_version_ 1867170097216356352
author Galgani, Luisa
Tsapakis, Manolis
Pitta, Paraskevi
Tsiola, Anastasia
Tzempelikou, Eleni
Kalantzi, Ionna
Esposito, Chiara
Loiselle, Arturo
Tsotskou, Anastasia
Zivanovic, Snezana
Dafnomili, Eleni
Diliberto, Santi
Mylona, Kyriaki
Magiopoulos, Iordanis
Zeri, Christina
Pitta, Elli
Loiselle, Steven Arthur
author_facet Galgani, Luisa
Tsapakis, Manolis
Pitta, Paraskevi
Tsiola, Anastasia
Tzempelikou, Eleni
Kalantzi, Ionna
Esposito, Chiara
Loiselle, Arturo
Tsotskou, Anastasia
Zivanovic, Snezana
Dafnomili, Eleni
Diliberto, Santi
Mylona, Kyriaki
Magiopoulos, Iordanis
Zeri, Christina
Pitta, Elli
Loiselle, Steven Arthur
collection Datos científicos de ciencias marinas y ambientales
contents This dataset supports the recent publication "Microplastics increase the marine production of particulate forms of organic matter" by L. Galgani et al (2019) in ERL. It comprises all data presented in the manuscript and Supplementary Information. In the file, Control = mesocosm without plastic addition (1,2,3) and MP = mesocosm with plastic addition (1,2,3). The data proceed from the MESO-Plastic experiment in 2017 conducted at the Hellenic Center for Marine Research, a member of the European Aquacosm network of mesocosm facilities.
format Dataset Open Access
id pangaea_https___doi_org_10_1594_PANGAEA_910742
institution PANGAEA
language en
publishDate 2020
publisher PANGAEA
record_format pangaea
spellingShingle Increase in marine POM related to the presence of microplastic beads in a mesocosm experiment
Galgani, Luisa
Tsapakis, Manolis
Pitta, Paraskevi
Tsiola, Anastasia
Tzempelikou, Eleni
Kalantzi, Ionna
Esposito, Chiara
Loiselle, Arturo
Tsotskou, Anastasia
Zivanovic, Snezana
Dafnomili, Eleni
Diliberto, Santi
Mylona, Kyriaki
Magiopoulos, Iordanis
Zeri, Christina
Pitta, Elli
Loiselle, Steven Arthur
Ammonium; Bacteria, heterotrophic; Calculated; Carbon, organic, dissolved; Carbon, organic, particulate; Chlorophyll a; Coomassie stainable particles; Coomassie stainable particles, equivalent spherical diameter; DATE/TIME; Day of experiment; Eukaryotes; Nitrogen, inorganic, dissolved; Nitrogen, organic, particulate; Particle concentration; Phaeopigments; Phosphate; Ratio; Synechococcus spp.; Transparent exopolymer particles; Transparent exopolymer particles, equivalent spherical diameter; Treatment
This dataset supports the recent publication "Microplastics increase the marine production of particulate forms of organic matter" by L. Galgani et al (2019) in ERL. It comprises all data presented in the manuscript and Supplementary Information. In the file, Control = mesocosm without plastic addition (1,2,3) and MP = mesocosm with plastic addition (1,2,3). The data proceed from the MESO-Plastic experiment in 2017 conducted at the Hellenic Center for Marine Research, a member of the European Aquacosm network of mesocosm facilities.
title Increase in marine POM related to the presence of microplastic beads in a mesocosm experiment
topic Ammonium; Bacteria, heterotrophic; Calculated; Carbon, organic, dissolved; Carbon, organic, particulate; Chlorophyll a; Coomassie stainable particles; Coomassie stainable particles, equivalent spherical diameter; DATE/TIME; Day of experiment; Eukaryotes; Nitrogen, inorganic, dissolved; Nitrogen, organic, particulate; Particle concentration; Phaeopigments; Phosphate; Ratio; Synechococcus spp.; Transparent exopolymer particles; Transparent exopolymer particles, equivalent spherical diameter; Treatment
url https://doi.org/10.1594/PANGAEA.910742