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首页> 外文期刊>Catena: An Interdisciplinary Journal of Soil Science Hydrology-Geomorphology Focusing on Geoecology and Landscape Evolution >Outcomes of a quantitative analysis of 48 soil chronosequence studies in humid mid and high latitudes: Importance of vegetation in driving podzolization
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Outcomes of a quantitative analysis of 48 soil chronosequence studies in humid mid and high latitudes: Importance of vegetation in driving podzolization

机译:潮湿中高纬度和高纬度研究中48种土酮研究的定量分析结果:植被驾驶潮汐促进的重要性

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摘要

There are various hypotheses on the relative importance of the individual soil-forming factors of Jenny's (1941) functional-factorial approach. The quantitative influence of each soil-forming factor on the expression and rates of soil-forming processes, and in particular the influence of the different factors in combination, have not yet been fully explored. The aim of this study was thus to quantify the influence of the soil-forming factors on the rates of podzolization, using data from 48 studies of soil chronosequences developed in sandy parent materials, located in the humid mid and high latitudes. These studies contained altogether 259 soil profiles of known age, for which we tested existing hypotheses on the influence of different soil-forming factors. The formation of an E horizon and its increase in thickness over time is one of the characteristic features of Podzol formation. As it is one of the few features that was described in all 48 studies, we used it as an indicator of progressive podzolization. Through statistical analysis, we investigated how E horizon thickness is affected by latitude, longitude, mean annual precipitation, mean annual temperature, range between minimum and maximum monthly temperature, annual number of days with frost, vegetation class, sand content, clay content, and soil age.
机译:Jenny(1941)的功能因子分析法对各个土壤形成因素的相对重要性提出了各种假设。每个成土因素对成土过程的表达和速率的定量影响,尤其是不同因素组合的影响,尚未得到充分探索。因此,本研究的目的是利用48项研究中的数据,量化土壤形成因素对灰化速率的影响,这些研究是在潮湿的中高纬度地区的砂质母质中开展的。这些研究共包含259个已知年龄的土壤剖面,我们测试了关于不同土壤形成因素影响的现有假设。E层的形成及其厚度随时间的增加是灰烬形成的特征之一。由于这是所有48项研究中描述的少数特征之一,我们将其用作进行性灰化的指标。通过统计分析,我们研究了纬度、经度、年平均降水量、年平均温度、月最低和最高温度之间的范围、年霜冻天数、植被等级、含砂量、粘土含量和土壤年龄对E层厚度的影响。

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