Carl Englert Brian
Environmental Protection Agency, Office of Water, Washington, DC 20460, USA.
J Environ Monit. 2007 Nov;9(11):1154-61. doi: 10.1039/b705988d. Epub 2007 Aug 10.
Nanotechnology has emerged as a field of science and engineering which offers many new product possibilities and potential solutions for a variety of problems. Nanomaterials come in many shapes and forms and contribute to potential products that do everything from sense analytes on a molecular level to function as self cleaning surfaces. With new and significant applications, it is likely that nanomaterial containing products may replace many of the products we use on a daily basis, leading to an increased presence of these materials in the environment. This will result in new needs and requirements from detection tools. It is likely that the analytical methods used to monitor nanomaterials in the environment will be very different than those used in risk assessment and exposure studies. This paper briefly outlines the history, impacts, and uses of nanomaterials and discusses possible methods of detection and quantification for environmental samples. The discussions in this article are specific to those matrices relating to wastewaters and sludge.
纳米技术已成为一个科学与工程领域,它为各种问题提供了许多新的产品可能性和潜在解决方案。纳米材料有多种形状和形式,并有助于开发从分子水平感知分析物到具有自清洁表面功能等各种功能的潜在产品。随着新的重要应用的出现,含纳米材料的产品很可能会取代我们日常使用的许多产品,从而导致这些材料在环境中的存在增加。这将产生对检测工具的新需求。用于监测环境中纳米材料的分析方法可能与风险评估和暴露研究中使用的方法有很大不同。本文简要概述了纳米材料的历史、影响和用途,并讨论了环境样品检测和定量的可能方法。本文中的讨论特定于与废水和污泥相关的那些基质。