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  4. Monitoring multi-year macro ocean litter dynamics and backward-tracking simulation of litter origins on a remote island in the South China Sea
 
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Monitoring multi-year macro ocean litter dynamics and backward-tracking simulation of litter origins on a remote island in the South China Sea

Journal
Environmental Research Letters
Journal Volume
13
Journal Issue
4
Date Issued
2018
Author(s)
CHIA-YING KO  
Hsin, Yi-Chia
Yu, Teng-Lang
Liu, Kuo-Lieh
Shiah, Fuh-Kwo
Jeng, Ming-Shiou
DOI
10.1088/1748-9326/aaaf21
URI
https://scholars.lib.ntu.edu.tw/handle/123456789/454381
https://www2.scopus.com/inward/record.uri?eid=2-s2.0-85047467428&doi=10.1088%2f1748-9326%2faaaf21&partnerID=40&md5=c56ab165021057d7540aea1b20c950ae
Abstract
Ocean litter has accumulated rapidly and is becoming a major environmental concern, yet quantitative and regular observations and exploration that track litter origins are limited. By implementing monthly sample collections over five years (2012-2016) at Dongsha Island, a remote island in the northern South China Sea (SCS), we assessed macro ocean litter dynamics, identified source countries of individual plastic bottles, and analyzed the origins of the litter by a backward-tracking model simulation considering both the effects of current velocity and windage. The results showed that large amounts of litter, which varied monthly and annually in weight and quantity, reached the island during the study years, and there were spatial differences in accumulation patterns between the north and south coasts. Styrofoam and plastic bottles were the two primary sources of macro ocean litter both annually and monthly, and most of the litter collected on the island originated from China and Vietnam, which were collectively responsible for approximately 47.5%-63.7% per month. The simulation indicated that current advection at the near-surface depths and low windage at the sea surface showed similar patterns, while medium to high windage exhibited comparable expression patterns in response to potential source regions and drifting time experiments. At either the surface with low windage or current advection at depths of 0.5 m and 1 m, macro ocean litter in the Western Philippine Sea, i.e. through the Luzon Strait between Taiwan and the Philippines, was an important contributor to the litter bulk from October to March, whereas the litter was predicted to mainly originate from the southwestern SCS from April to September. With an increasing windage effect, litter in the Taiwan Strait was predicted to be an additional major potential source. Surprisingly, a small proportion of the macro ocean litter was predicted to continuously travel in the northern SCS for a long duration (> 2 years) before drifting onto Dongsha Island. The estimated drifting time of macro ocean litter also showed monthly and directional variability. This study demonstrated that a tremendous quantity of macro ocean litter, which may cause great damage to the marine ecosystem, drifts in the ocean surface layer and is finally pushed onto beaches. Therefore, we proposed an action plan for effective ocean litter management development at regional and global spatial scales, which is vital for improving and restoring the health and sustainability of the oceanic environment. © 2018 The Author(s). Published by IOP Publishing Ltd.
Subjects
backward-tracking simulation; Dongsha Island; multi-year observation; Ocean litter; South China Sea
SDGs

[SDGs]SDG14

Other Subjects
Advection; Ecosystems; Plastic bottles; Surface waters; Sustainable development; Backward tracking; Dongsha Island; multi-year observation; Ocean litter; South China sea; Oceanography; action plan; current velocity; ecosystem health; ecosystem management; global perspective; observational method; sea surface; simulation; surface layer; sustainability; China; China; Dongshan Island; Fujian; Luzon Strait; Pacific Ocean; Philippine Sea; South China Sea; Taiwan Strait; Viet Nam
Type
journal article

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