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首页> 外文期刊>Environmental Monitoring and Assessment >RELATIONSHIP BETWEEN BASAL SOIL RESPIRATION RATE, TREE STAND AND SOIL CHARACTERISTICS IN BOREAL FORESTS
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RELATIONSHIP BETWEEN BASAL SOIL RESPIRATION RATE, TREE STAND AND SOIL CHARACTERISTICS IN BOREAL FORESTS

机译:针叶林基层土壤呼吸速率,林分与土壤特性之间的关系

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摘要

Soil respiration is considered to represent the overall microbial activity reflecting mineralisation of organic matter in soil. It is the most commonly used biological variable in soil studies. In long-term monitoring of forested areas, there is a need for reference values for soil microbiological variables in different forest ecosystems. In this study we describe the relationship between soil respiration rate, tree stand and humus chemical characteristics of boreal coniferous forests stands. Soil respiration rate was higher in pine dominated than in spruce dominated study sites when the result was calculated on dry matter bases. However, when calculated on area bases, the result was opposite and no difference was found when the soil respiration rate was calculated on organic carbon bases. Irrespective of the main tree species, the soil respiration rate was equal in different development classes but not equal in soil fertility classes, i.e. within forest site types based on differences in ground vegetation. Respiration rates were clearly higher in mesic sites when calculated on dry matter, C_(org) or area bases. However, soil respiration rate did not correlate with soil chemical variables indicating site fertility. Soil respiration rate on dry matter basis was at a lower level in the south and on more fertile sites, and on the other hand at a higher level in older stands and on sites with a thicker organic layer.
机译:土壤呼吸被认为代表了反映微生物有机物在土壤中矿化的整体微生物活性。它是土壤研究中最常用的生物变量。在对森林地区的长期监测中,需要获得不同森林生态系统中土壤微生物变量的参考值。在这项研究中,我们描述了土壤呼吸速率,乔木林和北方针叶林林木腐殖质化学特性之间的关系。当以干物质为基础计算结果时,以松树为主的研究地区的土壤呼吸速率高于以云杉为主的研究场所。但是,以面积为基础计算时,结果是相反的,以有机碳为基础计算土壤呼吸速率时,没有发现差异。与主要树种无关,不同发展类别的土壤呼吸速率相等,但土壤肥力类别的土壤呼吸速率不同,即基于地面植被差异的林地类型内的土壤呼吸速率不同。按干物质,C_(org)或面积基准计算,在内陆部位的呼吸速率明显更高。但是,土壤呼吸速率与表明站点肥力的土壤化学变量不相关。在南部和更肥沃的地区,以干物质为基础的土壤呼吸速率较低,而在较老的林分和有机层较厚的地区,土壤呼吸速率较高。

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