Department of Environmental Sciences and Engineering, Gillings School of Global Public Health, University of North Carolina at Chapel Hill, North Carolina, 27599-7431, USA.
Chemosphere. 2018 Dec;212:662-677. doi: 10.1016/j.chemosphere.2018.08.108. Epub 2018 Aug 21.
Titanium dioxide (TiO) nanoparticles (NPs) have been widely used in industrial and consumer products. Comprehensive and accurate detection, characterization, and quantification of TiO NPs are important for understanding the specific property, behavior, fate, and potential risk of TiO NPs in natural and engineered environments. This review provides a summary of recent analytical studies of TiO NPs and their aggregation, coagulation, flocculation, sedimentation, stabilization under a wide range of conditions and processes. Much attention is paid on sample preparation prior to an analytical procedure, analysis of particle size, morphology, structure, state, chemical composition, surface properties, etc., via measurements of light scattering and zeta potential, microscopy, spectroscopy, and related techniques. Recently, some advanced techniques have also been explored to characterize TiO NPs and their behaviors in the environment. Many issues must be considered including distinction between engineered TiO NPs and their naturally occurring counterparts, lack of reference materials, interlaboratory comparison, when analyzing low concentrations of TiO NPs and their behaviors in complex matrices. No "ideal" technique has emerged as each technique has its own merits, biases, and limitations. Multi-method approach is highlighted to provide in-depth information. Improvements of analytical method for determination of TiO NPs have been recommended to be together with exposure modelers and ecotoxicologists for maximum individual and mutual benefit. Future work should focus on developing analytical technology with the advantages of being reliable, sensitive, selective, reproducible, and capable of in situ detection in complicated sample system.
二氧化钛(TiO)纳米粒子(NPs)已被广泛应用于工业和消费产品中。全面、准确地检测、表征和定量 TiO NPs 对于理解 TiO NPs 在自然和工程环境中的特定性质、行为、命运和潜在风险非常重要。本文综述了近年来对 TiO NPs 及其在各种条件和过程下聚集、凝聚、絮凝、沉降、稳定化的分析研究。本文非常关注分析前样品制备、粒径、形貌、结构、状态、化学成分、表面性质等分析,采用光散射和 zeta 电位、显微镜、光谱学及相关技术进行测量。最近,还探索了一些先进技术来表征 TiO NPs 及其在环境中的行为。许多问题必须考虑,包括工程 TiO NPs 与其天然对应物的区别、缺乏参考物质、实验室间比较、分析低浓度 TiO NPs 及其在复杂基质中的行为等。每种技术都有其自身的优点、偏差和局限性,没有一种“理想”的技术出现。强调采用多方法途径提供深入的信息。建议改进分析方法来测定 TiO NPs,与暴露模型和生态毒理学家一起进行,以最大限度地发挥个人和相互的利益。未来的工作应集中于开发具有可靠、灵敏、选择性、重现性和能够在复杂样品系统中进行原位检测优点的分析技术。