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Aznar-Alemany, Ò, Aminot, Y, Vilà-Cano, J, Köck-Schulmeyer, M, Readman, JW, Marques, A, Godinho, L, Botteon, E, Ferrari, F, Boti, V, Albanis, T, Eljarrat, E and Barceló, D 2018 Halogenated and organophosphorus flame retardants in European aquaculture samples. Science of The Total Environment, 612. 492-500. https://doi.org/10.1016/j.scitotenv.2017.08.199
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Botterell, ZLR, Bergmann, M, Hildebrandt, N, Krumpen, T, Steinke, M, Thompson, RC and Lindeque, PK 2022 Microplastic ingestion in zooplankton from the Fram Strait in the Arctic. Science of The Total Environment, 831. 154886. https://doi.org/10.1016/j.scitotenv.2022.154886
Clason, CC, Baccolo, G, Łokas, E, Owens, PN, Wachniew, P, Millward, GE, Taylor, A, Blake, WH, Beard, DB, Poniecka, E, Selmes, N, Bagshaw, EA, Cook, J, Fyfe, R, Hay, M, Land, D, Takeuchi, N, Nastasi, M, Sisti, M, Pittino, F, Franzetti, A, Ambrosini, R and Di Mauro, B 2023 Global variability and controls on the accumulation of fallout radionuclides in cryoconite. Science of The Total Environment, 894. 164902. https://doi.org/10.1016/j.scitotenv.2023.164902
Cole, MJ, Gomiero, A, Jaén-Gil, A, Haave, M and Lusher, A 2024 Microplastic and PTFE contamination of food from cookware. Science of The Total Environment, 929. 172577. https://doi.org/10.1016/j.scitotenv.2024.172577
Coppock, RL, Galloway, TS, Cole, MJ, Fileman, ES, Queiros, AM and Lindeque, PK 2019 Microplastics alter feeding selectivity and faecal density in the copepod, Calanus helgolandicus. Science of The Total Environment. https://doi.org/10.1016/j.scitotenv.2019.06.009
Courtene-Jones, W, Maddalene, T, James, MK, Smith, Natalie S., Youngblood, K, Jambeck, JR, Earthrowl, S, Delvalle-Borrero, D, Penn, E and Thompson, RC 2021 Source, sea and sink—A holistic approach to understanding plastic pollution in the Southern Caribbean. Science of The Total Environment, 797. 149098. https://doi.org/10.1016/j.scitotenv.2021.149098
Cramm, Margaret A., Neves, B de Moura, Manning, CCM, Oldenburg, TBP, Archambault, P, Chakraborty, A, Cyr-Parent, A, Edinger, EN, Jaggi, A, Mort, A, Tortell, P and Hubert, CRJ 2020 Characterization of marine microbial communities around an Arctic seabed hydrocarbon seep at Scott Inlet, Baffin Bay. Science of The Total Environment, 762. 143961. https://doi.org/10.1016/j.scitotenv.2020.143961
Das, I, Lauria, V, Kay, S, Cazcarro, I, Arto, I, Fernandes, JA. and Hazra, S 2020 Effects of climate change and management policies on marine fisheries productivity in the north-east coast of India. Science of The Total Environment, 724. 138082. https://doi.org/10.1016/j.scitotenv.2020.138082
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Duarte, C, Quintanilla-Ahumada, D, Anguita, C, Silva-Rodríguez, EA, Manríquez, PH, Widdicombe, S, Pulgar, J, Miranda, C, Jahnsen-Guzmán, N and Quijón, PA 2023 Field experimental evidence of sandy beach community changes in response to artificial light at night (ALAN). Science of The Total Environment, 872. 162086. https://doi.org/10.1016/j.scitotenv.2023.162086
Fuentes-Santos, I, Labarta, U, Fernández-Reiriz, MJ, Kay, S, Hjøllo, SS and Alvarez-Salgado, XA 2021 Modeling the impact of climate change on mussel aquaculture in a coastal upwelling system: A critical assessment. Science of The Total Environment, 775. 145020. https://doi.org/10.1016/j.scitotenv.2021.145020
