生物膜对微塑料颗粒下沉行为和入侵生物在生态系统之间转移的重要性

IF 1.5 4区 材料科学 Q4 MATERIALS SCIENCE, MULTIDISCIPLINARY Micro & Nano Letters Pub Date : 2023-03-02 DOI:10.3390/micro3010022
C. Gaylarde, M. P. de Almeida, Charles V. Neves, José Antônio Baptista Neto, E. M. da Fonseca
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引用次数: 2

摘要

尽管塑料在海洋系统中无处不在,但我们目前对其运输的了解有限。最近的研究表明,由于在微塑料颗粒(MP)表面形成生物膜(“塑料球”),可以选择性地去除海洋表面的小塑料颗粒(<5毫米)。这种局部微环境可以将微观世界与邻近的水介质隔离开来,从而保护外来物种免受周围物理化学条件的影响。除了为外来物种在环境中迁移创造特定条件外,塑料圈还会影响MPs的流体动力学,导致MPs在水柱中移动,最初会下沉。这种现象的重要性以前没有考虑到这些粒子。MPs通过水柱的垂直运动大小决定了它们的分布,这将随着暴露和定植的时间而变化。一些塑料圈生物具有塑料降解活动,可以在海洋去污染战略中加以利用。本文旨在增加我们对生物膜在塑料微粒的生物动力学和扩散中的作用的理解。
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The Importance of Biofilms on Microplastic Particles in Their Sinking Behavior and the Transfer of Invasive Organisms between Ecosystems
Although plastic is ubiquitous in marine systems, our current knowledge of its transport is limited. Recent studies suggest size-selective removal of small plastic particles (<5 mm) from the ocean surface as a result of the formation of a biofilm (the “plastisphere”) on the microplastic particle (MP) surface. This localized microenvironment can isolate the microcosm from the adjacent aqueous medium, and thus protect component alien species from the surrounding physico-chemical conditions. Apart from resulting in specific conditions for the transfer of alien species through the environment, the plastisphere can impact MP hydrodynamics and cause MPs to move through the water column, initially sinking. The importance of this phenomenon has not been previously considered for these particles. The size-dependent vertical movement of MPs through the water column determines their distribution, which will vary with time of exposure and colonization. Some plastisphere organisms have plastic-degrading activities, which could be harnessed in marine depollution strategies. This article seeks to increase our understanding of the role of biofilms in the biological dynamics and diffusion of plastic microparticles.
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来源期刊
Micro & Nano Letters
Micro & Nano Letters 工程技术-材料科学:综合
CiteScore
3.30
自引率
0.00%
发文量
58
审稿时长
2.8 months
期刊介绍: Micro & Nano Letters offers express online publication of short research papers containing the latest advances in miniature and ultraminiature structures and systems. With an average of six weeks to decision, and publication online in advance of each issue, Micro & Nano Letters offers a rapid route for the international dissemination of high quality research findings from both the micro and nano communities. Scope Micro & Nano Letters offers express online publication of short research papers containing the latest advances in micro and nano-scale science, engineering and technology, with at least one dimension ranging from micrometers to nanometers. Micro & Nano Letters offers readers high-quality original research from both the micro and nano communities, and the materials and devices communities. Bridging this gap between materials science and micro and nano-scale devices, Micro & Nano Letters addresses issues in the disciplines of engineering, physical, chemical, and biological science. It places particular emphasis on cross-disciplinary activities and applications. Typical topics include: Micro and nanostructures for the device communities MEMS and NEMS Modelling, simulation and realisation of micro and nanoscale structures, devices and systems, with comparisons to experimental data Synthesis and processing Micro and nano-photonics Molecular machines, circuits and self-assembly Organic and inorganic micro and nanostructures Micro and nano-fluidics
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