Mammana Sabrina B, Berton Paula, Camargo Alejandra B, Lascalea Gustavo E, Altamirano Jorgelina C
Laboratorio de Química Ambiental, Instituto Argentino de Nivología, Glaciología y Ciencias Ambientales (CCT-CONICET-Mendoza), Mendoza, Argentina.
Facultad de Ciencias Exactas y Naturales, Universidad Nacional de Cuyo, Mendoza, Argentina.
Electrophoresis. 2017 May;38(9-10):1334-1343. doi: 10.1002/elps.201600335. Epub 2017 Mar 20.
An analytical methodology based on coprecipitation-assisted coacervative extraction coupled to HPLC-UV was developed for determination of five organophosphorus pesticides (OPPs), including fenitrothion, guthion, parathion, methidathion, and chlorpyrifos, in water samples. It involves a green technique leading to an efficient and simple analytical methodology suitable for high-throughput analysis. Relevant physicochemical variables were studied and optimized on the analytical response of each OPP. Under optimized conditions, the resulting methodology was as follows: an aliquot of 9 mL of water sample was placed into a centrifuge tube and 0.5 mL sodium citrate 0.1 M, pH 4; 0.08 mL Al (SO ) 0.1 M; and 0.7 mL SDS 0.1 M were added and homogenized. After centrifugation the supernatant was discarded. A 700 μL aliquot of the coacervate-rich phase obtained was dissolved with 300 μL of methanol and 20 μL of the resulting solution was analyzed by HPLC-UV. The resulting LODs ranged within 0.7-2.5 ng/mL and the achieved RSD and recovery values were <8% (n = 3) and >81%, respectively. The proposed analytical methodology was successfully applied for the analysis of five OPPs in water samples for human consumption of different locations of Mendoza.
建立了一种基于共沉淀辅助凝聚萃取结合HPLC-UV的分析方法,用于测定水样中的五种有机磷农药(OPPs),包括杀螟硫磷、谷硫磷、对硫磷、杀扑磷和毒死蜱。该方法采用绿色技术,得到了一种高效、简单且适用于高通量分析的分析方法。研究并优化了相关物理化学变量对每种OPPs分析响应的影响。在优化条件下,得到的方法如下:将9 mL水样等分试样置于离心管中,加入0.5 mL 0.1 M柠檬酸钠(pH 4)、0.08 mL 0.1 M硫酸铝和0.7 mL 0.1 M十二烷基硫酸钠,混匀。离心后弃去上清液。将得到的700 μL富含凝聚相的等分试样用300 μL甲醇溶解,取20 μL所得溶液用HPLC-UV分析。得到的检测限在0.7-2.5 ng/mL范围内,相对标准偏差(RSD)和回收率分别<8%(n = 3)和>81%。所提出的分析方法成功应用于门多萨不同地点供人类消费的水样中五种OPPs的分析。