首页> 外文期刊>Canadian Journal of Forest Research >Variation in mass and nutrient concentration of leaf litter across years and sites in a northern hardwood forest.
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Variation in mass and nutrient concentration of leaf litter across years and sites in a northern hardwood forest.

机译:北方硬木森林中不同年限和地点的凋落物质量和养分浓度的变化。

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摘要

Leaf litterfall represents an important nutrient flux in forests, but separating leaves by species and collecting fresh litter annually for nutrient analysis is time-consuming and expensive. To quantify the sources of variation in litterfall nutrient estimates and guide optimal allocation of research effort, we analyzed nutrient concentration (5 years) and mass (6 years) of leaf litter for nine tree species in 13 northern hardwood sites. Coefficients of variation (CVs) in nutrient concentration were higher across sites than over time within sites for most elements; phosphorus was especially variable across sites (56% CV). Thus, to estimate litterfall nutrient fluxes accurately in forests of this type, nutrient analyses should be site-specific as well as species-specific but may not need to be repeated annually (CVs over time averaged 17% for calcium, 21% for magnesium, 28% for potassium, and 32% for phosphorus concentration). Total leaf litterfall mass varied considerably from year to year, ranging from 234 to 370 g.m-2 averaged over 13 sites. We recommend that litter collectors be elevated above the ground to avoid oversampling during extreme wind events. Use of species-specific allometric equations, or even basal area, to estimate the species composition of total litter mass may obviate the need to sort litter by species.
机译:树叶凋落物代表森林中重要的养分通量,但是按物种将叶子分开并每年收集新鲜的凋落物以进行养分分析是既费时又昂贵的。为了量化凋落物养分估算中变化的来源并指导研究工作的最佳分配,我们分析了北部13个硬木站点中9种树种的凋落物养分浓度(5年)和质量(6年)。对于大多数元素而言,不同地点的养分浓度变异系数(CV)高于随时间变化的地点。磷在各个站点之间的变化尤其大(CV为56%)。因此,要准确估算此类森林中凋落物的养分通量,养分分析应针对具体地点和针对物种进行分析,但不必每年重复进行(一段时间内的CV平均为钙的17%,镁的21%,钾的含量为28%,磷的含量为32%)。每年的凋落物总质量变化很大,在13个地点平均为234至370 g.m -2 。我们建议将垃圾收集器抬高到地面上方,以免在极端风灾时过度采样。使用特定于物种的异速方程或什至是基础面积来估计总凋落物的物种组成,可以避免按物种对凋落物进行分类的需求。

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