Interactions, Transformations, and Bioavailability of Nano-Copper Exposed to Root Exudates
作者:Yuxiong Huang, Lijuan Zhao, Arturo A. Keller · 发表于:Environmental Science & Technology · 年份:2017 · DOI:10.1021/acs.est.7b02523 · 被引用次数:126 · 研究领域:Nanoparticles: synthesis and applications、Heavy metals in environment、Clay minerals and soil interactions
Due to the potential for interactions between crop plants and engineered nanomaterials (ENMs), there is increasing interest in understanding the bioavailability and effects of ENMs released into soil systems. Here, we investigate the influence of root exudates on the fate of ENMs from a thermodynamic perspective. Nano isothermal titration calorimetry was applied to determine thermodynamic parameters for the interaction between nanocopper ( n Cu) and synthetic root exudate (SRE) and its components (including sugars, organic acids, amino acids, and phenolic acids), as well as Cu 2+ and SRE. The measured binding constant ( K d = 5.645 × 10 3 M –1 ) indicated strong interactions between n Cu particles and SRE, as well as with individual organic acids. The interaction between Cu 2+ and SRE was stronger ( K d = 7.181 × 10 4 M –1 ) but varies for the individual SRE components. n Cu dissolution in the presence of SRE was the predominant interaction. In addition, SRE resulted in a complex transformation of n Cu, where Cu 2+, Cu +, and Cu 0 were formed via oxidation and reduction. Plant– n Cu exposure experiments indicate that the binding of SRE with n Cu and dissolved Cu ions can significantly decrease Cu uptake and bioaccumulation in plants. nITC provides a fundamental thermodynamic understanding of interactions between n Cu and plant root exudates, providing an important tool for understanding plant NP-interactions.