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首页> 外文期刊>Hydrology and Earth System Sciences >Cycling of nutrient base cations in a twelve year old Sitka spruce plantation in upland mid-Wales
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Cycling of nutrient base cations in a twelve year old Sitka spruce plantation in upland mid-Wales

机译:威尔士中部山区一棵有十二年历史的Sitka云杉人工林中养分基础阳离子的循环

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The effects of the early growth of plantation forestry on the biogeochemical cycling of potassium, calcium and magnesium have been investigated in a stand of 12 year old Sitka spruce and adjacent moorland growing on acid peaty podzol soils in mid Wales. Element budgets have been calculated for both systems using measurements of soil and vegetation base cation pools and fluxes. In the moorland, the magnesium budget is approximately at steady-state with no net change to the soil store whilst the soil is accumulating potassium. The calcium budget is approximately balanced but contains significant uncertainties due to between plot variability in calcium leaching losses. Afforestation has greatly increased the above-ground living biomass which holds 7 to 15 times more nutrients compared to the living aerial biomass in the moorland. With the exception of magnesium, the base cation stores within the forest soil are being depleted as the increase in atmospheric deposition due to the forest canopy provides only a small offset to the much larger accumulation of base cations within the trees. The current net rate of change in the soil store of calcium is sustainable for only 65 years. However, as the trees mature, their demand for calcium will be reduced and they should be able to ‘tap' deeper sources of calcium in the soil profile as well as in the drift and regolith material. style="line-height: 20px;">Keywords: Forestry, base cations, element cycling, calcium, magnesium, potassium
机译:在威尔士中部的一个十二岁的锡特卡云杉和生长在酸性豌豆荚z土壤上的邻近高地上,研究了人工林的早期生长对钾,钙和镁的生物地球化学循环的影响。已经使用土壤和植被基础阳离子池和通量的测量值为这两个系统计算了元素预算。在高地中,镁的收支大致处于稳定状态,而土壤中积累的钾却没有改变土壤储藏量。钙的预算大约是平衡的,但由于钙浸出损失的地块之间存在差异,因此存在很大的不确定性。绿化极大地增加了地上生物量,其养分比荒地中的空中生物量高7至15倍。除镁外,森林土壤中的碱性阳离子库正在枯竭,这是由于森林冠层导致的大气沉积增加仅对树木中更大得多的碱性阳离子积累提供了很小的补偿。钙在土壤中的当前净变化率仅可持续65年。但是,随着树木的成熟,对钙的需求将减少,它们应该能够“挖掘”土壤剖面以及漂流和重新碎屑物质中更深层的钙。 style =“ line-height:20px;“> 关键字:林业,基础阳离子,元素循环,钙,镁,钾

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