首页> 外文期刊>Ecological Modelling >Analysis of O-F-layer humus mass variation in a mixed stand of European beech and Norway spruce: An application of structural equation modelling
【24h】

Analysis of O-F-layer humus mass variation in a mixed stand of European beech and Norway spruce: An application of structural equation modelling

机译:欧洲山毛榉和挪威云杉混合林中O-F层腐殖质质量变化的分析:结构方程模型的应用

获取原文
获取原文并翻译 | 示例
           

摘要

A number of different research approaches have been used to investigate the influence of tree species on the particular ecological parameters in mixed forest stands. While it is widely recognized that trees have species-specific effects on particular resources like radiation, water and nutrients more interacting effects of mixtures are assumed to exist. In this paper we examine the spatial variation of humus mass in a mixed stand and discuss the influence of specific spatial factors on humus mass variation. Our study site is located in the Solling area, an intermediate mountain range in the south of Lower Saxony in Germany. It is located in a 130-140-year-old European beech (Fagus sylvatica L.) and Norway spruce (Picea abies (L). Karst.) mixed stand. To better understand processes which determine amount of humus mass variation within mixed stands of European beech and Norway spruce we measured humus mass of the O-F and ecological factors at sample points (litter fall of beech and spruce, radiation, and precipitation beneath the forest canopy). we used a structural equation model (SEM) to analyse data for the effect of species-specific litter input, radiation and throughfall on humus mass variation. Additional to classical regression approaches SEM enables us to consider latent, non-observed, factors or variables. In this paper we present a special SEM, a so-called linear structural relationship (LISREL) model, showing how self-formulated latent variables like "decomposition environment" and "decomposition inhibition" affect the humus mass of the O-F layer. Latent structures are of great importance in order to understand and analyse processes determining humus mass variation. In our model, "latent variables" are identified, which explain the contribution of measured variables to improvement or deterioration of humus decomposition, and hence more or less accumulation of organic material in the surface humus layers, in our case the OF layer. Spruce needle input impedes humus dynamics, while beech leaf litter input and higher throughfall amounts show supporting effects. These model results are in agreement with formerly reported findings, but yield further an interval-scaled combined measure which is better founded and more comprehensive than earlier descriptive approaches to the single ecological factors involved. Besides of the ecological interpretation of the results we succeed in determining a valid structural equation model taking into account all relevant ecological factors of humus decomposition.
机译:已经使用了许多不同的研究方法来研究树木物种对混合林分中特定生态参数的影响。尽管人们普遍认为树木对特定资源(例如辐射,水和养分)具有特定物种的影响,但人们认为混合物还存在更多的相互作用。在本文中,我们研究了混交林中腐殖质质量的空间变化,并讨论了特定空间因素对腐殖质质量变化的影响。我们的研究地点位于德国下萨克森州南部的中间山脉索林(Solling)地区。它位于具有130-140年历史的欧洲山毛榉(Fagus sylvatica L.)和挪威云杉(Picea abies(L)。Karst。)混合林中。为了更好地了解确定欧洲山毛榉和挪威云杉混合林中腐殖质质量变化量的过程,我们在采样点(山毛榉和云杉的凋落物,辐射和森林冠层下的降水)测量了OF的腐殖质质量和生态因子。 。我们使用结构方程模型(SEM)来分析数据,以了解特定种类的垃圾输入,辐射和穿透对腐殖质质量变化的影响。除了经典回归方法外,SEM还使我们能够考虑潜在的,未观察到的因素或变量。在本文中,我们提出了一种特殊的SEM,即所谓的线性结构关系(LISREL)模型,该模型显示了诸如“分解环境”和“分解抑制”之类的自我形成的潜在变量如何影响O-F层的腐殖质。潜在结构对于理解和分析确定腐殖质质量变化的过程非常重要。在我们的模型中,确定了“潜在变量”,这解释了测量变量对腐殖质分解的改善或恶化的贡献,因此解释了腐殖质表层(在我们的情况下为OF层)中有机材料的或多或少的积累。云杉针输入阻碍了腐殖质的动态,而山毛榉叶凋落物输入和更高的穿透量显示出辅助作用。这些模型结果与以前报道的发现相符,但是进一步产生了一种间隔尺度的组合度量,该度量比早期对涉及的单个生态因子的描述方法具有更好的基础和更全面的意义。除了对结果进行生态解释外,我们还成功地确定了有效的结构方程模型,其中考虑了腐殖质分解的所有相关生态因素。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号