Hossain, MAR, Ahmed, M, Ojea, E and Fernandes, JA 2018 Impacts and responses to environmental change in coastal livelihoods of south-west Bangladesh. Science of The Total Environment, 637-63. 954-970. https://doi.org/10.1016/j.scitotenv.2018.04.328
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Hossain, MAR, Das, I, Genevier, L, Hazra, S, Rahman, M, Barange, M and Fernandes, JA 2019 Biology and fisheries of Hilsa shad in Bay of Bengal. Science of The Total Environment, 651. 1720-1734. https://doi.org/10.1016/j.scitotenv.2018.10.034
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Kadar, E, Batalha, ÍL, Fisher, A and Roque, ACA 2014 The interaction of polymer-coated magnetic nanoparticles with seawater. Science of The Total Environment, 487. 771-777. https://doi.org/10.1016/j.scitotenv.2013.11.082
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Kadar, E, Cunliffe, M, Fisher, A, Stolpe, B, Lead, J and Shi, Z 2014 Chemical interaction of atmospheric mineral dust-derived nanoparticles with natural seawater — EPS and sunlight-mediated changes. Science of The Total Environment, 468-46. 265-271. https://doi.org/10.1016/j.scitotenv.2013.08.059
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Kadar, E, Fisher, A, Stolpe, B, Calabrese, S, Lead, J, Valsami-Jones, E and Shi, Z 2014 Colloidal stability of nanoparticles derived from simulated cloud-processed mineral dusts. Science of The Total Environment, 466-46. 864-870. https://doi.org/10.1016/j.scitotenv.2013.07.119
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Kebede, AS, Nicholls, RJ, Allan, A, Arto, I, Cazcarro, I, Fernandes, JA, Hill, CT, Hutton, CW, Kay, S, Lázár, AN, Macadam, I, Palmer, M, Suckall, N, Tompkins, EL, Vincent, K and Whitehead, PW 2018 Applying the global RCP–SSP–SPA scenario framework at sub-national scale: A multi-scale and participatory scenario approach. Science of The Total Environment, 635. 659-672. https://doi.org/10.1016/j.scitotenv.2018.03.368
Lauria, V, Das, I, Hazra, S, Cazcarro, I, Arto, I, Kay, S, Ofori-Danson, P, Ahmed, M, Hossain, MAR, Barange, M and Fernandes, JA 2018 Importance of fisheries for food security across three climate change vulnerable deltas. Science of The Total Environment, 640-64. 1566-1577. https://doi.org/10.1016/j.scitotenv.2018.06.011
Luisetti, T, Turner, RK, Jickells, TD, Andrews, J, Elliott, M, Schaafsma, M, Beaumont, NJ, Malcolm, SJ, Burdon, D, Adams, C and Watts, W 2014 Coastal Zone Ecosystem Services: From science to values and decision making; a case study. Science of The Total Environment, 493. 682-693. https://doi.org/10.1016/j.scitotenv.2014.05.099
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Madeira, D, Madeira, C, Calosi, P, Vermandele, F, Carrier-Belleau, C, Barria-Araya, A, Daigle, R, Findlay, HS and Poisot, T 2024 Multilayer biological networks to upscale marine research to global change-smart management and sustainable resource use. Science of The Total Environment, 944. 173837. https://doi.org/10.1016/j.scitotenv.2024.173837
