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热带河流腐殖质(内格罗河)对汞(II)的还原作用——巴西汞循环的一个可能过程。

Reduction of mercury(II) by tropical river humic substances (Rio Negro) - A possible process of the mercury cycle in Brazil.

作者信息

Rocha J C, Junior E S, Zara L F, Rosa A H, Dos Santos A, Burba P

机构信息

Institute of Chemistry, UNESP, PO Box 355, 14800-900 Araraquara, Brazil.

出版信息

Talanta. 2000 Dec 4;53(3):551-9. doi: 10.1016/s0039-9140(00)00532-4.

DOI:10.1016/s0039-9140(00)00532-4
PMID:18968142
Abstract

The evolution of elemental Hg from its environmental compounds has already been supposed to be an important process within the global mercury cycle. The present study characterizes the abiotic reduction of Hg(II) ions by typical river humic substances (HS) conventionally pre-isolated by the adsorbent XAD 8 from the "Rio Negro" near Manaus, Brazil. For the investigation of this reduction process a special reaction and Hg(0) trapping unit combined with cold-vapor atomic absorption spectrometry (CVAAS) was developed. Preconcentration of traces of mercury(II), if required, was obtained by a home-made FIA system using microcolumns filled with the Hg(II)-selective collector CheliteS(R) (Serva Company). The effect of environmentally relevant parameters such as the pH value, the Hg(II)/HS ratio and the HS concentration on the Hg(II) reduction process was studied as a function of the time. The Hg(0) production was highest at pH 8.0 and in the case of decreasing HS amounts (0.5 mg) when about 65% of initially 1.0 mug Hg(II) was reduced within 50 h. Moreover, the reduction efficiency of HS towards Hg(II) strongly depended on the HS concentration but hardly on the Hg(II)/HS ratio. The reduction kinetics followed a relatively slow two-step first-order mechanism with formal rate constants of about 0.1 and 0.02 h(-1), respectively. Based on these findings the possible relevance of the abiotic evolution of mercury in humic-rich aquatic environments is considered.

摘要

元素汞从其环境化合物中的转化已被认为是全球汞循环中的一个重要过程。本研究描述了由吸附剂XAD 8从巴西马瑙斯附近的“黑河”中常规预分离出的典型河流腐殖质(HS)对汞离子的非生物还原作用。为了研究这种还原过程,开发了一种特殊的反应和汞捕集装置,并结合冷蒸气原子吸收光谱法(CVAAS)。如有需要,痕量汞离子的预浓缩通过自制的流动注射分析系统实现,该系统使用填充有汞离子选择性捕集剂CheliteS®(Serva公司)的微柱。研究了环境相关参数,如pH值、汞离子/腐殖质比例和腐殖质浓度对汞离子还原过程的影响,并将其作为时间的函数进行研究。在pH 8.0且腐殖质含量降低(0.5毫克)的情况下,汞的生成量最高,在50小时内,初始1.0微克汞离子中约65%被还原。此外,腐殖质对汞离子的还原效率强烈依赖于腐殖质浓度,而几乎不依赖于汞离子/腐殖质比例。还原动力学遵循相对缓慢的两步一级反应机制,表观速率常数分别约为0.1和0.02 h⁻¹。基于这些发现,考虑了富腐殖质水生环境中汞非生物转化的可能相关性。

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