State Key Laboratory of Separation Membranes and Membrane Processes, National Center for International Joint Research on Membrane Science and Technology, School of Materials Science and Engineering, Tianjin Polytechnic University, Tianjin, 300387, PR China; Institute of Research and Development, Duy Tan University, Danang, 550000, Viet Nam.
Institute of Environmental Engineering & Nano-Technology, Tsinghua Shenzhen International Graduate School, Tsinghua University, Shenzhen, 518055, Guangdong, China.
Chemosphere. 2021 Apr;269:128690. doi: 10.1016/j.chemosphere.2020.128690. Epub 2020 Oct 23.
Nanomaterials (NMs) have received tremendous attention as emerging adsorbents for environmental applications. The ever-increasing release into aquatic systems and the potential use in water treatment processes heighten the likelihood of the interactions of NMs with aquatic dissolved organic matter (DOM). Once DOM is adsorbed on NMs, it substantially modifies the surface properties, thus altering the fate and transport of NMs, as well as their toxic effects on (micro)organisms in natural and engineered systems. The environmental consequences of DOM-NMs interaction have been widely studied in the literature. In contrast, a comprehensive understanding of DOM-NM complexes, particularly regarding the controlling factors, is still lacking, and its significance has been largely overlooked. This gap in the knowledge mainly arises from the complex and heterogeneous structures of the DOM, which prompts the urgent need to further characterize the DOM properties to deepen the understanding associated with the adsorption processes on NMs. This review aims to provide in-depth insights into the complex DOM adsorption behavior onto NMs, whether they are metal- or carbon-based materials. First, we summarize the up-to-date analytical methods to characterize the DOM to unravel the underlying adsorption mechanisms. Second, the key DOM characteristics governing the adsorption processes are discussed. Next, the environmental factors, such as the nature of adsorbents and solution chemistry, affecting the DOM-NM interactions, are identified and discussed. Finally, future studies are recommended to fully understand the chemical traits of DOM upon its adsorption onto NMs.
纳米材料(NMs)作为新兴的环境应用吸附剂受到了极大的关注。由于它们不断被释放到水生系统中,并且有可能在水处理过程中被使用,因此纳米材料与水生溶解有机物质(DOM)之间的相互作用的可能性增加了。一旦 DOM 被吸附在 NMs 上,它就会极大地改变表面性质,从而改变 NMs 的命运和迁移,以及它们对自然和工程系统中(微生物)的毒性影响。文献中广泛研究了 DOM-NMs 相互作用的环境后果。相比之下,对于 DOM-NM 复合物,特别是关于控制因素的全面理解仍然缺乏,其重要性在很大程度上被忽视了。这种知识上的差距主要源于 DOM 的复杂和异质结构,这促使人们迫切需要进一步表征 DOM 的性质,以深化对纳米材料上吸附过程的理解。本综述旨在深入了解 DOM 对纳米材料(无论是金属基还是碳基材料)的复杂吸附行为。首先,我们总结了最新的分析方法来表征 DOM,以揭示潜在的吸附机制。其次,讨论了控制吸附过程的关键 DOM 特性。接下来,确定并讨论了影响 DOM-NM 相互作用的环境因素,如吸附剂的性质和溶液化学性质。最后,建议进行未来的研究,以充分了解 DOM 在吸附到 NMs 上时的化学特性。