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Immobilization Of Mercury By Pyrite (fes_2)

机译:硫铁矿固定汞(fes_2)

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Elemental mercury (Hg~0) is a metal with a number of atypical properties, which has resulted in its use in myriad anthropogenic processes. However, these same properties have also led to severe local subsurface contamination at many places where it has been used. As such, we studied the influence of various parameters on Hg(II) sorption onto pyrite (pH, time, Hg(II) concentration), a potential subsurface reactive barrier. Batch sorption studies revealed that total Hg(II) removal increases with both pH and time. X-ray absorption spectroscopy analysis showed that a transformation in the coordination environment at low pH occurred during aging over 2 weeks, to form an ordered monolayer of mono-dentate Hg-Cl complexes on pyrite. In column studies packed with pure quartz sand, the transport of Hg(II) was significantly retarded by the presence of a thin pyrite-sand reactive barrier, although dissolved oxygen inhibited Hg(II) sorption onto pyrite in the column.
机译:元素汞(Hg〜0)是一种具有许多非典型性质的金属,已导致其在各种人为过程中使用。但是,这些相同的特性还导致在许多使用它的地方都受到严重的局部地下污染。因此,我们研究了各种参数对Hg(II)在黄铁矿上的吸附(pH,时间,Hg(II)浓度)的影响,这是一种潜在的地下反应障碍。分批吸附研究表明,总的Hg(II)去除量随pH和时间的增加而增加。 X射线吸收光谱分析表明,在2周的老化过程中,低pH值的配位环境发生了转变,在黄铁矿上形成了有序的单齿Hg-Cl络合物单层。在填充了纯石英砂的色谱柱研究中,尽管存在溶解的氧气抑制了Hg(II)吸附到色谱柱中的黄铁矿上,但由于存在薄的黄铁矿-砂反应性屏障,Hg(II)的传输被显着阻碍了。

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