Environmental Engineering and Science Program, Department of Chemical and Environmental Engineering, University of Cincinnati, 2600 Clifton Ave., Cincinnati, OH, 45221, USA.
National Risk Management Research Laboratory, U.S. Environmental Protection Agency, 26 W. Martin Luther King Dr., Cincinnati, OH, 45268, USA.
Environ Sci Pollut Res Int. 2019 May;26(14):13999-14012. doi: 10.1007/s11356-019-04229-8. Epub 2019 Feb 8.
The concerns regarding potential environmental release and ecological risks of multi-walled carbon nanotubes (MWCNTs) rise with their increased production and use. As a result, there is the need for an analytical method to determine the environmental concentration of MWCNTs. Although several methods have been demonstrated for the quantification of well-characterized MWCNTs, applying these methods to field samples is still a challenge due to interferences from unknown characteristics of MWCNTs and environmental media. To bridge this gap, a recently developed microwave-induced heating method was investigated for the quantification of MWCNTs in field samples. Our results indicated that the microwave response of MWCNTs was independent of the sources, length, and diameter of MWCNTs; however, the aggregated MWCNTs were not able to convert the microwave energy to heat, making the method inapplicable. Thus, a pre-treatment process for dispersing bundled MWCNTs in field samples was crucial for the use of the microwave method. In the present paper, a two-step pre-treatment procedure was proposed: the aggregated MWCNTs loaded environmental samples were first exposed to high temperature (500 °C) and then dispersed by using an acetone-surfactant solution. A validation study was performed to evaluate the effectiveness of the pre-treatment process, showing that an 80-120% recovery range of true MWCNT loading successfully covered the microwave-measured MWCNT mass.
多壁碳纳米管(MWCNTs)的产量和用量不断增加,人们越来越担心其潜在的环境释放和生态风险。因此,需要有一种分析方法来测定 MWCNTs 的环境浓度。虽然已经有几种方法可用于对结构明确的 MWCNTs 进行定量,但由于 MWCNTs 和环境介质的未知特性会产生干扰,将这些方法应用于现场样品仍然具有挑战性。为了弥补这一空白,研究人员最近开发了一种微波诱导加热方法,用于测定现场样品中的 MWCNTs。研究结果表明,MWCNTs 的微波响应与 MWCNTs 的来源、长度和直径无关;然而,聚集的 MWCNTs 无法将微波能量转化为热能,因此该方法不适用。因此,分散现场样品中束状 MWCNTs 的预处理过程对于微波方法的使用至关重要。在本文中,提出了两步预处理程序:首先将负载有聚集 MWCNTs 的环境样品暴露于高温(500°C)下,然后使用丙酮-表面活性剂溶液将其分散。验证研究表明,预处理过程的有效性得到了验证,真实 MWCNT 负载的 80-120%回收率范围成功涵盖了微波测量的 MWCNT 质量。