首页> 外文期刊>Open Journal of Forestry >A Step Closer to Local Carbon Calculations: Growth Timescales and Linear Relationships for Sand Forest and Woodland Tree Species in Maputaland, South Africa
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A Step Closer to Local Carbon Calculations: Growth Timescales and Linear Relationships for Sand Forest and Woodland Tree Species in Maputaland, South Africa

机译:距离本地碳计算更近的一步:南非Maputaland的沙林和林地树种的生长时间表和线性关系

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In Africa, information on time required for plants to develop from seed to mean size and maximum size is scarce. There is also a lack of information regarding accurate relationships between stem diameter, height and canopy dimensions. This type of information is however becoming a real necessity to allow the accurate measurement of carbon stocks and carbon stocks change to qualify for the UNFCCC’s REDD+ mechanism. We evaluated these parameters for 22 Sand Forest and woodland tree species of South Africa’s Maputaland. Results indicated that it takes approximately 66 and 35 years for current dynamics of Sand Forests and woodlands to occur respectively. Based on diameter and growth rates, larger trees of the forests can be older than 600 years, while large woodland trees can reach ages of 900 years. Our evaluation of linear relationships between stem diameter, height and canopy dimensions showed extremely robust results allowing the use of stem diameter to calculate height and canopy dimensions. The results are of interest for carbon related investigations and reconstructing stands dynamics.
机译:在非洲,关于植物从种子发育到平均大小和最大大小所需时间的信息很少。也缺少有关杆直径,高度和冠层尺寸之间的精确关系的信息。但是,此类信息已成为真正必要的工具,它可以准确地测量碳储量和碳储量的变化,以符合UNFCCC的REDD +机制。我们评估了南非Maputaland的22种沙林和林地树种的这些参数。结果表明,目前的沙林和林地动力发生分别需要大约66年和35年。根据直径和生长速度,较大的森林树木可能超过600年,而较大的林地树木则可以达到900年。我们对杆直径,高度和冠层尺寸之间的线性关系的评估显示出非常可靠的结果,允许使用杆直径来计算高度和冠层尺寸。该结果对于碳相关研究和重建林分动力学很有意义。

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