College of Chemistry and Chemical Engineering, Xinjiang Normal University, Urumqi 830054, China.
School of Metallurgy and Environment, Central South University, Changsha 410083, China.
Sci Total Environ. 2018 Dec 1;643:479-485. doi: 10.1016/j.scitotenv.2018.06.229. Epub 2018 Jun 23.
Lead (Pb) is a widespread heavy metal that can cause damage to the ecosystem, and the ubiquitously existing dissolved organic matter (DOM) can significantly affect the environmental behavior of Pb. The present work explores the interaction process of Pb with humic acid (HA) through integration of synchronous fluorescence and log-transformed UV-vis absorption spectroscopy coupled with spectral slope calculation and two-dimensional correlation analyses. The spectral slope calculation results show that the carboxylic and phenolic groups in HA were the predominant binding sites to Pb, and the interaction process was highly dependent on solution pH. Correlation analyses confirmed a superior binding affinity of carboxylic groups in HA over phenolic groups. Integration of spectral slope calculation with two-dimensional correlation spectroscopy is a promising tool for better understanding the molecular structure of Pb-DOM complexes and the characteristics of Pb binding to DOM, which may provide new insights into the prevention, control, and remediation of Pb contamination in environment.
铅(Pb)是一种广泛存在的重金属,会对生态系统造成损害,而普遍存在的溶解有机质(DOM)会显著影响 Pb 的环境行为。本工作通过同步荧光和对数变换紫外可见吸收光谱结合光谱斜率计算和二维相关分析,研究了 Pb 与腐殖酸(HA)的相互作用过程。光谱斜率计算结果表明,HA 中的羧酸和酚基是 Pb 的主要结合位点,且相互作用过程高度依赖于溶液 pH 值。相关分析证实了 HA 中羧酸基对 Pb 的结合亲和力优于酚基。光谱斜率计算与二维相关光谱学的结合是一种很有前途的工具,可用于更好地理解 Pb-DOM 配合物的分子结构和 Pb 与 DOM 结合的特征,这可能为预防、控制和修复环境中的 Pb 污染提供新的思路。