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泥炭中金属的活动性/不活动性的实验证据。

Experimental evidence for mobility/immobility of metals in peat.

机构信息

Czech Geological Survey, Geologicka 6, 152 00 Prague 5, Czech Republic.

出版信息

Environ Sci Technol. 2011 Sep 1;45(17):7180-7. doi: 10.1021/es201086v. Epub 2011 Aug 2.

Abstract

The biogeochemical cycles of most toxic metals have been significantly altered by anthropogenic activities. Anaerobic, rain-fed organic soils are believed to record historical changes in atmospheric pollution. Suspected postdepositional mobility of trace elements, however, hinders the usefulness of peat bogs as pollution archives. To lower this uncertainty, we quantified the mobility of six trace metals in peat during an 18-month field manipulation. A replicated, reciprocal peat transplant experiment was conducted between a heavily polluted and a relatively unpolluted peatland, located 200 km apart in the Czech Republic (Central Europe). Both peatlands were Sphagnum-derived, lawn-dominated, and had water table close to the surface. A strikingly different behavior was observed for two groups of elements. Elements of group I, Fe and Mn, adjusted their abundances and vertical patterns to the host site, showing an extremely high degree of mobility. In contrast, elements of group II, Pb, Cu, Zn, and Ti, preserved their original vertical patterns at the host site, showing a high degree of immobility. Our experimental results suggest that not just lead, but also copper and zinc concentration profiles in peat are a reliable archive of temporal pollution changes within a wide pH range (2.5-5.8).

摘要

大多数有毒金属的生物地球化学循环已经被人类活动显著改变。人们认为,厌氧、雨养的有机土壤可以记录大气污染的历史变化。然而,痕量元素的疑似后沉积迁移性阻碍了泥炭沼泽作为污染档案的实用性。为了降低这种不确定性,我们在 18 个月的野外操作中量化了泥炭中六种痕量金属的迁移性。在捷克共和国(中欧)相距 200 公里的一个污染严重和一个相对无污染的泥炭地之间进行了复制的、相互的泥炭移植实验。两个泥炭地都是由水藓形成的,以草地为主,地下水位接近地表。两组元素表现出截然不同的行为。第一组元素,铁和锰,调整了它们的丰度和垂直分布以适应所在地点,表现出极高的迁移性。相比之下,第二组元素,铅、铜、锌和钛,在所在地点保留了其原始的垂直分布模式,表现出高度的不迁移性。我们的实验结果表明,不仅是铅,而且铜和锌在泥炭中的浓度分布曲线在很宽的 pH 值范围内(2.5-5.8)也是时间污染变化的可靠档案。

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