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A novel, density-independent and FTIR-compatible approach for the rapid extraction of microplastics from aquatic sediments

机译:一种新颖的,独立于密度和FTIR兼容的方法,用于快速提取水生沉积物微型塑料

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摘要

Microplastics have been detected in aquatic sediments around the world, highlighting the propensity of this matrix to serve as a sink for these structural pollutants. More reliable and reproducible extraction protocols for microplastics would facilitate comparisons across studies. A number of different extraction techniques are currently used to separate microplastics from sediment and almost exclusively employ density-based separations, which take advantage of the inherent densities of plastic particles. Some of these techniques are cost-effective but fail to fully recover all plastic types. Other techniques may recover most plastic types, but are more costly and/ or hazardous to human or environmental health. We present here a novel, cost- effective oil extraction protocol ( OEP) that provides an alternative to density- based approaches by taking advantage of the oleophilic properties of microplastics. Using this technique, we counted microplastic particles in spiked sediment samples using light microscopy and observed 96.1% +/- 7.4 recovery for total microplastics, with recovery rates of 92.7% +/- 4.3 for fibers and 99% +/- 1.4 for particles. Subsequent analysis with Fourier-Transform Infrared Spectrometry (FTIR) revealed that the oil interfered with the FTIR spectrum of microplastics, but that an additional, post- extraction clean- up step using ethyl alcohol (90%) removed residual traces of oil and eliminated the FTIR spectral interference. The application of this new technique to shoreline sediment samples collected from sites in urban Vancouver, British Columbia, Canada, and a remote beach on Vancouver Island, as well as bulk seawater, demonstrated that the oil extraction protocol is effective for environmental samples. This novel OEP represents a cost-effective and reliable alternative to leading density-based techniques.
机译:在全球水生沉积物中检测到微薄塑料,突出了该基质的倾向作为这些结构污染物的水槽。更可靠和可再现的微型胶质萃取方案将有助于跨研究的比较。目前使用许多不同的提取技术用于将微薄从沉积物分离,并且几乎完全采用基于密度的分离,这利用了塑料颗粒的固有密度。其中一些技术具有成本效益,但不能完全恢复所有塑料类型。其他技术可以恢复大多数塑料类型,但对人类或环境健康更昂贵和/或危险。我们在此提出一种新颖的,具有成本效益的油提取方案(OEP),通过利用微塑料的疏油性能来提供基于密度的方法的替代方法。使用该技术,我们使用光学显微镜计算尖刺沉积物样品中的微塑性颗粒,并观察到总微薄的恢复为96.1%+/- 7.4,纤维的恢复率为92.7%+/- 4.3,颗粒为99%+/- 1.4。随后用傅立叶变换红外光谱法(FTIR)分析显示,油干扰了微薄的FTIR光谱,但是使用乙醇(90%)除去残留的油残留痕迹并消除了额外的,萃取后的清洁步骤并消除了FTIR光谱干扰。这项新技术在温哥华,不列颠哥伦比亚省(不列颠哥伦比亚省),加拿大,加拿大,加拿大和温哥华岛的偏远海滩中的海岸线沉积物样本以及散装海水的侵略性沉积物样本展示了石油提取方案对环境样品有效。这部小型OEP代表了一种成本效益和可靠的基于密度技术的替代方案。

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  • 来源
    《Analytical methods》 |2017年第9期|共10页
  • 作者单位

    Vancouver Aquarium Marine Sci Ctr Coastal Ocean Res Inst Ocean Pollut Res Program POB 3232 Vancouver BC V6B 3X8 Canada;

    Vancouver Aquarium Marine Sci Ctr Coastal Ocean Res Inst Ocean Pollut Res Program POB 3232 Vancouver BC V6B 3X8 Canada;

    Vancouver Aquarium Marine Sci Ctr Coastal Ocean Res Inst Ocean Pollut Res Program POB 3232 Vancouver BC V6B 3X8 Canada;

    Vancouver Aquarium Marine Sci Ctr Coastal Ocean Res Inst Ocean Pollut Res Program POB 3232 Vancouver BC V6B 3X8 Canada;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分析化学;
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