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首页> 外文期刊>New Forests >Individual tree and stand-level carbon and nutrient contents across one rotation of loblolly pine plantations on a reclaimed surface mine
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Individual tree and stand-level carbon and nutrient contents across one rotation of loblolly pine plantations on a reclaimed surface mine

机译:在回收的表面矿井上的松布柱种植园一次旋转的单个树和级碳和营养物质

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摘要

While reclaimed loblolly pine (Pinus taeda L.) plantations in east Texas, USA have demonstrated similar aboveground productivity levels relative to unmined forests, there is interest in assessing carbon (C) and nutrients in aboveground components of reclaimed trees. Numerous studies have previously documented aboveground biomass, C, and nutrient contents in loblolly pine plantations; however, similar data have not been collected on mined lands. We investigated C, N, P, K, Ca, and Mg aboveground contents for first-rotation loblolly pine growing on reclaimed mined lands in the Gulf Coastal Plain over a 32-year chronosequence and correlated elemental rates to stand age, stem growth, and similar data for unmined lands. At the individual tree level, we evaluated elemental contents in aboveground biomass components using tree size, age, and site index as predictor variables. At the stand-level, we then scaled individual tree C and nutrients and fit a model to determine the sensitivity of aboveground elemental contents to stand age and site index. Our data suggest that aboveground C and nutrients in loblolly pine on mined lands exceed or follow similar trends to data for unmined pine plantations derived from the literature. Diameter and height were the best predictors of individual tree stem C and nutrient contents (R >= 0.9473 and 0.9280, respectively) followed by stand age (R >= 0.8660). Foliage produced weaker relationships across all predictor variables compared to stem, though still significant (P = 0.05). The model for estimating stand-level C and nutrients using stand age provided a good fit, indicating that contents aggrade over time predictably. Results of this study show successful modelling of reclaimed loblolly pine aboveground C and nutrients, and suggest elemental cycling is comparable to unmined lands, thus providing applicability of our model to related systems.
机译:在德克萨斯州东德克萨斯州的新兴洛布利松树(Pinus Taeda L.)种植园,同样展现出类似于未切割的森林的地上的生产率水平,而未被切除的森林有兴趣评估再生树木的地上部件中的碳(C)和营养素。众多研究之前记录了地上生物量,C和稀土化柱种植园的营养物质;但是,尚未在开采的土地上收集类似的数据。我们调查了C,N,P,K,CA和MG地上含量,以进行首次旋转的洛布利松树在海湾沿海平原的再生挖掘土地上,超过32年的一致性和相关的元素率,以获得年龄,茎生长和类似的数据的无频道。在各个树级,我们使用树大小,年龄和站点索引评估了地上生物量组件中的元素内容作为预测变量。在待机状态下,我们将缩放单个树C和营养素并符合模型以确定地上元素内容的灵敏度,以实现年龄和站点索引。我们的数据表明,遗漏土地上的荒地松树的地上C和营养素超过了与文献中未切割的松树种植园的类似趋势。直径和高度是各种树干C和营养含量(r> = 0.9473和0.9280)的最佳预测因子,然后是待机时间(r> = 0.8660)。与茎相比,叶子在所有预测变量中产生较弱的关系,但仍然是显着的(P& = 0.05)。使用Stand Adge估算支架C和营养素的模型提供了良好的拟合,表明内容会随着时间的推移。该研究的结果表明,再生遗失松树地下C和营养成功建模,并提出了元素循环与无线土地相当,因此为我们的模型提供了相关系统的适用性。

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