Impact of mangrove forest structure and landscape on macroplastics capture

Open

Paolo Cappa, Mark E.M. Walton, Maria Kristina O. Paler, Evelyn B. Taboada, Jan G. Hiddink, Martin W. Skov

2023 Marine Pollution Bulletin Vol. 194 Article Cited by 27 Quartile

Abstract

Complex networks of above-ground roots and trunks make mangrove forests trap plastic litter. We tested how macroplastics relate to tree biomass, root abundance, mangrove geomorphology and river mouth proximity, surveying landward and seaward margins of seven forests in the Philippines, a global hotspot for marine plastic pollution. Macroplastics were abundant (mean ± s.e.: 1.1 ± 0.22 items m−2; range: 0.05 ± 0.05 to 3.79 ± 1.91), greatest at the landward zone (mean ± s.e.: 1.60 ± 0.41 m−2) and dominated by land-derived items (sachets, bags). Plastic abundance and weight increased with proximity to river mouths, with root abundance predicting plastic litter surface area (i.e., the cumulative sum of all the surface areas of each plastic element per plot). The study confirms rivers are a major pathway for marine plastic pollution, with mangrove roots are the biological attribute that regulate litter retention. The results suggest land-based waste management that prevent plastics entering rivers will reduce marine plastic pollution in Southeast Asia. © 2023 The Authors

Affiliations

School of Ocean Sciences, Bangor University, Isle of Anglesey, LL595AB, United Kingdom; Department of Biology, University of San Carlos, Talamban, Cebu City, 6000, Philippines; School of Engineering, University of San Carlos, Talamban, Cebu City, 6000, Philippines