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Low-Volatility Model Demonstrates Humidity Affects Environmental Toxin Deposition on Plastics at a Molecular Level

机译:低挥发性模型表明湿度在分子水平上影响塑料上环境毒素的沉积

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摘要

Despite the ever-increasing prevalence of plastic debris and endocrine disrupting toxins in aquatic ecosystems, few studies describe their interactions in freshwater environments. We present a model system to investigate the deposition/desorption behaviors of low-volatility lake ecosystem toxins on microplastics in situ and in real time. Molecular interactions of gas-phase nonylphenols (NPs) with the surfaces of two common plastics, poly(styrene) and poly(ethvlene terephthalate), were studied using quartz crystal microbalance and sum frequency generation vibrational spectroscopy. NP point sources were generated under two model environments: plastic on land and plastic on a freshwater surface. We found the headspace above calm water provides an excellent environment for NP deposition and demonstrate significant NP deposition on plastic within minutes at relevant concentrations. Further, NP deposits and orders differently on both plastics under humid versus dry environments. We attributed the unique deposition behaviors to surface energy changes from increased water content during the humid deposition. Lastly, nanograms of NP remained on microplastic surfaces hours after initial NP introduction and agitating conditions, illustrating feasibility for plastic-bound NPs to interact with biota and surrounding matter. Our model studies reveal important interactions between low-volatility environmental toxins and microplastics and hold potential to correlate the environmental fate of endocrine disrupting toxins in the Great Lakes with molecular behaviors.
机译:尽管塑料碎片和内分泌干扰毒素在水生生态系统中的流行程度不断增加,但很少有研究描述它们在淡水环境中的相互作用。我们提出了一个模型系统,用于在原位和实时调查低挥发性湖泊生态系统毒素在微塑料上的沉积/解吸行为。使用石英晶体微量天平和和频产生振动光谱法研究了气相壬基酚(NPs)与两种常见塑料聚苯乙烯和对苯二甲酸乙二酯表面的分子相互作用。 NP点源是在两种模型环境下生成的:陆地上的塑料和淡水表面上的塑料。我们发现,在平静水面上方的顶部空间为NP沉积提供了绝佳的环境,并证明了在相关浓度下几分钟内塑料上明显的NP沉积。此外,在潮湿和干燥环境下,两种塑料上的NP沉积和排列方式都不同。我们将独特的沉积行为归因于潮湿沉积过程中水含量增加引起的表面能变化。最后,在最初的NP引入和搅动条件之后的数小时内,NP残留在微塑料表面上的纳克级数就说明了与塑料结合的NP与生物群和周围物质相互作用的可行性。我们的模型研究揭示了低挥发性环境毒素与微塑料之间的重要相互作用,并具有将大湖地区内分泌干扰毒素的环境命运与分子行为相关联的潜力。

著录项

  • 来源
    《Environmental Science & Technology》 |2016年第3期|1304-1312|共9页
  • 作者单位

    Department of Chemistry, University of Michigan, 930 North University Avenue, Ann Arbor, Michigan 48109 United States;

    Department of Chemistry, University of Michigan, 930 North University Avenue, Ann Arbor, Michigan 48109 United States;

    Department of Chemistry, University of Michigan, 930 North University Avenue, Ann Arbor, Michigan 48109 United States;

    Department of Chemistry, University of Michigan, 930 North University Avenue, Ann Arbor, Michigan 48109 United States;

    Department of Ecology and Evolutionary Biology, University of Michigan, 830 North University Ave, Ann Arbor, Michigan 48109 United States;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
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  • 正文语种 eng
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