Implications of plastic pollution on global marine carbon cycling and climate.

IF 3.4 Q2 BIOCHEMISTRY & MOLECULAR BIOLOGY Emerging Topics in Life Sciences Pub Date : 2022-12-01 DOI:10.1042/ETLS20220013
Karin Kvale
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引用次数: 7

Abstract

Plastic pollution can both chemically and physically impede marine biota. But it can also provide novel substrates for colonization, and its leachate might stimulate phytoplankton growth. Plastic contains carbon, which is released into the environment upon breakdown. All of these mechanisms have been proposed to contribute global impacts on open ocean carbon cycling and climate from ubiquitous plastic pollution. Laboratory studies produce compelling data showing both stimulation and inhibition of primary producers and disruption of predatory lifecycles at individual scale, but global carbon cycle impacts remain mostly unquantified. Preliminary modelling estimates ecosystem alterations and direct carbon release due to plastic pollution will remain vastly less disruptive to global carbon cycling than the direct damage wrought by fossil fuel carbon emissions. But when considered by mass, carbon in the form of bulky, persistent plastic particles may be disproportionally more influential on biogeochemical cycling than carbon as a gas in the atmosphere or as a dissolved component of seawater. Thus, future research should pay particular attention to the optical and other physical effects of marine plastic pollution on Earth system and ecological function, and resulting impacts on oxygen and nutrient cycling. Improved understanding of the breakdown of plastics in the marine environment should also be considered high-priority, as any potential perturbation of biological carbon cycling by plastic pollution is climate-relevant on centennial timescales and longer.

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塑料污染对全球海洋碳循环和气候的影响。
塑料污染会在化学上和物理上阻碍海洋生物群。但它也可以为殖民提供新的基质,它的渗滤液可能会刺激浮游植物的生长。塑料含有碳,分解后会释放到环境中。所有这些机制都被认为是由于无处不在的塑料污染对开放海洋碳循环和气候的全球影响。实验室研究得出了令人信服的数据,显示了个体尺度上对初级生产者的刺激和抑制以及对掠夺性生命周期的破坏,但全球碳循环的影响大部分仍未量化。初步模型估计,塑料污染造成的生态系统改变和直接碳释放对全球碳循环的破坏性仍将远远小于化石燃料碳排放造成的直接破坏。但如果从质量上考虑,以体积庞大、持久的塑料颗粒形式存在的碳对生物地球化学循环的影响可能比作为大气中的气体或作为海水中的溶解成分的碳要大得多。因此,未来的研究应特别关注海洋塑料污染对地球系统和生态功能的光学和其他物理效应,以及由此对氧气和养分循环的影响。提高对塑料在海洋环境中的分解的了解也应被视为高度优先事项,因为塑料污染对生物碳循环的任何潜在扰动都与百年或更长时间尺度上的气候有关。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
7.70
自引率
0.00%
发文量
94
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