Dipartimento di Scienze e Tecnologie Chimiche, Università di Roma Tor Vergata , Via della Ricerca Scientifica, 00133 Rome, Italy.
Environ Sci Technol. 2014 Jul 1;48(13):7477-85. doi: 10.1021/es500675x. Epub 2014 Jun 17.
In this work a miniaturized and disposable electrochemical sensor was developed to evaluate the cadmium and lead ion phytoremediation potential by the floating aquatic macrophyte Lemna minor L. The sensor is based on a screen-printed electrode modified "in-situ" with bismuth film, which is more environmentally friendly than the mercury-based sensor usually adopted for lead and cadmium ion detection. The sensor was coupled with a portable potentiostat for the simultaneous measurement of cadmium and lead ions by stripping analysis. The optimized analytical system allows the simultaneous detection of both heavy metals at the ppb level (LOD equal to 0.3 and 2 ppb for lead and cadmium ions, respectively) with the advantage of using a miniaturized and cost-effective system. The sensor was then applied for the evaluation of Pb(2+) or/and Cd(2+) uptake by measuring the amount of the heavy metals both in growth medium and in plant tissues during 1 week experiments. In this way, the use of Lemna minor coupled with a portable electrochemical sensor allows the set up of a model system able both to remove the heavy metals and to measure "in-situ" the magnitude of heavy metal removal.
本工作开发了一种小型化和一次性的电化学传感器,以通过漂浮水生植物浮萍(Lemna minor L.)评估镉和铅离子的植物修复潜力。该传感器基于丝网印刷电极,其采用铋膜进行“原位”修饰,比通常用于检测铅和镉离子的基于汞的传感器更环保。该传感器与便携式电化学工作站耦合,用于通过溶出分析同时测量镉和铅离子。优化后的分析系统允许同时在 ppb 水平下检测两种重金属(对铅和镉离子的检测限分别为 0.3 和 2 ppb),并且具有使用小型化和经济高效系统的优势。然后,该传感器通过在 1 周实验期间测量生长介质和植物组织中重金属的含量,用于评估 Pb(2+)或/和 Cd(2+)的摄取。通过将浮萍与便携式电化学传感器结合使用,可以建立一种既能去除重金属又能原位测量重金属去除量的模型系统。