Influence of monsoon seasonality and tidal cycle on microplastics presence and distribution in the Upper Gulf of Thailand.

Sci Total Environ

Research Institute for Applied Mechanics, Kyushu University, Kasuga 816-8580, Japan; Center for Ocean Plastic Studies, Kyushu University, CU Research Building, Bangkok 10330, Thailand.

Published: April 2024

AI Article Synopsis

  • Southeast Asian countries contribute significantly to ocean plastic waste, with a study conducted on Si Chang Island revealing microplastic (MP) pollution levels ranging from 0.02 to 42.46 particles per meter across different seasons.
  • Seasonal factors like precipitation, wind, and currents from monsoons significantly influence the abundance and distribution of MPs, highlighting a notable pattern of environmental impact.
  • The study proposes that UV exposure in dry seasons and heavy rains in wet seasons contribute to the generation and dispersal of MPs, posing a threat to coral reef ecosystems and suggesting that increased monitoring of microplastics is essential in these vulnerable areas.

Article Abstract

Southeast Asian countries are recognized as significant contributors to the discharge of abundant plastic waste into the ocean. In this study, we conducted neuston net surveys on Si Chang Island of the Gulf of Thailand, a coral reef conservation area, to determine the presence of microplastic (MP) pollution. The survey, conducted during the wet (southwesterly monsoon), transition, and dry seasons (northeasterly monsoon), revealed that the MP abundance was in the range of 0.02-42.46 particles m. The precipitation, wind, and current direction induced by monsoons influenced the abundance and distribution of MP, presenting a significant seasonality. The cluster analysis for colors and polymer types of MPs suggested that the origin of plastic particles is diverse. Based on our results, a proposal for the generation, sources, and pathways for MPs in the Gulf of Thailand is presented: 1) plastic wastes exposed to strong UV light during the dry season get fragmented around the river, and 2) heavy rains wash away the particles during the wet season. This proposal is applicable to tropical regions, including the Gulf of Thailand. Therefore, this paper concluded that ocean currents induced by monsoons and the unique climate, resulting in the generation of MPs on land, increase MP presence and distribution in the ocean surrounding Southeast Asia countries. Furthermore, coral reef ecosystems can be particularly threatened by MPs in these areas. So, an increase in MP monitoring on coral ecosystems from Thailand and the world is highly recommended.

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Source
http://dx.doi.org/10.1016/j.scitotenv.2024.170787DOI Listing

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