微塑料:对珊瑚和其他珊瑚礁生物的影响。

IF 3.4 Q2 BIOCHEMISTRY & MOLECULAR BIOLOGY Emerging Topics in Life Sciences Pub Date : 2022-03-14 DOI:10.1042/ETLS20210236
Olga Pantos
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引用次数: 5

摘要

塑料污染是一个日益严重的全球性问题。除了塑料颗粒从直接来源和通过物品的自然磨损不断流入环境之外,已经存在的塑料有可能进一步分解,因此提供了巨大的塑料颗粒来源。随着塑料生产水平的持续上升,进入海洋环境的塑料含量也随之增加,我们必须了解其影响。有证据表明,微塑料和纳米塑料(MNP)对世界上所有的海洋生态系统和生物群构成了严重威胁,对所有分类群和营养水平产生了个体到生态系统的影响,尽管这些影响尚未完全了解。塑料微粒(议员;0.1-5毫米)一直被发现与所研究的所有珊瑚礁的生物群,水和沉积物有关,但由于当前技术的局限性,纳米塑料(NP;
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Microplastics: impacts on corals and other reef organisms.

Plastic pollution in a growing problem globally. In addition to the continuous flow of plastic particles to the environment from direct sources, and through the natural wear and tear of items, the plastics that are already there have the potential to breakdown further and therefore provide an immense source of plastic particles. With the continued rise in levels of plastic production, and consequently increasing levels entering our marine environments it is imperative that we understand its impacts. There is evidence microplastic and nanoplastic (MNP) pose a serious threat to all the world's marine ecosystems and biota, across all taxa and trophic levels, having individual- to ecosystem-level impacts, although these impacts are not fully understood. Microplastics (MPs; 0.1-5 mm) have been consistently found associated with the biota, water and sediments of all coral reefs studied, but due to limitations in the current techniques, a knowledge gap exists for the level of nanoplastic (NP; <1 µm). This is of particular concern as it is this size fraction that is thought to pose the greatest risk due to their ability to translocate into different organs and across cell membranes. Furthermore, few studies have examined the interactions of MNP exposure and other anthropogenic stressors such as ocean acidification and rising temperature. To support the decision-making required to protect these ecosystems, an advancement in standardised methods for the assessment of both MP and NPs is essential. This knowledge, and that of predicted levels can then be used to determine potential impacts more accurately.

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CiteScore
7.70
自引率
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发文量
94
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