 9(1).
Trace element behaviour at cold seeps and the potential export of dissolved iron to the ocean
Lemaitre Nolwenn, Bayon Germain, Ondréas Hélène, Caprais Jean-Claude, Freslon Nicolas, Bollinger Claire, Rouget Marie-Laure, de Prunelé Alexis, Ruffine Livio, Olu-Le Roy Karine, Sarthou Géraldine
Earth and Planetary Science Letters. 2014 404 p.376
How many vent fields? New estimates of vent field populations on ocean ridges from precise mapping of hydrothermal discharge locations
Baker Edward T., Resing Joseph A., Haymon Rachel M., Tunnicliffe Verena, Lavelle J. William, Martinez Fernando, Ferrini Vicki, Walker Sharon L., Nakamura Koichi
Earth and Planetary Science Letters. 2016 449 p.186
Metal flux from hydrothermal vents increased by organic complexation
Sander Sylvia G., Koschinsky Andrea
Nature Geoscience. 2011 4(3). p.145
Physical controls on mixing and transport within rising submarine hydrothermal plumes: A numerical simulation study
Jiang Houshuo, Breier John A.
Deep Sea Research Part I: Oceanographic Research Papers. 2014 92 p.41
Organic dissolved copper speciation across the U.S. GEOTRACES equatorial Pacific zonal transect GP16
Ruacho Angel, Bundy Randelle M., Till Claire P., Roshan Saeed, Wu Jingfeng, Barbeau Katherine A.
Marine Chemistry. 2020 225 p.103841
Wide-range detection of Cu-binding organic ligands in seawater using reverse titration
Wiwit , Wong Kuo Hong, Fukuda Hideki, Ogawa Hiroshi, Mashio Asami S., Kondo Yoshiko, Nishioka Jun, Obata Hajime
Marine Chemistry. 2021 230 p.103927
Organic complexation of copper in Japanese estuarine waters using reverse titration method
Wiwit , Wong Kuo Hong, Fukuda Hideki, Ogawa Hiroshi, Mashio Asami S., Obata Hajime
Journal of Oceanography. 2023 79(4). p.335
Practical Guidelines for the Analysis of Seawater (2009)
Hunter Keith, Frew Russell, Sander Sylvia
Near-field iron and carbon chemistry of non-buoyant hydrothermal plume particles, Southern East Pacific Rise 15°S
Hoffman Colleen L., Nicholas Sarah L., Ohnemus Daniel C., Fitzsimmons Jessica N., Sherrell Robert M., German Christopher R., Heller Maija I., Lee Jong-mi, Lam Phoebe J., Toner Brandy M.
Marine Chemistry. 2018 201 p.183
Preservation of iron(II) by carbon-rich matrices in a hydrothermal plume
Toner Brandy M., Fakra Sirine C., Manganini Steven J., Santelli Cara M., Marcus Matthew A., Moffett James W., Rouxel Olivier, German Christopher R., Edwards Katrina J.
Nature Geoscience. 2009 2(3). p.197
Copper distribution and speciation across the International GEOTRACES Section GA03
Jacquot Jeremy E., Moffett James W.
Deep Sea Research Part II: Topical Studies in Oceanography. 2015 116 p.187
Sulfide Oxidation across Diffuse Flow Zones of Hydrothermal Vents
Gartman Amy, Yücel Mustafa, Madison Andrew S., Chu David W., Ma Shufen, Janzen Christopher P., Becker Erin L., Beinart Roxanne A., Girguis Peter R., Luther George W.
Aquatic Geochemistry. 2011 17(4-5). p.583
Organic Cu-complexation at the shallow marine hydrothermal vent fields off the coast of Milos (Greece), Dominica (Lesser Antilles) and the Bay of Plenty (New Zealand)
Kleint Charlotte, Kuzmanovski Stefan, Powell Zach, Bühring Solveig I., Sander Sylvia G., Koschinsky Andrea
Marine Chemistry. 2015 173 p.244
A unique temperate rocky coastal hydrothermal vent system (Whakaari–White Island, Bay of Plenty, New Zealand): constraints for ocean acidification studies
Zitoun R., Connell S. D., Cornwall C. E., Currie K. I., Fabricius K., Hoffmann L. J., Lamare M. D., Murdoch J., Noonan S., Sander S. G., Sewell M. A., Shears N. T., van den Berg C. M. G., Smith A. M.
Marine and Freshwater Research. 2020 71(3). p.321
The origin of methanethiol in midocean ridge hydrothermal fluids
Reeves Eoghan P., McDermott Jill M., Seewald Jeffrey S.
Proceedings of the National Academy of Sciences. 2014 111(15). p.5474
Investigating the fate of copper in a laboratory‐based toxicity test with embryos of Mytilus galloprovincialis: Copper mass balance of a closed bioassay
Zitoun Rebecca, Hassler Christel, Clearwater Susan J., Thompson Karen J., Albert Anathea, Sander Sylvia G.
Environmental Toxicology and Chemistry. 2019 38(3). p.561
Metal partitioning after in situ filtration at deep-sea vents of the Lucky Strike hydrothermal field (EMSO-Azores, Mid-Atlantic Ridge, 37°N)
Cotte L., Chavagnac V., Pelleter E., Laës-Huon A., Cathalot C., Dulaquais G., Riso R.D., Sarradin P.-M., Waeles M.
Deep Sea Research Part I: Oceanographic Research Papers. 2020 157 p.103204
Fate of copper complexes in hydrothermally altered deep-sea sediments from the Central Indian Ocean Basin
Chakraborty Parthasarathi, Sander Sylvia G., Jayachandran Saranya, Nath B. Nagender, Nagaraju G., Chennuri Kartheek, Vudamala Krushna, Lathika N., Mascarenhas-Pereira Maria Brenda L.
Environmental Pollution. 2014 194 p.138
Distributions of humic substances in an estuarine region (Otsuchi Bay, Japan) determined using electrochemical and optical methods
Lee Ying Ping, Wong Kuo Hong, Obata Hajime, Nishitani Keisuke, Ogawa Hiroshi, Fukuda Hideki, Lu Chia-Jung
Marine Chemistry. 2023 256 p.104301
Impact of hydrothermalism on the ocean iron cycle
Tagliabue Alessandro, Resing Joseph
Philosophical Transactions of the Royal Society A: Mathematical, Physical and Engineering Sciences. 2016 374(2081). p.20150291

Committee on Publication Ethics


Abstract Export Citation Get Permission