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首页> 外文期刊>Journal of plant nutrition and soil science >Acidity, nutrient stocks, and organic-matter content in soils of a temperate deciduous forest with different abundance of European beech(Fagus sylvatica L.)
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Acidity, nutrient stocks, and organic-matter content in soils of a temperate deciduous forest with different abundance of European beech(Fagus sylvatica L.)

机译:不同丰度欧洲山毛榉(Fagus sylvatica L.)的温带落叶林土壤中的酸度,养分储量和有机质含量

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The production and composition of leaf litter, soil acidity, exchangeable nutrients, and the amount and distribution of soil organic matter were analyzed in a broad-leaved mixed forest on loess over limestone in Central Germany. The study aimed at determining the current variability of surface-soil acidification and nutrient status, and at identifying and evaluating the main factors that contributed to the variability of these soil properties along a gradient of decreasing predominance of European beech (Fagus sylvatica L.) and increasing tree-species diversity. Analyses were carried out in (1) mature monospecific stands with a predominance of beech (DL 1), (2) mature stands dominated by three deciduous-tree species (DL 2: beech, ash [Fraxinus excelsior L.], lime [Tilia cordata Mill. and/or T. platyphyllos Scop.]), and (3) mature stands dominated by five deciduous-tree species (DL 3: beech, ash, lime, hornbeam [Carpinus betulus L.], maple [Acer pseudoplatanus L. and/or A. platanoides L.]). The production of leaf litter was similar in all stands (3.2 to 3.9 Mg dry matter ha–1 y–1) but the total quantity of Ca and Mg deposited on the soil surface by leaf litter increased with increasing tree-species diversity and decreasing abundance of beech (47 to 88 kg Ca ha–1 y–1; 3.8 to 7.9 kg Mg ha–1 y–1). The soil pH(H2O) and base saturation (BS) measured at three soil depths down to 30cm (0–10 cm, 10–20 cm, 20–30 cm) were lower in stands dominated by beech (pH = 4.2 to 4.4, BS = 15% to 20%) than in mixed stands (pH = 5.1 to 6.5, BS = 80% to 100%). The quantities of exchangeable Al and Mn increased with decreasing pH and were highest beneath beech. Total stocks of exchangeable Ca (0–30 cm) were 12 to 15 times larger in mixed stands (6660 to 9650 kg ha–1) than in beech stands (620 kg ha–1). Similar results were found for stocks of exchangeable Mg that were 4 to 13 times larger in mixed stands (270 to 864 kg ha–1) than in beech stands (66 kg ha–1). Subsoil clay content and differences in litter composition were identified as important factors that contributed to the observed variability of soil acidification and stocks of exchangeable Ca and Mg. Organic-C accumulation in the humus layer was highest in beech stands (0.81 kg m–2) and lowest in stands with the highest level of tree-species diversity and the lowest abundance of beech (0.27 kg m–2). The results suggest that redistribution of nutrients via leaf litter has a high potential to increase BS in these loess-derived surface soils that are underlain by limestone. Species-related differences of the intensity of soil–tree cation cycling can thus influence the rate of soil acidification and the stocks and distribution of nutrients.
机译:在德国中部石灰岩上黄土的阔叶混交林中分析了凋落物的产生和组成,土壤酸度,可交换的养分以及土壤有机质的数量和分布。这项研究旨在确定当前表面土壤酸化和养分状况的变异性,并确定和评估造成这些土壤特性沿欧洲山毛榉(Fagus sylvatica L.)和不断增加的树种多样性。在(1)以山毛榉为主的成熟单特异性林分(DL 1)中进行了分析,(2)由三种落叶树种(DL 2:山毛榉,白蜡[Fraxinus excelsior L.],石灰[Tilia]为主的成熟林分(3)五个落叶树种(DL 3:山毛榉,灰,石灰,角树[Carpinus betulus L.],枫树[Acer pseudoplatanus L] 。在所有林分中,凋落物的产量都相似(3.2至3.9 Mg干物质ha-1 y-1),但随着树种多样性的增加和丰度的降低,由凋落物沉积在土壤表面的Ca和Mg总量增加的山毛榉(47至88千克Ca ha-1 y-1; 3.8至7.9千克Mg ha-1 y-1)。在以山毛榉为主的林分中,在低至30厘米(0–10厘米,10–20厘米,20–30厘米)的三种土壤深度下测得的土壤pH(H2O)和基本饱和度(BS)较低(pH = 4.2至4.4, BS = 15%至20%),而不是混合林(pH = 5.1至6.5,BS = 80%至100%)。可交换的Al和Mn的含量随pH的降低而增加,在山毛榉下最高。混合林(6660至9650 kg ha-1)中可交换的Ca(0–30 cm)总储量比山毛榉林(620 kg ha-1)大12至15倍。对于可交换的镁库存,发现了相似的结果,混合林(270至864 kg ha-1)比山毛榉林(66 kg ha-1)大4至13倍。地表下粘土含量和凋落物组成的差异被认为是导致土壤酸化和可交换的钙和镁储量变化的重要因素。腐殖质层中的有机碳积累在山毛榉林中最高(0.81 kg m–2),在树种多样性最高,山毛榉丰度最低(0.27 kg m–2)的林中最低。结果表明,通过这些凋落物的养分再分配在这些由石灰石覆盖的黄土源性表层土壤中具有很高的增加BS的潜力。与物种有关的土壤-树状阳离子循环强度的差异可以影响土壤酸化的速率以及养分的储量和分布。

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