Access Sensor Technologies LLC, 320 E. Vine Dr. STE 221, Fort Collins, CO 80524, USA.
Department of Chemistry, Colorado State University, 1301 Center Ave., Fort Collins, CO 80523-1872, USA.
Analyst. 2021 Dec 6;146(24):7520-7527. doi: 10.1039/d1an01744f.
A method for lead (Pb) detection in soil is presented. Pb is a dangerous environmental pollutant that is present in soils, posing a health risk to millions of people worldwide, and regular monitoring of Pb contamination in soils is essential to public health. Many sensitive methods for detection of heavy metals in solid matrices exist, but they cannot be performed on-site because they are costly (>$30 per sample), require trained personnel, and many classical sample preparation methods are not safe to bring into the field. We describe an alternative process, combining a safer sample preparation method with electrochemical analysis. The process requires minimal training, making it an attractive overall method for regular environmental screening of Pb in soils. Extract obtained from the soil is pH adjusted and analyzed using a stencil-printed carbon electrode and square wave anodic stripping voltammetry. In this work, a study of 15 neighborhood soils examining the concentration of Pb present post-extraction was performed to demonstrate the method. The limit of detection for the electrochemical analysis was calculated to be 16 ppb-well below the United States Environmental Protection Agency's action limit for Pb in soils (400 mg kg or 4000 ppb)-and third party inductively coupled plasma-optical emission spectroscopy analysis validated the results obtained in this study to within ±17% on average.
介绍了一种土壤中铅(Pb)检测的方法。铅是一种危险的环境污染物,存在于土壤中,对全球数百万人的健康构成威胁,因此定期监测土壤中的 Pb 污染对于公共健康至关重要。存在许多用于检测固体基质中重金属的敏感方法,但由于它们成本高昂(每个样本>$30)、需要经过培训的人员,并且许多经典的样品制备方法在带入现场时不安全,因此无法在现场进行。我们描述了一种替代方法,即将更安全的样品制备方法与电化学分析相结合。该过程所需的培训最少,因此对于定期进行土壤中 Pb 的常规环境筛选来说,这是一种很有吸引力的整体方法。从土壤中提取的样品经过 pH 调整,然后使用模板印刷碳电极和方波阳极溶出伏安法进行分析。在这项工作中,对 15 个邻里土壤进行了研究,以检测萃取后土壤中 Pb 的浓度,以证明该方法的有效性。电化学分析的检测限计算为 16 ppb,远低于美国环保署规定的土壤中 Pb 的行动限值(400 mg kg 或 4000 ppb),第三方电感耦合等离子体-光学发射光谱分析也验证了本研究结果的准确性,平均偏差在±17%以内。