School of Environmental Science and Engineering,Gwangju Institute of Science and Technology,Gwangju, Republic of Korea.
Rev Environ Health. 2012 Sep 10;27(4):175-9. doi: 10.1515/reveh-2012-0025.
With the increasing use and application of engineered nanoparticles (ENPs) in a number industries, ENPs, through their unique properties, have made their way into the environment. However, the environmental fate and behavior of ENPs are largely unknown. Laboratory studies have shown that some ENPs have the potential for toxicity, suggesting they may affect organisms in the environment. To fully assess the risk of ENPs, a better estimation of exposure concentrations is needed. This requires an understanding of the stability and toxicity of nanoparticles (NPs) in the environment. This review presents a brief overview of the fate, behavior, and ecotoxicity of NPs in the environment. The fate and transport of NPs, which can be affected by various environmental conditions like light, pH, ionic strength, and type and concentration of cations, are important for the examination of the life cycle of NPs.
随着工程纳米粒子(ENPs)在许多行业中的日益使用和应用,ENPs 通过其独特的性质已经进入了环境。然而,ENPs 的环境归宿和行为在很大程度上是未知的。实验室研究表明,一些 ENPs 具有潜在的毒性,这表明它们可能会影响环境中的生物。为了充分评估 ENPs 的风险,需要更好地估计暴露浓度。这需要了解纳米粒子(NPs)在环境中的稳定性和毒性。本综述简要概述了 NPs 在环境中的归宿、行为和生态毒性。NPs 的命运和运输,可能会受到各种环境条件的影响,如光、pH 值、离子强度以及阳离子的类型和浓度,对于研究 NPs 的生命周期很重要。