Truzzi C, Annibaldi A, Illuminati S, Bassotti E, Scarponi G
Department of Marine Science, Polytechnic University of Marche-Ancona, Via Brecce Bianche, 60131, Ancona, Italy.
Anal Bioanal Chem. 2008 Sep;392(1-2):247-62. doi: 10.1007/s00216-008-2239-x. Epub 2008 Jul 20.
Square-wave anodic-stripping voltammetry (SWASV) was set up and optimized for simultaneous determination of cadmium, lead, and copper in siliceous spicules of marine sponges, directly in the hydrofluoric acid solution (approximately 0.55 mol L(-1) HF, pH approximately 1.9). A thin mercury-film electrode (TMFE) plated on to an HF-resistant epoxy-impregnated graphite rotating-disc support was used. The optimum experimental conditions, evaluated also in terms of the signal-to-noise ratio, were as follows: deposition potential -1100 mV vs. Ag/AgCl, KCl 3 mol L(-1), deposition time 3-10 min, electrode rotation 3000 rpm, SW scan from -1100 mV to +100 mV, SW pulse amplitude 25 mV, frequency 100 Hz, DeltaE(step) 8 mV, t(step) 100 ms, t(wait) 60 ms, t(delay) 2 ms, t(meas) 3 ms. Under these conditions the metal peak potentials were Cd -654 +/- 1 mV, Pb -458 +/- 1 mV, Cu -198 +/- 1 mV. The electrochemical behaviour was reversible for Pb, quasi-reversible for Cd, and kinetically controlled (possibly following chemical reaction) for Cu. The linearity of the response with concentration was verified up to approximately 4 microg L(-1) for Cd and Pb and approximately 20 microg L(-1) for Cu. The detection limits were 5.8 ng L(-1), 3.6 ng L(-1), and 4.3 ng L(-1) for Cd, Pb, and Cu, respectively, with t(d) = 5 min. The method was applied for determination of the metals in spicules of two specimens of marine sponges (Demosponges) from the Portofino natural reserve (Ligurian Sea, Italy, Petrosia ficiformis) and Terra Nova Bay (Ross Sea, Antarctica, Sphaerotylus antarcticus). The metal contents varied from tens of ng g(-1) to approximately 1 microg g(-1), depending on the metal considered and with significant differences between the two sponge species.
建立并优化了方波阳极溶出伏安法(SWASV),用于直接在氢氟酸溶液(约0.55 mol L⁻¹ HF,pH约1.9)中同时测定海洋海绵硅质骨针中的镉、铅和铜。使用了镀在耐氢氟酸的环氧浸渍石墨旋转圆盘载体上的薄汞膜电极(TMFE)。还根据信噪比评估了最佳实验条件,如下:相对于Ag/AgCl、KCl 3 mol L⁻¹的沉积电位为-1100 mV,沉积时间为3 - 10分钟,电极旋转速度为3000 rpm,方波扫描范围为-1100 mV至+100 mV,方波脉冲幅度为25 mV,频率为100 Hz,ΔE(步长)为8 mV,t(步长)为100 ms,t(等待)为60 ms,t(延迟)为2 ms,t(测量)为3 ms。在这些条件下,金属的峰值电位分别为:镉 -654 ± 1 mV,铅 -458 ± 1 mV,铜 -198 ± 1 mV。铅的电化学行为是可逆的,镉为准可逆,铜为动力学控制(可能遵循化学反应)。对于镉和铅,浓度响应的线性在约4 μg L⁻¹以内得到验证,对于铜在约20 μg L⁻¹以内。沉积时间t(d)=5分钟时,镉、铅和铜的检测限分别为5.8 ng L⁻¹、3.6 ng L⁻¹和4.3 ng L⁻¹。该方法用于测定来自波托菲诺自然保护区(意大利利古里亚海,Petrosia ficiformis)和特拉诺瓦湾(南极罗斯海,Sphaerotylus antarcticus)的两种海洋海绵(寻常海绵纲)骨针中的金属。金属含量从几十ng g⁻¹到约1 μg g⁻¹不等,这取决于所考虑的金属,并且两种海绵物种之间存在显著差异。