College of Chemistry and Engineering, Yangzhou University, Yangzhou, PR China.
J Hazard Mater. 2011 Jul 15;191(1-3):26-31. doi: 10.1016/j.jhazmat.2011.04.020. Epub 2011 Apr 8.
An ultrasensitive electrochemical method for simultaneous determination of lead and cadmium was first developed using the novel bismuth-Nafion-medical stone doped disposable electrode (an improved wax-impregnated graphite electrode). Through the synergistic sensitization effect of the resulting composite material, the disposable electrode showed remarkable electrochemical responses to lead and cadmium. The oxidation of the two metals produced two well-defined and separated square wave peaks at about -0.62 V for Pb(2+) and -0.85 V for Cd(2+), respectively. The effects of the amount of medical stone, concentration of Nafion, thickness of bismuth, pH of buffer solution, deposition potential, accumulation time, voltammetric measurement and possible interferences were investigated in detail. Under the optimal conditions, the fabricated electrode exhibited linear ranges from 2.0 to 12.0 μg L(-1) with detection limit of 0.07 μg L(-1) for lead and 2.0-12.0 μg L(-1) with detection limit of 0.47 μg L(-1) for cadmium. The assay results of heavy metals in wastewater with the proposed method were in acceptable agreement with the atomic absorption spectroscopy method.
首次利用新型铋-纳滤膜-砭石掺杂一次性电极(改良涂蜡石墨电极)开发了一种用于同时测定铅和镉的超灵敏电化学方法。通过所得复合材料的协同敏化作用,一次性电极对铅和镉表现出显著的电化学响应。两种金属的氧化在约-0.62 V 处为 Pb(2+) 和-0.85 V 处为 Cd(2+) 分别产生两个定义明确且分离的方波峰。详细研究了砭石用量、Nafion 浓度、铋膜厚度、缓冲溶液 pH 值、沉积电位、累积时间、伏安测量和可能的干扰。在最佳条件下,所制备的电极对铅的线性范围为 2.0 至 12.0 μg L(-1),检测限为 0.07 μg L(-1),对镉的线性范围为 2.0 至 12.0 μg L(-1),检测限为 0.47 μg L(-1)。该方法测定废水中重金属的结果与原子吸收光谱法吻合良好。