Publications

(2023). The Modern Ocean Sediment Archive and Inventory of Carbon (MOSAIC): version 2.0. Earth System Science Data.

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(2023). Sources and fate of sedimentary organic matter in the Western Mediterranean Sea. Global Biogeochemical Cycles.

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(2023). Assessing the impact of the global subsea telecommunications network on sedimentary organic carbon stocks. Nature Communications.

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(2022). Influence of natural processes and bottom trawling in the nepheloid layer structure off Vancouver Island (British Columbia, Canada, NE Pacific). Frontiers in Marine Science.

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(2022). Effects of bottom trawling on trace metal contamination of sediments along the submarine canyons of the Gulf of Palermo (southwestern Mediterranean). Science of The Total Environment.

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(2022). Contrasting particle fluxes and composition in a submarine canyon affected by natural sediment transport events and bottom trawling. Frontiers in Marine Science.

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(2021). Persistence of Biogeochemical Alterations of Deep-Sea Sediments by Bottom Trawling. Geophysical Research Letters.

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(2021). Natural vs. trawling-induced water turbidity and suspended sediment transport variability within the Palamós Canyon (NW Mediterranean). Marine Geophysical Research.

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(2021). Evidence of large increases in sedimentation rates due to fish trawling in submarine canyons of the Gulf of Palermo (SW Mediterranean). Marine pollution bulletin.

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(2019). Organic matter contents and degradation in a highly trawled area during fresh particle inputs (Gulf of Castellammare, southwestern Mediterranean). Biogeosciences.

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(2018). Spatial distribution of sedimentation-rate increases in Blanes Canyon caused by technification of bottom trawling fleet. Progress in Oceanography.

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(2018). Enhancement of sedimentation rates in the Foix Canyon after the renewal of trawling fleets in the early XXIst century. Deep Sea Research Part I: Oceanographic Research Papers.

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(2017). Bottom-trawling along submarine canyons impacts deep sedimentary regimes. Scientific reports.

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(2016). Continuous process for selective metal extraction with an ionic liquid. Chemical Engineering Research and Design.

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(2015). Changes in sediment accumulation rates within NW Mediterranean submarine canyons caused by bottom trawling activities. Commission Internationale pour l’Exploration Scientifique de la mer Méditerranée.

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