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海洋微塑料尺寸分布的模型:一种统计力学方法。

A model for the size distribution of marine microplastics: A statistical mechanics approach.

机构信息

Japan Agency for Marine-Earth Science and Technology, Yokohama, Kanagawa, Japan.

出版信息

PLoS One. 2021 Nov 30;16(11):e0259781. doi: 10.1371/journal.pone.0259781. eCollection 2021.

Abstract

The size distribution of marine microplastics provides a fundamental data source for understanding the dispersal, break down, and biotic impacts of the microplastics in the ocean. The observed size distribution at the sea surface generally shows, from large to small sizes, a gradual increase followed by a rapid decrease. This decrease has led to the hypothesis that the smallest fragments are selectively removed by sinking or biological uptake. Here we propose a new model of size distribution, focusing on the fragmentation of marine plastics. The model is inspired by ideas from statistical mechanics. In this model, the original large plastic piece is broken into smaller pieces once by the application of "energy" or work by waves or other processes, under two assumptions, one that fragmentation into smaller pieces requires larger energy and the other that the occurrence probability of the "energy" exponentially decreases toward larger energy values. Our formula well reproduces observed size distributions over wide size ranges from micro- to mesoplastics. According to this model, the smallest fragments are fewer because large "energy" required to produce such small fragments occurs more rarely.

摘要

海洋微塑料的粒径分布为理解海洋中微塑料的分散、降解和生物影响提供了基本的数据来源。在海面观测到的粒径分布通常表现为,从大到小粒径逐渐增加,然后迅速减少。这种减少导致了最小碎片被下沉或生物摄取选择性去除的假说。在这里,我们提出了一种新的粒径分布模型,重点关注海洋塑料的破碎。该模型的灵感来自统计力学的思想。在该模型中,假设原始大塑料块在波浪或其他过程施加的“能量”或功的作用下,一次性破碎成更小的碎片,有两个假设,一个是碎片成更小的碎片需要更大的能量,另一个是“能量”的发生概率朝着更大的能量值呈指数下降。我们的公式很好地再现了从微观到中观塑料的广泛粒径范围内的观测到的粒径分布。根据该模型,最小碎片较少是因为产生如此小碎片所需的大“能量”发生的频率更低。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/77ec/8631679/11b37c0776fa/pone.0259781.g001.jpg

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