College of Material Chemistry and Chemical Engineering, Hangzhou Normal University, Hangzhou, 311121, China.
College of Material Chemistry and Chemical Engineering, Hangzhou Normal University, Hangzhou, 311121, China.
Anal Chim Acta. 2022 Jun 15;1212:339935. doi: 10.1016/j.aca.2022.339935. Epub 2022 May 13.
Toxicity, mobility, bioavailability and biofunctions of chromium, cadmium, mercury and lead are heavily dependent upon their specific chemical forms, leading to a high demand to metal speciation analysis rather than total quantification. Simultaneous speciation analysis of multiple metal(loid)s is attractive to a large sample capacity containing unstable analytes due to its economic and environmental advantages over the conventional single elemental strategies. In this work, an analytical method integrating online solid phase extraction into high performance liquid chromatography interfaced with inductively coupled plasma mass spectrometry (ICP-MS) to simultaneously preconcentrate and quantify Cr, Cd, Hg and Pb forms in pg L levels in water was developed. Cr(III + VI), Cd(II), Hg(II), Pb(II), methylmercury (MeHg), ethylmercury (EtHg), and trimethyl (TML) and triethyl lead (TEL) were captured by the C adsorbent (equilibrated with 10 mL of 1.0 mM 2-hydroxyethanethiol at 10 mL min) and eluted by mobile phase (5.0 mM Cys at pH 2.0), then completely separated on the C column within 8.0 min and eventually determined by ICP-MS. Low limits of detection (0.001-0.007 ng L) and quantification (0.003-0.023 ng L), good relative standard deviations (<4%) and high enrichment factors (827-2656 folds) were obtained with good linearities. Three reference materials of total cadmium (GBW08602), total mercury (GBW08603) and total lead (GBW08601) in water were analyzed by the developed method to validate the accuracy with good agreement with certified values and satisfactory recoveries (92-100%). This method was proved feasible by the determination of Cr, Cd, Hg and Pb compounds in drinking water, river water, pond water and tap water.
铬、镉、汞和铅的毒性、迁移性、生物利用度和生物功能在很大程度上取决于它们的特定化学形态,因此需要对金属形态进行分析,而不是进行总量定量分析。由于其具有经济和环境优势,相对于传统的单一元素策略,同时对多种金属(类)进行形态分析对于包含不稳定分析物的大容量样品具有吸引力。在这项工作中,开发了一种将在线固相萃取与高效液相色谱-电感耦合等离子体质谱(ICP-MS)相结合的分析方法,用于同时预浓缩和定量水中 pg L 水平的 Cr、Cd、Hg 和 Pb 形态。Cr(III+VI)、Cd(II)、Hg(II)、Pb(II)、甲基汞 (MeHg)、乙基汞 (EtHg)、三甲基 (TML) 和三乙基铅 (TEL) 被 C 吸附剂(用 10 mL 1.0 mM 2-羟乙硫醇在 10 mL min 下平衡)捕获,并通过流动相(pH 2.0 下的 5.0 mM Cys)洗脱,然后在 C 柱上完全分离,最终通过 ICP-MS 测定。该方法获得了较低的检出限(0.001-0.007 ng L)和定量限(0.003-0.023 ng L)、较好的相对标准偏差(<4%)和较高的富集因子(827-2656 倍),具有良好的线性关系。通过该方法对水中总镉(GBW08602)、总汞(GBW08603)和总铅(GBW08601)三种参考物质进行了分析,结果与认证值吻合良好,回收率(92-100%)令人满意,验证了该方法的准确性。该方法通过对饮用水、河水、池塘水和自来水进行 Cr、Cd、Hg 和 Pb 化合物的测定,证明是可行的。