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Do biofilms affect the measurement of mercury by the DGT technique? Microcosm and field tests to prevent biofilm growth

机译:生物膜会影响DGT技术对汞的测量吗?缩影和现场测试以防止生物膜生长

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The diffusive gradients in thin films (DGT) technique has been used routinely for monitoring the dissolved, bioavailable fraction of trace metals in freshwater during field campaigns. Nevertheless, for long deployment times, the biofilm formed on the filter of the DGT devices restricts trace metal uptake and hence interferes with the DGT measurements. In this work, we design different experiments to evaluate the potential of silver nanoparticles (AgNPs) in preventing the formation of biofilms on in-house manufactured mercury-specific DGTs. Laboratory tests were carried out by a microcosm system in independent glass containers, where biofilms obtained from field inocula were grown for weeks. Afterward, several experiments were performed with Hg-spiked river water, biofilms and DGTs treated and untreated with AgNPs to better understand biofilm colonization, inhibition and Hg uptake. The results showed that the treatment is very useful, since the mass of the biofilm accumulated at the surface of the treated DGT is significantly (p 0.05) lower than in control (untreated) devices. Tests in colonized environments and Hg-spiked river water showed that the Hg uptake by the treated DGT matched the theoretical values and prevented biofilm formation up to 24 days post-deployment. Conversely, in deployments longer than two weeks using the untreated DGT, measurements could be underestimated by 35%. The results in the field reveal that in sampling stations with high levels of suspended matter, the filter becomes clogged despite there being no biofilm, thereby explaining its low efficiency for the uptake of Hg. In summary, the use of AgNPs inhibits biofilm formation and their use is especially recommended in eutrophic freshwaters with low amounts of suspended particulate matter. (C) 2018 Elsevier Ltd. All rights reserved.
机译:薄膜扩散梯度(DGT)技术已被常规用于监测野战期间痕量金属在淡水中的溶解度,生物利用率。但是,对于较长的部署时间,在DGT装置的过滤器上形成的生物膜会限制痕量金属的吸收,因此会干扰DGT的测量。在这项工作中,我们设计了不同的实验来评估银纳米颗粒(AgNPs)防止在内部制造的汞特异性DGT上形成生物膜的潜力。实验室测试是通过缩影系统在独立的玻璃容器中进行的,从田间接种物中获得的生物膜在其中生长了数周。之后,用掺有汞的河水,经过生物膜处理和未经AgNP处理的DGT进行了一些实验,以更好地了解生物膜的定殖,抑制和汞吸收。结果表明该处理是非常有用的,因为在处理过的DGT表面积聚的生物膜质量明显低于对照(未处理)设备(p <0.05)。在殖民环境和掺有汞的河水中进行的测试表明,处理后的DGT吸收的Hg与理论值相符,并且在部署后的24天内阻止了生物膜的形成。相反,在使用未经处理的DGT部署超过两个星期的情况下,测量可能会低估35%。该领域的结果表明,在悬浮物含量高的采样站中,尽管没有生物膜,但过滤器仍被堵塞,从而解释了其吸收汞的效率低。总而言之,AgNPs的使用会抑制生物膜的形成,特别建议在悬浮颗粒物含量低的富营养淡水中使用它们。 (C)2018 Elsevier Ltd.保留所有权利。

著录项

  • 来源
    《Chemosphere》 |2018年第11期|692-698|共7页
  • 作者

    Diez Sergi; Giaggio Riccardo;

  • 作者单位
  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
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