浮力塑料碎片与海洋表层生物的相互作用

IF 1.6 Q4 ENVIRONMENTAL SCIENCES
Renjith VishnuRadhan, Shagnika Das, Saumya Raj, Ashley Brereton, Luisa Galgani
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引用次数: 0

摘要

近十年来,海洋表面塑料和微塑料浓度加剧,给生态系统带来了多重潜在的不利影响。塑料在海洋环境中存在的增加和相关的持久性提出了它们与海洋表面生物相互作用的问题,海洋表面生物通常受到有害化学渗滤液的影响。沿海地区是大多数塑料垃圾通过管理不善的陆地塑料废物和河流径流进入的途径,是塑料高积聚的地区。自由漂浮的海洋生物与浮力塑料碎片(BPD)的相互作用被确定为可能危害未来全球生物多样性的令人关注的问题之一,需要公众立即关注和采取行动。本文通过关注海洋表层中上层群落与BPD的相互作用,解决了塑料问题对新出现的和未被充分探索的生态影响。塑料凋落物及其宏观和微观变异孕育着不同谱系的生物,这种护理刺激了直接的行为和生理变化,能够改变群落的结构和组成。这种由bpd引起的改变损害了最多样化的生物指示生物和关键生物的基本特征,如浮力机制和生物物理耦合行为。随后,这种对显著生态指示生物的关键影响可能会产生新的海洋环境挑战。为了解决相关的社会、环境和经济影响,有必要对这种无处不在的BPD和海面栖息生物之间的联系进行政策干预,这些联系可能会破坏关键的生态指标。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
On the interaction of buoyant plastic debris and sea-surface layer organisms

Surface ocean plastic and microplastic concentration have intensified in the past decade, bringing multiple potential adverse effects to ecosystems. This increased presence and related persistence of plastics in the marine environment pose questions about their interaction with sea-surface organisms, which are usually impacted by hazardous chemical leachates. Coastal regions, as entry pathways of most plastic litter through mismanaged plastic waste on land and river runoff, are zones of high plastic accumulation. The interactions of free-floating marine organisms and buoyant plastic debris (BPD) are identified as one of the issues of concern that would potentially harm future global biodiversity, needing immediate public attention and action. This article addresses emerging and underexplored ecological impacts of the plastic problem by focusing on the interaction of the sea surface layer pelagic community with BPD. The plastic litter and their macro and micro variants harbor organisms of diverse lineage, and this nursing stimulates direct behavioral and physiological changes that are able to alter the structure and the composition of a community. Such BPD-induced alteration impairs elementary traits of the most diverse group of bio-indicator and keystone organisms, such as buoyancy mechanisms and bio-physical coupling behaviors. Subsequently, such crucial impacts on remarkable eco-indicator organisms can potentially generate novel marine environmental challenges. Policy interventions on such ubiquitous nexus of BPD and sea-surface dwelling organisms that potentially disrupt crucial ecological indicators are necessary to tackle the associated social, environmental, and economic impacts.

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