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首页> 外文期刊>European journal of forest research >The role of brash in augmenting forest site carbon capitaland maintaining site nutrition in a Sitka spruce forest in Ireland
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The role of brash in augmenting forest site carbon capitaland maintaining site nutrition in a Sitka spruce forest in Ireland

机译:在爱尔兰锡特卡云杉林中,傲慢在增加林地碳资本和维持林地营养方面的作用

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摘要

The decomposition of harvest residues (brash) in managed forests has an important influence on the carbon (C) and nitrogen (N) stocks of these ecosystems. The brash input from thinning events in a 25-year-old Sitka spruce plantation was determined. Alitter-bag method was used to determine the mass loss and decomposition rate of brash left on the forest floor. The changes in C and N concentrations and the C:N ratio of the needles and branches were also monitored as decomposition progressed for 2.5 years. Using the decomposition rate (K_b) and estimated brash inputs, we then determined the total cumulative stock of C that the brash could supply to the deadwood pool over a 41-year rotation period. The three thinning events resulted in the addition of37.99 t C ha~(-1) and 0.61 t N ha~(-1) to the forest floor. A significant mass loss of 44 % was recorded from brash decomposition bags after 2.5 years, with a rapid loss of 35 % in the first year, after which the rate of decomposition slowed. The K_b-value and residence time (95 % decomposition) were 0.311 year~(-1) and 9.6 years, respectively. There was a 69 % increase in the N concentration of needles after 1.5 years, while an increase of 185 % in the N concentration of branches was recorded after 2.5years. The C concentration (48.55 +- 0.20 %) did not differ significantly between the needles and branches over time. The accumulated C stock from decomposing brash at clearfell was estimated at 18.51 t C ha~(-1).
机译:人工林中收割残渣的分解对这些生态系统的碳(C)和氮(N)储量具有重要影响。确定了来自25年的Sitka云杉人工林间伐事件的猛烈输入。使用Alitter-bag方法确定林地上残留的肉的质量损失和分解速率。随着分解过程的进行2.5年,还监测了C和N浓度的变化以及针和分支的C:N比。然后使用分解率(K_b)和估计的果肉输入,确定在41年的轮换期内,果肉可提供给沉木池的C的总累积储量。这三个疏伐事件导致林地增加了37.99 t C ha〜(-1)和0.61 t N ha〜(-1)。在2.5年后,用硬质分解袋记录到质量损失为44%,在第一年迅速损失了35%,此后分解速度减慢了。 K_b值和停留时间(95%分解)分别为0。311年〜(-1)和9。6年。 1.5年后,针叶的N浓度增加了69%,而2.5年后,枝条的N浓度增加了185%。针和分支之间的C浓度(48.55±0.20%)随时间变化不明显。清除果岭的腐烂积累的碳储量估计为18.51 t C ha〜(-1)。

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