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首页> 外文期刊>Science of the total environment >Microplastics in seawater and zooplankton: A case study from Terengganu estuary and offshore waters, Malaysia
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Microplastics in seawater and zooplankton: A case study from Terengganu estuary and offshore waters, Malaysia

机译:海水和浮游生物的微塑料:马来西亚滕本鲁河口和离岸水域的案例研究

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摘要

Widespread accumulation and distribution of microplastics at the sea surface raise concerns as the habitat is a feeding ground for zooplankton. As primary consumers, these organisms are closely connected to microplastic input in the marine food chain. Little comparative information currently exists about this problem in estuary and offshore systems. This study investigates microplastic distribution in the surface water and the potential in-gestion of microplastics in selected taxonomic groups of zooplankton from the Terengganu Estuary to offshore waters, Malaysia. In the surface water, three types of microplastics were found (fibres, fragments and pellets). Fibres made up the highest percentage, comprising 80.8% and 73.8% of microplastics in offshore waters and estuaries, respectively. The highest total density of microplastics was found in the Terengganu Estuary (545.8 particles m~(-3)). Microplastics sampled from the offshore waters were identified as polyamide, polyethylene, and polypropylene, which possibly originated from secondary microplastic sources. Two types of microplastics were detected in zooplankton: fibres and fragments. Fibres were the most commonly ingested microplastic type in zooplankton collected from offshore waters (94%) and estuaries (77.7%). The average sizes of ingested fibres and fragments were 361.7 ± 226.8 μm and 96.8 ±28.1 μm, respectively, with a wider range of sizes ingested observed in offshore waters than in estuaries. The concentration of microplastics in seven zooplankton groups varied from 0.01 ± 0.002 particles ind.~(-1) (Harpacticoida) to 0.2 ± 0.14 particles ind.~(-1) (Aphragmophora). Notwithstanding the conformity of our results (increased anthropogenic activities led to greater plastic pollution within the estuary), no significant correlation was observed between the levels of microplastic ingestion and microplastic concentration in the surface water within both areas. Our results provide an important baseline reference on microplastic pollution from estuary to offshore waters, as well as proving that zooplankton act as a repository for microplastic in the marine ecosystem.
机译:海面上普遍存在和分布微薄的微薄,因为栖息地是浮游动物的饲料地面。作为主要消费者,这些生物与海洋食物链中的微塑料输入密切相关。目前存在浅谈河口和海上系统的问题。本研究研究了地表水中的微塑性分布以及Zooplankton的Zooplankton中的微塑料潜在的痛苦,马来西亚近海水域。在地表水中,发现了三种类型的微塑料(纤维,碎片和颗粒)。纤维分别占近海水域和河口的最高百分比,含有80.8%和73.8%的微型塑料。在Terengghanu河口(545.8颗粒M〜(-3))中发现了最高的微塑料密度。从海上水取样的微塑料被鉴定为聚酰胺,聚乙烯和聚丙烯,其可能源于二级微塑料来源。在浮游动物中检测到两种类型的微塑料:纤维和碎片。纤维是从海上水(94%)和河口(77.7%)收集的浮游动物中最常用的微塑性型。摄入纤维和片段的平均尺寸分​​别为361.7±226.8μm和96.8±28.1μm,在海上水域中观察到比河口的更广泛的尺寸。七个浮游植物组中微型塑料的浓度从0.01±0.002颗粒Inc。〜(-1)(Harpactica)至0.2±0.14颗粒Ind。〜( - 1)(Aphragmophora)。尽管我们的结果符合(增加的人为活动导致河口内的塑料污染增加),但在两个区域内表面水中的微塑性摄入和微塑性浓度的水平之间没有显着相关。我们的结果为河口到近海水域的微塑性污染提供了重要的基线参考,并证明Zooplankton作为海洋生态系统中的微塑料库的储存库。

著录项

  • 来源
    《Science of the total environment》 |2021年第10期|147466.1-147466.12|共12页
  • 作者单位

    Faculty of Science & Marine Environment Universiti Malaysia Terengganu 21030 Kuala Nerus Terengganu Malaysia;

    Faculty of Science & Marine Environment Universiti Malaysia Terengganu 21030 Kuala Nerus Terengganu Malaysia Ocean Pollution & Ecotoxicology Research Universiti Malaysia Terengganu 21030 Kuala Nerus Terengganu Malaysia;

    Faculty of Science & Marine Environment Universiti Malaysia Terengganu 21030 Kuala Nerus Terengganu Malaysia Microplastic Research Interest Croup Universiti Malaysia Terengganu 21030 Kuala Nerus Terengganu Malaysia;

    DHI Malaysia Pusat Dagangan Phileo Damansara 1 46350 Petaling Jaya Selangor Malaysia;

    Faculty of Science & Marine Environment Universiti Malaysia Terengganu 21030 Kuala Nerus Terengganu Malaysia;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Estuary; Ingestion; Microplastics; Offshore; South China Sea; Zooplankton;

    机译:河口;摄入;微塑料;离岸;南中国海;浮游动物;

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