首页> 外文期刊>Canadian Journal of Forest Research >Nutrient cycling in two continuous cover scenarios for forest conversion of pine plantations on sandy soil. II. Nutrient cycling via throughfall deposition and seepage flux
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Nutrient cycling in two continuous cover scenarios for forest conversion of pine plantations on sandy soil. II. Nutrient cycling via throughfall deposition and seepage flux

机译:在两个连续的覆盖情景中,养分循环用于在砂质土壤上进行松树人工林的森林转化。二。通过穿透沉积和渗流通量的养分循环

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This study examined ion throughfall deposition and seepage fluxes in silver birch (Betula pendula L.) and Scots pine (Pinus sylvestris L.) regenerations a decade after a forest conversion intervention in two continuous cover scenarios (shelterwood cut versus group cut), as well as a 70-year-old control stand of Scots pine. Ion throughfall deposition was significantly influenced by the conversion scenario, being higher in the shelterwood cut than in the group cut. Compared with the control stand, nitrogen and acidifying throughfall deposition was significantly lower (-60%) in all regeneration types except for the birch regeneration under shelter. After shelter removal, ion throughfall deposition was significantly lower in all regeneration types than in the control stand. Seepage of NO3- and SO42- was significantly affected by the tree species, being higher in the birch than the pine regenerations, and SO42- seepage was significantly higher under shelter than in the group cut. After shelter removal, neither tree species nor scenario influenced the SO42- seepage, whereas the tree species still affected NO3- seepage. We conclude that the chosen forest conversion scenario is of profound influence on the ion throughfall and seepage fluxes during the first phase of a forest conversion process.
机译:这项研究检查了森林转化干​​预后十年连续两次覆盖情况下(s木砍伐与成群砍伐)以及白桦(Betula pendula L.)和苏格兰松树(Pinus sylvestris L.)再生过程中离子穿透落的沉积和渗透通量。作为具有70年历史的苏格兰松树的对照林。离子穿透降落的沉积受转换方案的影响很大,在shelter木切割中比在组切割中高。与对照林相比,除庇护所下的桦木再生外,所有再生类型中的氮和酸化贯通降雨沉积物均显着降低(-60%)。去除遮蔽物后,所有再生类型的离子穿透落下显着低于对照林。树木对NO3-和SO42-的渗透影响显着,桦木高于松树的再生,而遮荫下SO42-的渗透显着高于群伐。去除遮蔽物后,树种和情景均未影响SO42的渗透,而树种仍影响了NO3的渗透。我们得出结论,在森林转化过程的第一阶段,所选的森林转化方案对离子穿透和渗透通量具有深远的影响。

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