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首页> 外文期刊>Forest Science >Initial Response of Soil Carbon and Nitrogen to Harvest Intensity and Competing Vegetation Control in Douglas-Fir (Pseudotsuga menziesii) Plantations of the Pacific Northwest
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Initial Response of Soil Carbon and Nitrogen to Harvest Intensity and Competing Vegetation Control in Douglas-Fir (Pseudotsuga menziesii) Plantations of the Pacific Northwest

机译:西北太平洋道格拉斯冷杉(Pseudotsuga menziesii)人工林中土壤碳和氮对收获强度和竞争性植被控制的初始响应

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摘要

We assessed the effect of harvest type (bole-only or whole-tree) and vegetation control treatments (initial or annual application of herbicide) on soil C and N at two contrasting sites in the Pacific Northwest. Pretreatment (2003) and posttreatment (2005) soil samples were collected by depth to 60 cm, and a stratified sampling approach based on four surface conditions was used for posttreatment sampling in surface soils. Surface condition had a significant effect on soil C and N concentrations, generally decreasing with decreasing amounts of logging debris and increasing soil disturbance. There was no difference between harvest treatments in the change in soil C and N content despite differences in surface condition coverage between harvest types, indicating estimates of C and N change determined from the stratification approach were imprecise. Soil C and N content tended to increase regardless of treatment, but increases were significant only in the bole-only harvest at one site and in the whole-tree harvest at the other site. Initial vegetation control caused significantly greater positive change in soil C and N than the annual vegetation control treatment, with effects limited to surface soil at one site and all sample depths at the other site. Much of these increases occurred in deeper (>20 cm) parts of the soil profile, indicating that deep soil sampling is necessary for assessment of harvest-related change in soil C and N. FOR. Sci. 57(1):26-35.
机译:我们评估了西北太平洋两个相对处的采伐类型(纯树或整棵树)和植被控制处理(初次或年度施用除草剂)对土壤C和N的影响。预处理(2003年)和后处理(2005年)按深度采集到60厘米,然后采用基于四个表面条件的分层采样方法对表层土壤进行后采样。地表条件对土壤中的碳和氮浓度有显着影响,通常随着伐木碎片的减少和土壤扰动的增加而降低。尽管收获类型之间的表面条件覆盖范围不同,但收获处理之间土壤碳和氮含量的变化没有差异,这表明通过分层方法确定的碳和氮变化的估算是不精确的。无论采用何种处理方式,土壤中的碳和氮含量均趋于增加,但增加仅在一个地点的仅纯林采伐和另一地点的全树采伐中才有意义。最初的植被控制导致土壤碳和氮的明显正向变化大于年度植被控制处理,其影响仅限于一个地点的表层土壤和另一地点的所有样本深度。这些增加的大部分发生在土壤剖面的更深部分(> 20 cm),这表明需要进行深层土壤采样以评估与土壤C和N相关的收获相关变化。科学57(1):26-35。

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