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首页> 外文期刊>Mires and Peat >The effect of long-term forestry drainage on the current state of peatland soils: A case study from the Central Sudetes, SW Poland.
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The effect of long-term forestry drainage on the current state of peatland soils: A case study from the Central Sudetes, SW Poland.

机译:长期林业排水对泥炭地土壤现状的影响:以波兰西南苏德特斯为例。

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摘要

One important need in the context of peatland restoration is to gain knowledge of soil organic matter quality and current soil-forming process in degraded peatlands. The aim of this study was to evaluate the impact of long-term drainage on soil transformation processes. In autumn 2012, soil survey and sampling was carried out on five shallow peatlands in the Central Sudeten Mountains (Poland) which had been drained for forestry use in the late 1800s or early 1900s. Four organic soils (Histosols) and one organo-mineral soil (Histic Gleysol) were studied. The surface soil horizons were mainly transformed due to long-term forestry drainage. Increased aeration of these layers had enhanced their content of labile forms of carbon and they were undergoing secondary transformation. Soil transformation was more advanced in fen peatlands than in transitional mire or raised bogs. Only the fens exhibited characteristic evidence of the moorsh-forming process. Further drying of these soils will negatively affect their rewetting potential and significantly reduce the effective application of restoration treatments. In order to reduce organic matter transformation and loss from the investigated peatland areas, their drainage ditches should be blocked. Additionally, some trees should be removed from their central areas to reduce evapotranspiration.
机译:在泥炭地恢复的背景下,一项重要的需求是获得关于退化泥炭地土壤有机质质量和当前土壤形成过程的知识。这项研究的目的是评估长期排水对土壤转化过程的影响。 2012年秋天,对中苏德登山脉(波兰)的五个浅层泥炭地进行了土壤调查和采样,这些泥炭地在1800年代末或1900年代初被排干用于林业。研究了四种有机土壤(Histosol)和一种有机矿物土壤(Histic Gleysol)。表层土壤层位的变化主要是由于长期的林业排水。这些层的增加的通气增加了其不稳定形式的碳的含量,并且它们正在进行二次转化。芬泥炭地的土壤转化比过渡泥潭或抬高的沼泽更先进。只有the显示出沼泽形成过程的特征性证据。这些土壤的进一步干燥将负面影响其重新润湿的潜力,并显着降低恢复处理的有效应用。为了减少有机物的转化和从被调查的泥炭地地区流失,应堵塞其排水沟。此外,应从中心区域移走一些树木,以减少蒸散量。

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