...
首页> 外文期刊>Waste Management >Current limitations and challenges in nanowaste detection, characterisation and monitoring
【24h】

Current limitations and challenges in nanowaste detection, characterisation and monitoring

机译:纳米废物检测,表征和监测的当前局限性和挑战

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

Engineered nanomaterials (ENMs) are already extensively used in diverse consumer products. Along the life cycle of a nano-enabled product, ENMs can be released and subsequently accumulate in the environment. Material flow models also indicate that a variety of ENMs may accumulate in waste streams. Therefore, a new type of waste, so-called nanowaste, is generated when end-of-life ENMs and nano-enabled products are disposed of. In terms of the precautionary principle, environmental monitoring of end-of-life ENMs is crucial to allow assessment of the potential impact of nanowaste on our ecosystem. Trace analysis and quantification of nanoparticulate species is very challenging because of the variety of ENM types that are used in products and low concentrations of nanowaste expected in complex environmental media. In the framework of this paper, challenges in nanowaste characterisation and appropriate analytical techniques which can be applied to nanowaste analysis are summarised. Recent case studies focussing on the characterisation of ENMs in waste streams are discussed. Most studies aim to investigate the fate of nanowaste during incineration, particularly considering aerosol measurements; whereas, detailed studies focusing on the potential release of nanowaste during waste recycling processes are currently not available. In terms of suitable analytical methods, separation techniques coupled to spectrometry-based methods are promising tools to detect nanowaste and determine particle size distribution in liquid waste samples. Standardised leaching protocols can be applied to generate soluble fractions stemming from solid wastes, while micro- and ultrafiltration can be used to enrich nanoparticulate species. Imaging techniques combined with X-ray-based methods are powerful tools for determining particle size, morphology and screening elemental composition. However, quantification of nanowaste is currently hampered due to the problem to differentiate engineered from naturally-occurring nanoparticles. A promising approach to face these challenges in nanowaste characterisation might be the application of nanotracers with unique optical properties, elemental or isotopic fingerprints. At present, there is also a need to develop and standardise analytical protocols regarding nanowaste sampling, separation and quantification. In general, more experimental studies are needed to examine the fate and transport of ENMs in waste streams and to deduce transfer coefficients, respectively to develop reliable material flow models.
机译:工程纳米材料(ENM)已经广泛用于各种消费产品。在纳米产品的生命周期中,ENM可以被释放并随后在环境中积累。物质流模型还表明,各种ENM可能会在废物流中积累。因此,处置报废的ENM和具有纳米功能的产品时会产生一种新型的废物,即所谓的纳米废物。根据预防原则,报废ENM的环境监测对于评估纳米废物对我们的生态系统的潜在影响至关重要。纳米颗粒种类的痕量分析和定量分析非常具有挑战性,因为产品中使用的ENM类型多种多样,而且复杂环境介质中预期的纳米废物浓度较低。在本文的框架中,总结了纳米废物表征中的挑战以及可用于纳米废物分析的适当分析技术。最近的案例研究侧重于废物流中ENM的表征。大多数研究旨在研究焚烧过程中纳米废物的命运,特别是考虑到气溶胶测量。然而,目前尚无针对纳米颗粒在废物回收过程中潜在释放的详细研究。就合适的分析方法而言,分离技术与基于光谱的方法相结合是检测纳米废物并确定液体废物样品中粒度分布的有前途的工具。可以使用标准化的浸出方案来产生源自固体废物的可溶性级分,而微滤和超滤则可以用来富集纳米颗粒物。成像技术与基于X射线的方法相结合,是确定粒径,形态和筛选元素组成的强大工具。然而,由于区分工程改造的天然纳米颗粒的问题,目前阻碍了纳米废物的量化。应对纳米废物表征中这些挑战的一种有前途的方法可能是应用具有独特光学特性,元素或同位素指纹的纳米示踪剂。当前,还需要开发和标准化有关纳米废物采样,分离和定量的分析方案。通常,还需要进行更多的实验研究,以研究废物流中ENM的命运和运输,并推论出转移系数,以开发可靠的物料流模型。

著录项

  • 来源
    《Waste Management》 |2015年第9期|407-420|共14页
  • 作者单位

    Department of Water-Atmosphere-Environment, University of Natural Resources and Life Sciences, Institute of Waste Management, Muthgasse 107, 1190 Vienna, Austria;

    Department of Water-Atmosphere-Environment, University of Natural Resources and Life Sciences, Institute of Waste Management, Muthgasse 107, 1190 Vienna, Austria;

    Department of Chemistry, Division of Analytical Chemistry, University of Natural Resources and Life Sciences, Muthgasse 18, 1190 Vienna, Austria;

    Department of Nanobiotechnology, Institute for Synthetic Bioarchitectures, University of Natural Resources and Life Sciences, Muthgasse 11/Ⅱ, 1190 Vienna, Austria;

    Department of Water-Atmosphere-Environment, University of Natural Resources and Life Sciences, Institute of Waste Management, Muthgasse 107, 1190 Vienna, Austria;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Nanomaterials; Nanowaste; Nano-enabled products; Detection; Characterisation; Waste treatment;

    机译:纳米材料纳米废物纳米产品;检测;表征;废物处理;

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号