Manríquez, PH, Jara, ME, Diaz, MI, Quijón, PA, Widdicombe, S, Pulgar, J, Manríquez, K, Quintanilla-Ahumada, D and Duarte, C 2019 Artificial light pollution influences behavioral and physiological traits in a keystone predator species, Concholepas concholepas. Science of The Total Environment, 661. 543-552. https://doi.org/10.1016/j.scitotenv.2019.01.157
Omeyer, LCM, Duncan, EM, Aiemsomboon, K, Beaumont, NJ, Bureekul, S, Cao, B, Carrasco, LR, Chavanich, S, Clark, JR, Cordova, MR, Couceiro, F, Cragg, SM, Dickson, N, Failler, P, Ferraro, G, Fletcher, S, Fong, J, Ford, AT, Gutierrez, T, Shahul Hamid, F, Hiddink, JG, Hoa, PT, Holland, SI, Jones, L, Jones, NH, Koldewey, HJ, Lauro, FM, Lee, C, Lewis, M, Marks, D, Matallana-Surget, S, Mayorga-Adame, CG, McGeehan, J, Messer, LF, Michie, L, Miller, MA, Mohamad, ZF, Nor, NHM, Müller, M, Neill, SP, Nelms, SE, Onda, DFL, Ong, JJL, Pariatamby, A, Phang, SC, Quilliam, R, Robins, PE, Salta, M, Sartimbul, A, Shakuto, S, Skov, MW, Taboada, EB., Todd, PA, Toh, TC, Valiyaveettil, S, Viyakarn, V, Wonnapinij, P, Wood, LE, Yong, CLX and Godley, BJ 2022 Priorities to inform research on marine plastic pollution in Southeast Asia. Science of The Total Environment, 841. 156704. https://doi.org/10.1016/j.scitotenv.2022.156704
Powley, HR, Polimene, L, Torres, R, Al Azhar, M, Bell, VA, Cooper, D, Holt, JT, Wakelin, S and Artioli, Y 2023 Modelling terrigenous DOC across the north west European Shelf: Fate of riverine input and impact on air-sea CO2 fluxes. Science of The Total Environment, 912. 168938. https://doi.org/10.1016/j.scitotenv.2023.168938
Queiros, AM, Talbot, E, Msuya, FE, Kuguru, B, Jiddawi, N, Mahongo, S, Shaghude, Y, Muhando, C, Chundu, E, Jacobs, ZL, Sailley, SF, Virtanen, EA, Viitasalo, M, Osuka, KE, Aswani, S, Coupland, J, Wilson, R, Taylor, S, Fernandes-Salvador, JA, van Gennip, Simon, Senkondo, E, Meddard, M and Popova, E 2024 A sustainable blue economy may not be possible in Tanzania without cutting emissions. Science of The Total Environment, 947. 174623. https://doi.org/10.1016/j.scitotenv.2024.174623
Schratzberger, M and Somerfield, PJ 2020 Effects of widespread human disturbances in the marine environment suggest a new agenda for meiofauna research is needed. Science of The Total Environment, 728. 138435. https://doi.org/10.1016/j.scitotenv.2020.138435
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Stevenson, EM, Buckling, A, Cole, MJ, Lindeque, PK and Murray, AK 2023 Selection for antimicrobial resistance in the plastisphere. Science of The Total Environment, 908. 168234. https://doi.org/10.1016/j.scitotenv.2023.168234
Talbot, E, Jontila, J-B S, Gonzales, BJ, Dolorosa, RG, Jose, ED, Sajorne, R, Sailley, SF, Kay, S and Queiros, AM 2024 Incorporating climate-readiness into fisheries management strategies. Science of The Total Environment, 918. 170684. https://doi.org/10.1016/j.scitotenv.2024.170684
Tilstone, GH, Land, PE, Pardo, S, Kerimoglu, O and Van der Zande, D 2022 Threshold indicators of primary production in the north-east Atlantic for assessing environmental disturbances using 21 years of satellite ocean colour. Science of The Total Environment, 854. 158757. https://doi.org/10.1016/j.scitotenv.2022.158757
Watson, SCL, Watson, GJ, Beaumont, NJ and Preston, J 2022 Inclusion of condition in natural capital assessments is critical to the implementation of marine nature-based solutions. Science of The Total Environment, 838. 156026. https://doi.org/10.1016/j.scitotenv.2022.156026