Salinas Arturo, Triviño Juan José, Alvarez-Lueje Alejandro, Pizarro Isabel, Segura Rodrigo, Arancibia Verónica
Facultad de Ciencias Químicas y Farmacéuticas, Universidad de Chile, Santiago, 8331150, Chile.
Facultad de Ciencias Químicas y Farmacéuticas, Universidad de Chile, Santiago, 8331150, Chile.
Talanta. 2024 Sep 1;277:126391. doi: 10.1016/j.talanta.2024.126391. Epub 2024 Jun 9.
An edible Mushroom-Nafion modified glassy carbon electrode (MN-GCE) was prepared using a homogeneous mixture varying the concentrations of these, in addition to the origin of the mushroom (Shiitake, Lentinula edodes, M and Abrantes, Agariscus bisporus, M) and applied to the As(III) determination by anodic stripping voltammetry. After choosing the optimal conditions in the preparation of the electrode, the second stage was to study the effects of various parameters such as supporting electrolyte, pH, accumulation potential, and time (E, t). The optimum experimental conditions chosen were Britton Robinson buffer 0.01 mol L pH:4.6; E: -1.0 and t: 60 s obtaining a signal of oxidation of As(0) to As(III) about 0.08 V. Peak current was proportional to arsenic concentration over the 19.6-117.6 μg L range, with a 3σ detection limit of 13.4 μg L. The method was validated using As(III) spiked tap water from the laboratory with satisfactory results (RE:3.0 %). Finally, the method was applied to the determination of As(III) in water samples from the Loa River (Northern Chile) in the presence of As(V) in a concentration >20 times higher (RE: 2.3 %).
采用香菇(香菇属香菇,M和阿兰特斯)、双孢蘑菇(双孢蘑菇,M)等不同浓度的均匀混合物制备了一种可食用蘑菇-纳夫ion修饰玻碳电极(MN-GCE),并将其应用于阳极溶出伏安法测定As(III)。在选择电极制备的最佳条件后,第二阶段是研究各种参数的影响,如支持电解质、pH值、富集电位和时间(E,t)。选择的最佳实验条件为: Britton Robinson缓冲液0.01 mol L,pH值:4.6;E:-1.0,t:60 s,得到As(0)氧化为As(III)的信号约为0.08 V。在19.6-117.6 μg L范围内,峰电流与砷浓度成正比,3σ检测限为13.4 μg L。该方法通过对实验室加标自来水的As(III)进行验证,结果令人满意(相对误差:3.0%)。最后,该方法应用于智利北部洛阿河(Loa River)水样中As(III)的测定,其中As(V)的浓度高出20倍以上(相对误差:2.3%)。