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Marine & Wildlife
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Exploring the origin and fate of surface and sub-surface marine microplastics in the Canary Islands region
Frontiers in Marine Science2024
12 citations
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Citation count from OpenAlex, updated daily. May differ slightly from the publisher's own count.
Score: 50
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0–100 AI score estimating relevance to the microplastics field. Papers below 30 are filtered from public browse.
Cristopher Domínguez-Hernández,
Daura Vega-Moreno,
Cristopher Domínguez-Hernández,
Cristopher Domínguez-Hernández,
Daura Vega-Moreno,
Daura Vega-Moreno,
Daura Vega-Moreno,
Daura Vega-Moreno,
Daura Vega-Moreno,
Daura Vega-Moreno,
Daura Vega-Moreno,
Daura Vega-Moreno,
Cristopher Domínguez-Hernández,
Francisco Machín,
Francisco Machín,
Francisco Machín,
Sergio Sicilia-González,
Sergio Sicilia-González,
Sergio Sicilia-González,
Sergio Sicilia-González,
Sergio Sicilia-González,
Sergio Sicilia-González,
Borja Aguiar‐González,
Borja Aguiar‐González,
Daura Vega-Moreno,
Daura Vega-Moreno,
Daura Vega-Moreno,
Daura Vega-Moreno,
Cristopher Domínguez-Hernández,
Daura Vega-Moreno,
Francisco Machín,
Daura Vega-Moreno,
Javier Hernández‐Borges
Cristopher Domínguez-Hernández,
Javier Hernández‐Borges
Javier Hernández‐Borges
Javier Hernández‐Borges
Javier Hernández‐Borges
Cristopher Domínguez-Hernández,
Cristopher Domínguez-Hernández,
Javier Hernández‐Borges
Borja Aguiar‐González,
Daura Vega-Moreno,
Javier Hernández‐Borges
Javier Hernández‐Borges
Javier Hernández‐Borges
Cristopher Domínguez-Hernández,
Javier Hernández‐Borges
Cristopher Domínguez-Hernández,
Javier Hernández‐Borges
Javier Hernández‐Borges
Javier Hernández‐Borges
Javier Hernández‐Borges
Javier Hernández‐Borges
Javier Hernández‐Borges
Francisco Machín,
Francisco Machín,
E. Fraile‐Nuez,
E. Fraile‐Nuez,
E. Fraile‐Nuez,
E. Fraile‐Nuez,
Daura Vega-Moreno,
Daura Vega-Moreno,
Daura Vega-Moreno,
Daura Vega-Moreno,
Daura Vega-Moreno,
Daura Vega-Moreno,
Enedina Moreira-García,
Enedina Moreira-García,
Enedina Moreira-García,
Enedina Moreira-García,
Francisco Machín,
Daura Vega-Moreno,
Francisco Machín,
Javier Hernández‐Borges
Javier Hernández‐Borges
Borja Aguiar‐González,
E. Fraile‐Nuez,
Javier Hernández‐Borges
Javier Hernández‐Borges
Francisco Machín,
Javier Hernández‐Borges
Javier Hernández‐Borges
Javier Hernández‐Borges
Enedina Moreira-García,
Daura Vega-Moreno,
Javier Hernández‐Borges
Daura Vega-Moreno,
Javier Hernández‐Borges
Daura Vega-Moreno,
Enedina Moreira-García,
Daura Vega-Moreno,
Javier Hernández‐Borges
Javier Hernández‐Borges
Javier Hernández‐Borges
Javier Hernández‐Borges
Francisco Machín,
Francisco Machín,
Borja Aguiar‐González,
Javier Hernández‐Borges
Javier Hernández‐Borges
Javier Hernández‐Borges
Javier Hernández‐Borges
Javier Hernández‐Borges
Javier Hernández‐Borges
Javier Hernández‐Borges
Javier Hernández‐Borges
Daura Vega-Moreno,
Javier Hernández‐Borges
Javier Hernández‐Borges
Javier Hernández‐Borges
Javier Hernández‐Borges
Daura Vega-Moreno,
Daura Vega-Moreno,
Francisco Machín,
Cristopher Domínguez-Hernández,
Daura Vega-Moreno,
E. Fraile‐Nuez,
Javier Hernández‐Borges
Javier Hernández‐Borges
Javier Hernández‐Borges
Francisco Machín,
Javier Hernández‐Borges
E. Fraile‐Nuez,
E. Fraile‐Nuez,
E. Fraile‐Nuez,
Javier Hernández‐Borges
Javier Hernández‐Borges
E. Fraile‐Nuez,
Francisco Machín,
Javier Hernández‐Borges
Javier Hernández‐Borges
Javier Hernández‐Borges
Javier Hernández‐Borges
Francisco Machín,
Borja Aguiar‐González,
Daura Vega-Moreno,
E. Fraile‐Nuez,
Francisco Machín,
Francisco Machín,
Francisco Machín,
Javier Hernández‐Borges
Javier Hernández‐Borges
Javier Hernández‐Borges
Javier Hernández‐Borges
Javier Hernández‐Borges
Summary
Researchers investigated the origin, transport, and fate of microplastics at various ocean depths around the Canary Islands in the Atlantic Ocean. The study found high concentrations of microplastics at known hotspot beaches and provided new insights into how large-scale and mesoscale ocean dynamics influence the distribution of plastic particles in both surface and sub-surface waters.
Study Type
Environmental
The presence of different types of microplastics (MPs) in the Atlantic Ocean has been well-documented, with data collected from the Canary Islands indicating high concentrations of MPs at four different beaches ( hot spots ). However, critical gaps persist regarding the abundance of MPs in diverse open ocean regions, at varying depths, and their transport behavior and origin. This study aims to evaluate, for the first time, the large-scale (>100 km) and mesoscale (10-100 km) ocean dynamic processes and the resulting transport of MPs in the region. On the one hand, this study investigates the surface velocity of currents between 27-32°N latitude range, establishing correlation with the accumulation of MPs on diverse beaches across several islands of the archipelago. This analysis goes beyond studying the predominant current by integrating data at a smaller geographical scale over a two-year period. Concurrently, previous and ongoing research suggests the presence of small MPs (SMPs,<1 mm) at high concentration at a depth of 1100 meters in this region. By integrating these vertical profiles of MPs with a deep understanding of the physical processes of the Canary region accumulated over decades of research, our study introduces an innovative model that outlines how SMPs are sink and transported in open oceans by water mases. This comprehensive approach not only enhances our understanding of the complex dynamics influencing the distribution of MPs but also provides crucial insights to address the widespread problem of MP pollution in the Atlantic.