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Massive Influx of Pelagic Sargassum spp. on the Coasts of the Mexican Caribbean 2014–2020: Challenges and Opportunities

Water · 2020 · Vol. 12(10) · pp. 2908–2908
Valeria ChávezAbigail Uribe-MartínezEduardo CuevasRosa E. Rodríguez-MartínezBrigitta I. van TussenbroekVanessa FranciscoMiriam EstévezLourdes B. CelisL. Verónica Monroy-VelázquezRosa María Leal‐BautistaLorenzo Álvarez‐FilipMarta García-SánchezLuis MasiaRodolfo Silva

Abstract

Since late 2014, the Mexican Caribbean coast has periodically received massive, atypical influxes of pelagic Sargassum spp. (sargasso). Negative impacts associated with these influxes include mortality of nearshore benthic flora and fauna, beach erosion, pollution, decreasing tourism and high management costs. To understand the dynamics of the sargasso influx, we used Landsat 8 imagery (from 2016 to mid-2020) to record the coverage of sargasso in the sea off the Mexican Caribbean coastline, with a maximum reported in September 2018. Satellite image analysis also showed local differences in the quantity of beached sargasso along the coastline. Over the years, good practice for collection on the beach and for off-shore collection of sargasso have been established through trial and error, and the Mexican Government and hotel industry have spent millions of dollars on removal and off-shore detention of sargasso. Notwithstanding, sargasso also has various properties that could be harnessed in local industries. The stimulation of local industrial growth would offer alternatives to the dependence on tourism, as a circular economy, based on sargasso, is developed.

Marine and coastal plant biologyCoastal and Marine ManagementMarine Bivalve and Aquaculture StudiesPelagic zoneSargasso seaOceanographyBenthic zoneSargassumGeographyTourismShoreFisheryEnvironmental science

Funding

  • Deutscher Akademischer Austauschdienst
  • Consejo Nacional de Ciencia y Tecnología
  • Universidad Autónoma del Carmen
  • German Academic Exchange Service London
  • Dirección General de Asuntos del Personal Académico, Universidad Nacional Autónoma de México
Citations
247
FWCI
28.15
field-weighted impact
References
89
Percentile
100%
vs. same field & year
Citations per year
References
Effects of hypoxia and organic enrichment on the coastal marine environment
Marine Ecology Progress Series · 2002 · 987 citations
Potential use of algae for heavy metal bioremediation, a critical review
Journal of Environmental Management · 2016 · 580 citations
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