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Real-time monitoring of nanoscale TiO_2 concentration by spectrophotometry: implications of agglomeration due to natural organic matter and multivalent ions

机译:分光光度法实时监测纳米级TiO_2的浓度:天然有机物和多价离子引起的团聚影响

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摘要

The study of the environmental fate of nanoscale TiO2 (n-TiO2) is a major recent research focus which requires a rapid and accurate on-site concentration determination method. Inductively coupled plasma mass spectroscopy (ICP-MS) has been the most widely used method for determining the concentration of n-TiO2 in environmental samples; however, poses many challenges, such as hazardous hydrofluoric acid pre-treatment and clear limitations in mobile on-site measurement and monitoring. This study demonstrates that industrial wastewater containing natural organic matter (NOM) can present a major challenge to the analysis of n-TiO2 by ICP-MS, and introduces a spectrophotometry technique that can be used as an alternative. The results suggest that spectrophotometry methods can be more accurate than slurry nebulization ICP-MS for measuring the concentrations of n-TiO2 in wastewater containing NOM under low salt conditions. Furthermore, this study demonstrates the use of a portable flow-through spectrophotometer for use in applications of wastewater treatment and environmental monitoring with real-time feedback of n-TiO2 concentrations. The ability to detect and monitor n-TiO2 will greatly assist in improving the understanding of hazards and risks that emerging nanomaterials pose to the environment and the public health.
机译:纳米TiO 2(n-TiO 2)的环境命运的研究是最近的主要研究焦点,其需要快速和准确的现场浓度测定方法。电感耦合等离子体质谱法(ICP-MS)是确定环境样品中n-TiO2浓度的最广泛使用的方法。然而,这带来了许多挑战,例如危险的氢氟酸预处理以及移动现场测量和监控的明显局限性。这项研究表明,含有天然有机物(NOM)的工业废水可能对ICP-MS分析n-TiO2提出重大挑战,并介绍了可以用作替代方法的分光光度法。结果表明,在低盐条件下,用分光光度法测量含NOM的废水中n-TiO2的浓度要比浆料雾化ICP-MS更为准确。此外,本研究证明了便携式流通式分光光度计在n-TiO2浓度实时反馈下用于废水处理和环境监测的应用。检测和监测n-TiO2的能力将极大地帮助增进对新兴纳米材料对环境和公众健康构成的危害和风险的理解。

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