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使用分层随机抽样工具对网格滤膜上的微粒进行计数。

Enumeration of microparticles on a gridded filter using a stratified random sampling tool.

作者信息

Paterson Kayli, Silverstan Michael, Beckingham Barbara

机构信息

Environmental & Sustainability Studies Program, College of Charleston, Charleston, SC, United States.

Oregon State University in Corvallis, OR, United States.

出版信息

MethodsX. 2023 Jul 8;11:102284. doi: 10.1016/j.mex.2023.102284. eCollection 2023 Dec.

Abstract

Quantifying microplastics and other microparticles is a matter of interest in the field of environmental science. Stereomicroscopy is one of the most common methods to identify and enumerate micro-size particles. However, the process of enumerating an entire environmental sample can be tedious and time-consuming, especially when target particles are abundant. Here we present a method to develop a subsampling strategy and spreadsheet-based tool to speed up the process of microparticle enumeration while maintaining particle count accuracy. We first identified the pattern in which tire road wear particles (TRWPs) from environmental samples were distributed on a filter when vacuum-plated, then used particle abundance within relatively homogeneous subsection arrangements to establish stratified random subsampling schemes. We describe a repeated sampling experiment using count data to test the stratified design and illustrate the relationship between the fraction of the filter counted (sample size) with accuracy and variance in the extrapolated total sample count and the corresponding analyst time savings when applied to analyzing TRWPs isolated from sediments. Based on the results, a particle enumeration tool was created in Microsoft Excel Visual Basic configured using a 47 mm gridded filter, and the source is available for free modification under the same open license.•Vacuum-plated microparticles are often highly abundant and not homogenously distributed across a filter.•A random sampling selection data tool was created using knowledge of particle distribution.•Method describes how to structure and use partial filter counts to extrapolate for total particle enumeration.

摘要

对微塑料和其他微粒进行量化是环境科学领域关注的一个问题。体视显微镜是识别和计数微小尺寸颗粒最常用的方法之一。然而,对整个环境样本进行计数的过程可能繁琐且耗时,尤其是当目标颗粒数量众多时。在此,我们提出一种方法,即开发一种子采样策略和基于电子表格的工具,以加快微粒计数过程,同时保持颗粒计数的准确性。我们首先确定了环境样本中的轮胎道路磨损颗粒(TRWPs)在真空镀膜后在滤膜上的分布模式,然后利用相对均匀的子区域排列中的颗粒丰度来建立分层随机子采样方案。我们描述了一个使用计数数据的重复采样实验,以测试分层设计,并说明在对从沉积物中分离出的TRWPs进行分析时,滤膜计数比例(样本大小)与外推总样本计数的准确性和方差以及相应的分析人员时间节省之间的关系。基于这些结果,在Microsoft Excel Visual Basic中使用47毫米网格滤膜创建了一个颗粒计数工具,其源代码可在相同的开放许可下免费修改。

•真空镀膜的微粒通常数量众多,且在滤膜上分布不均匀。

•利用颗粒分布知识创建了一个随机抽样选择数据工具。

•该方法描述了如何构建和使用部分滤膜计数来推断总颗粒数。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8ebc/10407279/bb36f7342777/ga1.jpg

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