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在一个金属污染的地点,分解的树落叶中的金属和养分动态。

Metal and nutrient dynamics in decomposing tree litter on a metal contaminated site.

机构信息

Forest & Nature Lab, Department of Forest and Water Management, Ghent University, Geraardsbergsesteenweg 267, B-9090 Melle, Belgium.

Faculty of Applied Bioscience Engineering, University College Ghent, Ghent University Association, Schoonmeersstraat 52, B-9000 Ghent, Belgium.

出版信息

Environ Pollut. 2014 Jun;189:54-62. doi: 10.1016/j.envpol.2014.02.009. Epub 2014 Mar 14.

Abstract

In a forest on sandy, metal polluted soil, we examined effects of six tree species on litter decomposition rates and accompanied changes in metal (Cd, Zn) and nutrient (base cations, N, C) amounts. Decomposition dynamics were studied by means of a litterbag experiment lasting for 30 months. The decomposition peak occurred within the first year for all tree species, except for aspen. During litter decomposition, high metal litter types released part of their accumulated metals, whereas low metal litter types were characterized by a metal enrichment. Base cations, N and C were released from all litter types. Metal release from contaminated litter might involve risks for metal dispersion towards the soil. On the other hand, metal enrichment of uncontaminated litter may be ecologically relevant as it can be easily transported or serve as food source.

摘要

在沙质、金属污染的土壤上的森林中,我们研究了六种树种对凋落物分解速率的影响,以及伴随的金属(Cd、Zn)和养分(碱基阳离子、N、C)含量的变化。通过持续 30 个月的凋落物袋实验研究了分解动态。除了白杨外,所有树种的分解高峰期都在第一年。在凋落物分解过程中,高金属型凋落物释放了部分积累的金属,而低金属型凋落物则表现出金属富集。所有凋落物类型都释放了碱基阳离子、N 和 C。受污染凋落物中金属的释放可能会对金属向土壤扩散带来风险。另一方面,未受污染凋落物的金属富集可能具有生态相关性,因为它可以很容易地被运输或作为食物来源。

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