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首页> 外文期刊>The Science of the Total Environment >Soil processes and tree growth at shooting ranges in a boreal forest reflect contamination history and lead-induced changes in soil food webs
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Soil processes and tree growth at shooting ranges in a boreal forest reflect contamination history and lead-induced changes in soil food webs

机译:北方森林射击场的土壤过程和树木生长反映了污染历史和铅引起的土壤食物网的变化

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The effects of shooting-derived lead (Pb) on the structure and functioning of a forest ecosystem, and the recovery of the ecosystem after range abandonment were studied at an active shotgun shooting range, an abandoned shooting range where shooting ceased 20 years earlier and an uncontaminated control site. Despite numerous lead-induced changes in the soil food web, soil processes were only weakly related to soil food web composition. However, decomposition of Scots pine (Pinus sylvestris) needle litter was retarded at the active shooting range, and microbial activity, microbial biomass and the rate of decomposition of Pb-contaminated grass litter decreased with increasing soil Pb concentrations. Tree (P. sylvestris) radial growth was suppressed at the active shooting range right after shooting activities started. In contrast, the growth of pines improved at the abandoned shooting range after the cessation of shooting, despite reduced nitrogen and phosphorus contents of the needles. Higher litter degradation rates and lower Pb concentrations in the topmost soil layer at the abandoned shooting range suggest gradual recovery after range abandonment. Our findings suggest that functions in lead-contaminated coniferous forest ecosystems depend on the successional stage of the forest as well as the time since the contamination source has been eliminated, which affects, e.g., the vertical distribution of the contaminant in the soil. However, despite multiple lead-induced changes throughout the ecosystem, the effects were rather weak, indicating high resistance of coniferous forest ecosystems to this type of stress.
机译:在一个活跃的shooting弹枪射击场,一个废弃的射击场(该射击场在20年前停止了射击)和一个废弃的射击场上研究了射击衍生的铅(Pb)对森林生态系统的结构和功能的影响以及抛弃范围后生态系统的恢复。不受污染的控制地点。尽管铅在土壤食物网中发生了许多变化,但土壤过程与土壤食物网的组成仅存在微弱的关系。然而,在活动射击范围内,樟子松(Pinus sylvestris)针叶凋落物的分解受阻,微生物活性,微生物生物量和被铅污染的草屑的分解率随土壤铅含量的增加而降低。射击活动开始后,树木(P. sylvestris)的径向生长在活动射击范围内受到抑制。相反,在停止射击后,尽管针的氮和磷含量降低,但松树的生长在放弃的射击范围内得到改善。在废弃的射击场中,较高的凋落物降解率和最顶层土壤层中的Pb浓度较低,表明在放弃射程后会逐渐恢复。我们的发现表明,铅污染的针叶林生态系统的功能取决于森林的演替阶段以及污染源被消除以来的时间,这会影响例如土壤中污染物的垂直分布。然而,尽管整个生态系统中由铅引起的多种变化,其影响仍然微弱,表明针叶林生态系统对这种压力具有很高的抵抗力。

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