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Optimization of pretreatment procedure for MeHg determination in sediments and its applications

机译:沉积物及其应用的MEHG测定预处理程序的优化

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摘要

Methylmercury (MeHg) in sediment is difficult to be determined due to its low concentration and binding compounds like sulfide and organic matter. Moreover, wet sediment samples have been suggested to behave differently from certified reference materials in MeHg analysis. Optimal pretreatment procedure for MeHg determination in sediments has not been ascertained and whether the procedure could apply to sediment samples with complex matrix merits further research. This work firstly compared recovery results of five pretreatment procedures for MeHg determination using ERM-CC580. Using the optimal pretreatment procedure, recovery results were analyzed in different sediment samples after manipulation of moisture content, organic matter, and acid volatile sulfide. The procedure using CuSO4/HNO3 as leaching solutions and mechanical shaking as extraction method was proved to produce the most satisfactory recovery results (100.67 +/- 6.75%, mean +/- standard deviation). And when moisture content varied from 20 to 80%, average recovery results in sediment samples ranged from 100 to 125%. Furthermore, before and after the manipulation of organic matter or acid volatile sulfide, spiking recovery results varied little and were all within acceptable limit (85 similar to 105%). Therefore, the procedure of CuSO4/HNO3-mechanical is proposed as a universal pretreatment method for MeHg determination in sediment samples with various characteristics.
机译:由于其低浓度和硫化物和有机物质,难以确定沉积物中的甲基汞(Mehg)。此外,已经提出湿沉积物样品与MeHG分析中的认证参考资料不同。沉积物中的MEHG测定的最佳预处理程序尚未确定,该程序是否可以应用于复杂矩阵的沉积物样本进一步研究。这项工作首先比较了使用ERM-CC580的MEHG测定的五种预处理程序的恢复结果。使用最佳预处理程序,在操纵水分含量,有机物和酸挥发性硫化物后在不同沉积物样品中分析回收结果。证明了使用CuSO4 / HNO3作为浸出溶液和机械振动作为提取方法的方法,以产生最令人满意的恢复结果(100.67 +/- 6.75%,平均+/-标准偏差)。并且当水分含量不同20%至80%时,平均回收导致沉积物样品的范围为100至125%。此外,在操纵有机质或酸挥发硫化硫化物之前和之后,尖刺恢复结果几乎不相同,并且全部在可接受的限度内(85类似于105%)。因此,提出了CuSO4 / HNO3-机械的方法作为具有各种特性的沉积物样品中的MeHG测定的通用预处理方法。

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