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开发并验证了一种简单的土壤和沉积物中汞形态的热解吸技术。

Development and validation of a simple thermo-desorption technique for mercury speciation in soils and sediments.

机构信息

CESAM/Chemistry Department, University of Aveiro, Campus de Santiago, 3810-193 Aveiro, Portugal.

出版信息

Talanta. 2012 Sep 15;99:363-8. doi: 10.1016/j.talanta.2012.05.065. Epub 2012 Jun 7.

Abstract

An innovative technique for rapid identification and quantification of mercury (Hg) species in soils and sediments was developed using a direct mercury analyser. Speciation was performed by the continuous thermal-desorption of mercury species (temperature range 76-770 °C), in combination with atomic absorption spectrophotometry detection. Standard materials HgCl(2), Hg bound to humic acids and HgS were characterized; thermo-desorption curves of each material showed a well-resolved peak at specific temperature intervals: 125-225 °C, 100-250 °C and 225-325 °C, respectively. Certified reference materials (CRM) BCR(®) 142R, RTC(®) CRM 021, NRC(®) MESS-3 and PACS-2 were tested. Although the CRM were not certified for Hg species, the sum of Hg species obtained was compared to the certified value for total Hg; recoveries were 92%, 100%, 97%, and 95%, respectively. One sediment and three soil samples from mercury contaminated areas (total Hg concentrations 0.067-126 mg kg(-1)) were analysed as well. It was possible to compare peaks of thermo-desorption curves from the samples with those from standard materials and thereby distinguish different Hg species in solid samples. Generally, Hg was present as bound to chloride or humic substances. The precision was satisfactory, as reflected by the relative standard deviations determined for standards and certified reference materials (<11%; n=10).

摘要

开发了一种使用直接测汞仪快速识别和定量土壤和沉积物中汞(Hg)形态的创新技术。形态分析通过连续热解吸汞形态(温度范围 76-770°C),结合原子吸收分光光度法检测。对 HgCl2、与腐殖酸结合的 Hg 和 HgS 标准物质进行了表征;每种材料的热解吸曲线在特定的温度间隔内显示出一个很好分辨的峰:125-225°C、100-250°C 和 225-325°C。测试了认证参考材料(CRM)BCR®142R、RTC®CRM 021、NRC®MESS-3 和 PACS-2。尽管 CRM 没有针对 Hg 形态进行认证,但获得的 Hg 形态总和与总 Hg 的认证值进行了比较;回收率分别为 92%、100%、97%和 95%。还分析了来自汞污染地区的一个沉积物和三个土壤样品(总 Hg 浓度 0.067-126mgkg-1)。可以将样品的热解吸曲线峰与标准物质的曲线峰进行比较,从而区分固体样品中的不同 Hg 形态。通常,Hg 以与氯化物或腐殖质结合的形式存在。标准物质和认证参考物质的相对标准偏差(<11%;n=10)反映了精度令人满意。

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