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一步电提取与原位解吸微等离子体发射光谱法分析盐渍土浸提液中痕量可利用的重金属

Analysis of trace phytoavailable heavy metals in saline soil extract by one-step electroextraction coupled with in situ desorption microplasma optical emission spectrometry.

机构信息

Research Center for Analytical Sciences, Department of Chemistry, College of Sciences, Northeastern University, Box 332, Shenyang, 110819, China.

Qingdao Jiaming Measurement and Control Technology Co., LTD, Qingdao, 266000, China.

出版信息

Anal Chim Acta. 2022 Nov 1;1232:340497. doi: 10.1016/j.aca.2022.340497. Epub 2022 Oct 8.

DOI:10.1016/j.aca.2022.340497
PMID:36257754
Abstract

On-site and sensitive analysis of phytoavailable heavy metals is the key to fast evaluate the pollution incidents, while the development of convenient and efficient sample introduction approaches against matrix interference is crucial to improve the performances of field-deployable instruments. Herein, trace phytoavailable heavy metals in soil are first extracted by 0.1 M NaNO, afterwards adsorbed onto an activated carbon tip via electroextraction (EE), and finally analyzed by dielectric barrier discharge (DBD) microplasma optical emission spectrometry (OES) via in situ desorption. The activated carbon tip is not only able to extract heavy metals from alkali metals/alkaline earth metals matrix, resisting the interference of coexisting anions and non-electroactive species in saline soil extract, but also significantly improves the detection sensitivity of subsequent DBD-OES analysis by increasing loading amounts of analytes. Taking the key heavy metals pollution as model, the detection limits of Cd, Zn, Cu and Pb reach 0.8, 2.3, 6.0 and 4.5 μg kg, respectively, and precisions are within 2.7-4.6%. The accuracy and practicability of the present miniaturized EE-DBD-OES device have been verified by measuring several certified reference materials and real soil samples, providing a promising tool for convenient and sensitive analysis of trace phytoavailable heavy metals in soil.

摘要

现场和敏感分析植物可利用的重金属是快速评估污染事件的关键,而开发方便和有效的抑制基质干扰的样品引入方法对于提高现场可部署仪器的性能至关重要。本文首次通过 0.1 M NaNO3 提取土壤中痕量的植物可利用重金属,然后通过电萃取 (EE) 将其吸附到活性炭尖端上,最后通过原位解吸,利用介质阻挡放电 (DBD) 微等离子体发射光谱 (OES) 进行分析。活性炭尖端不仅能够从碱金属/碱土金属基质中提取重金属,抵抗盐渍土壤提取物中共存阴离子和非电活性物质的干扰,而且通过增加分析物的加载量,显著提高了后续 DBD-OES 分析的检测灵敏度。以关键重金属污染为例,Cd、Zn、Cu 和 Pb 的检测限分别达到 0.8、2.3、6.0 和 4.5 μg kg,精密度均在 2.7-4.6%范围内。通过测量几种认证参考物质和实际土壤样品,验证了本微型 EE-DBD-OES 装置的准确性和实用性,为方便、灵敏地分析土壤中痕量植物可利用重金属提供了一种有前途的工具。

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