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首页> 外文期刊>Canadian Journal of Forest Research >A meta-analysis of the effects of clearcut and variable-retention harvesting on soil nitrogen fluxes in boreal and temperate forests.
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A meta-analysis of the effects of clearcut and variable-retention harvesting on soil nitrogen fluxes in boreal and temperate forests.

机译:对北方森林和温带森林中截割和保留保留的收成对土壤氮通量的影响进行荟萃分析。

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摘要

One of the assumed advantages of variable-retention (VR) harvesting over clearcut harvesting is reduced postharvest leaching losses of nitrogen. We test this assumption by synthesizing results from long-term field trials in a meta-analysis. Overall, clearcutting significantly increased soil NO3-N concentration, NO3-N as a proportion of soluble inorganic nitrogen (SIN), N concentration in leachates, N flux, nitrification rates, and pH, but not total N, NH4-N, SIN concentration, ammonification, or N mineralization rate. The proportion of soil NO3-N in deciduous forests increased immediately and returned to preharvest levels within five years; the effect was delayed in coniferous forests, but levels remained elevated for several years. Deciduous leaf litter decomposed faster and needle litter decomposed more slowly on clearcut sites than in uncut forests. Single-tree selection caused smaller changes in NO3-N than removal of groups of trees (i.e., gap creation) and led to smaller increases in NO3-N as a proportion of SIN than clearcut harvesting. High levels of retention (>70%) were required to maintain uncut stand N-cycling characteristics. Postharvest NO3-N levels could be predicted from NO3-N availability in the uncut forests.
机译:可变保留(VR)收割优于纯收割的假定优势之一是减少了收获后氮的浸出损失。我们通过综合荟萃分析中长期田间试验的结果来检验该假设。总体而言,清除土壤显着增加了土壤NO 3 -N浓度,NO 3 -N(以可溶性无机氮(SIN)的比例,渗滤液中的N浓度,N通量,硝化作用)的浓度速率和pH,但不包括总N,NH 4 -N,SIN浓度,氨化或N矿化速率。落叶林中土壤NO 3 -N的比例迅速增加,并在五年内恢复到收获前水平。在针叶林中,这种作用被延迟了,但是水平却持续了好几年。与未砍伐的森林相比,在未砍伐的森林中落叶落叶分解得更快,而针叶分解则分解得更慢。单棵树的选择引起的NO 3 -N的变化要比去除树木组少(即空位形成),并导致NO 3 -N的增加较小。 SIN的比例比完全采伐的比例高。要保持未切割的林分N循环特性,需要高水平的保留(> 70%)。从未砍伐森林中NO 3 -N的可用性可以预测收获后NO 3 -N的水平。

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