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Influence of liberated silver from silver nanoparticles on nitrification inhibition of Nitrosomonas europaea

机译:从银纳米颗粒中释放出的银对欧洲硝化亚硝化抑制作用的影响

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摘要

The ecotoxicity of silver nanoparticles (Ag-NPs) to wastewater biota, including ammonia oxidizing bacteria (AOB), is gaining increasing interest as the number of products containing Ag-NPs continues to rise exponentially and they are expected to accumulate in wastewater treatment plants. This research demonstrated that the addition order of Ag-NP and the media constituents had a profound influence on the stability of the Ag-NP suspension and the corresponding repeatability of results and sensitivity of Nitrosomonas europaea. N. europaea, a model AOB, was found to be extremely sensitive to ionic silver (Ag~+) and two sizes of Ag-NPs (20 and 80 nm). Ag~+ exposures resulted in the highest level of toxicity with smaller Ag-NPs (20 nm) being more toxic than larger Ag-NPs (80 nm). The increased sensitivity of N. europaea to smaller Ag-NPs was caused by their higher rates of dissolved silver (dAg) release, via dissolution, due to a greater surface area to volume ratio. dAg was shown to be responsible for the vast majority of the observed Ag-NP toxicity, as determined by abiotic Ag-NP dissolution tests. For the sizes of Ag-NP studied (20 and 80 nm), there appears to be a negligible nanoparticle-specific toxicity. This was further supported by similarities in inhibition mechanisms between Ag~+ and Ag-NP, with both causing decreases in AMO activity and destabilization of the outer-membrane of N. europaea. Finally, equal concentrations of total silver were found to be tightly associated to both Ag~+ and Ag-NP-exposed cells despite Ag-NP concentrations being five times greater, by mass, than Ag~+ concentrations.
机译:随着包含Ag-NPs的产品数量呈指数增长,并且预期它们会在废水处理厂中积累,银纳米颗粒(Ag-NPs)对废水生物区系,包括氨氧化细菌(AOB)的生态毒性越来越引起人们的关注。这项研究表明,Ag-NP的添加顺序和培养基成分对Ag-NP悬浮液的稳定性以及相应结果的重复性和欧洲亚硝化单胞菌的敏感性具有深远的影响。研究发现,欧洲猪笼草是一种AOB模型,对离子银(Ag〜+)和两种大小的Ag-NP(20和80 nm)极为敏感。 Ag +暴露导致最高的毒性水平,较小的Ag-NPs(20 nm)比较大的Ag-NPs(80 nm)更具毒性。欧洲猪笼草对较小的Ag-NPs的敏感性增加,是由于较大的表面积与体积之比,导致它们通过溶解释放的溶解银(dAg)的速率更高。由非生物Ag-NP溶出度试验确定,dAg是导致观察到的大部分Ag-NP毒性的原因。对于研究的Ag-NP的大小(20和80 nm),纳米颗粒特异性毒性似乎可以忽略不计。 Ag〜+和Ag-NP之间抑制机制的相似性进一步支持了这一点,两者均引起AMO活性降低和欧洲猪笼草外膜的不稳定。最后,发现同等浓度的总银与暴露于Ag_ +和暴露于Ag-NP的细胞紧密相关,尽管按质量计算,Ag-NP的浓度是Ag_ +浓度的五倍。

著录项

  • 来源
    《Chemosphere》 |2011年第1期|p.43-49|共7页
  • 作者单位

    School of Chemical, Biological and Environmental Engineering, 102 Cleeson Hall, Oregon State University, Corvallis, OR 97331, United States;

    School of Chemical, Biological and Environmental Engineering, 102 Cleeson Hall, Oregon State University, Corvallis, OR 97331, United States;

    nanoComposix, Inc., 4878 Ronson Court, STE K, San Diego, CA 92111. United States;

    School of Chemical, Biological and Environmental Engineering, 102 Cleeson Hall, Oregon State University, Corvallis, OR 97331, United States;

    School of Chemical, Biological and Environmental Engineering, 102 Cleeson Hall, Oregon State University, Corvallis, OR 97331, United States;

  • 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
  • 中图分类
  • 关键词

    Nitrosomonas europaea; Silver nanoparticles; Silver dissolution; Nitrification inhibition;

    机译:银亚硝化银;纳米银;银溶解;硝化抑制;

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