Nickel in forests – a short review on its distribution and fluxes

Pub Date : 2021-07-01 DOI:10.2478/foecol-2021-0021
P. Michopoulos
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引用次数: 4

Abstract

Abstract The distribution and cycling of nickel (Ni) in forests is greatly affected by their proximity to emission sources of the metal. The throughfall deposition is always richer in Ni than the bulk deposition. It can be inferred that some dry deposition enriches the throughfall. In remote forested areas, the hydrological fluxes of Ni do not differ a lot from those in litterfall. In addition, the current year needles in conifers have higher concentrations than the older needles, a sign of absorption and mobility of the metal. In contrast, near an industrial Ni source the older needles accumulate much more of the metal. The Ni content in bark tissue can be used to map the deposition distribution of the metal around an area (rural or urban). The concentrations of Ni in forest soils is also dependent on their distances from the Ni emission sources and the nature of the soil parent material. The Ni concentrations increase with soil depth due to the geogenic origin of the metal. Low pH greatly enhances the mobility of the metal in soils, much more than the leachability of organic matter.
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森林中的镍——对其分布和通量的简要回顾
摘要镍(Ni)在森林中的分布和循环在很大程度上受到其与金属排放源接近的影响。通流沉积总是比体相沉积富含Ni。可以推断,一些干沉积丰富了贯穿流。在偏远林区,Ni的水文通量与落叶中的水文通量没有太大差异。此外,针叶树今年的针叶比老针叶的浓度更高,这是金属吸收和流动的迹象。相比之下,在工业镍源附近,较老的针头会积累更多的金属。树皮组织中的镍含量可用于绘制一个地区(农村或城市)周围金属的沉积分布图。森林土壤中镍的浓度也取决于它们与镍排放源的距离和土壤母体物质的性质。由于金属的地质成因,镍浓度随着土壤深度的增加而增加。低pH大大提高了金属在土壤中的流动性,远远超过了有机物的可浸出性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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