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阐明水柱中微塑料的垂直迁移:采样方法和分布综述。

Elucidating the vertical transport of microplastics in the water column: A review of sampling methodologies and distributions.

机构信息

State Key Laboratory of Estuarine and Coastal Research, East China Normal University, 500 Dongchuan Road, Shanghai 200241, China; Plastic Marine Debris Research Center, East China Normal University, 500 Dongchuan Road, Shanghai 200241, China; Regional Training and Research Center on Plastic Marine Debris and Microplastics, IOC-UNESCO, 500 Dongchuan Road, Shanghai 200241, China.

Marine Biology and Ecology Research Centre, School of Marine Science and Engineering, University of Plymouth, Drake Circus, Plymouth, Devon PL4 8AA, United Kingdom.

出版信息

Water Res. 2020 Nov 1;186:116403. doi: 10.1016/j.watres.2020.116403. Epub 2020 Sep 9.

Abstract

There have been numerous studies that have investigated floating microplastics (MPs) in surface water, yet little data are currently available regarding the vertical distribution in the water column. This lack constrains our ability to comprehensively assess the ecological effects of MPs and develop further policy controls. In this study, we reviewed current progress of sampling methodologies, the distribution patterns, and the physiochemical properties of MPs throughout the water column. Three sampling protocols were identified in this study: bulk, net and submersible pump/in-situ sampling. In different regions, the vertical patterns of MPs in the water column varied with depth, which is possibly related to the morphological characteristics, polymeric densities, and biofouling of the MPs. The results of this review revealed that fibrous and fragmented MPs comprised over 90% of the total MPs by quantity, of which fibrous MPs constituted the majority (43%-100%). In addition, polyethylene terephthalate, polyamide, polyethylene, polyvinyl chloride, and polypropylene have been widely identified in previous studies. To minimize the impact caused by various sampling protocols, the use of a volume gradient trail experiment and a unified mesh size of 60-100 μm for the initial concentration are recommended according to the results of this review. Given the limited knowledge regarding the vertical transport of MPs in the water column, harmonized sampling methods should first be developed. The mechanisms of this process can be separately considered for different water bodies, such as freshwater systems, coastal waters, and pelagic zones. The presence of these anthropogenic pollutants in the water column poses a threat to the largest but most vulnerable habitats of life on earth, and hence they merit further investigation.

摘要

已经有许多研究调查了地表水的漂浮微塑料(MPs),但目前关于水柱中垂直分布的数据很少。这限制了我们全面评估 MPs 生态影响和制定进一步政策控制的能力。在这项研究中,我们回顾了当前采样方法、分布模式以及水柱中 MPs 的物理化学性质的研究进展。本研究确定了三种采样方案:批量、网和潜水泵/原位采样。在不同的地区,水柱中 MPs 的垂直分布模式随深度而变化,这可能与 MPs 的形态特征、聚合密度和生物污垢有关。本综述的结果表明,纤维状和碎片状 MPs 占 MPs 总量的 90%以上,其中纤维状 MPs 占大多数(43%-100%)。此外,聚对苯二甲酸乙二醇酯、聚酰胺、聚乙烯、聚氯乙烯和聚丙烯在以前的研究中已被广泛识别。为了最大限度地减少各种采样方案造成的影响,根据本综述的结果,建议使用体积梯度试验和 60-100μm 的统一网目尺寸来测量初始浓度。鉴于水柱中 MPs 垂直传输的知识有限,应首先开发协调一致的采样方法。可以分别考虑不同水体(如淡水系统、沿海水域和远洋区)中这一过程的机制。这些人为污染物在水柱中的存在对地球上最大但最脆弱的生命栖息地构成了威胁,因此值得进一步研究。

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