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Allometric equations for estimating the aboveground volume of five common urban street tree species in Daegu, Korea

机译:用于估计韩国大邱五种常见城市街道树种地上容积的等速方程

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Quantifying urban tree biomass and carbon (C) storage by using allometric equations is required for various studies such as assessing the inventory, modelling, and measuring ecosystem services of urban trees. However, the lack of urban-specific allometric equations leads to uncertainty when estimating urban tree biomass and C storage. Therefore, we followed a nondestructive approach and developed allometric equations specifically for Acer buergerianum Miq., Ginkgo biloba L, Platanus orientalis L, Prunus yedoensis Matsum., and Zelkova serrata (Thunb.) Makino in Daegu, Korea. Diameter at breast height (DBH)-based and DBH-and-height-based allometric equations were highly accurate at estimating the aboveground volume (R2 > 0.92), while the allometric equations for P. orientalis and Z. serrata developed for traditional forests overestimated volume by 68% and 427%, respectively. The addition of a height variable into the DBH-based allometric equations did not increase the reliability of the allometric equations at a local level. The mean aboveground C storage of urban street trees was 24.9 Mg C/ha except for P. orientalis with a mean of 69.7 Mg C/ha, and the total aboveground C storage of urban street trees in Daegu was 10.6 GgC. Alternatively, a generalized allometric equation which compiled species-specific equations can be applied for large-scale estimation. The generalized equations developed in this study and those found in the literature may suggest a constant value (~2.3-2.4) for the scaling exponent in the generalized equations. Allometric equations developed from natural or artificial stands may overestimate the volume of urban street trees; therefore, estimating urban tree biomass and C storage requires urban-specific allometric equations.
机译:对于各种研究(例如评估城市树木的清单,建模和测量其生态系统服务),需要使用异速方程来量化城市树木的生物量和碳(C)的存储量。但是,缺乏城市特定的测速方程会导致在估计城市树木生物量和碳储量时存在不确定性。因此,我们采用了一种非破坏性方法,专门针对韩国大邱的Acer buergerianum Miq。,银杏L,Platanus Orientalis L,Prunus yedoensis Matsum。和Zelkova s​​errata(Thunb。Makaki)Makino开发了等速方程。基于胸高(DBH)和基于DBH和身高的异径方程在估算地上体积时非常准确(R2> 0.92),而针对传统森林开发的P. Orientalis和S. serrata异径方程被高估了销量分别增长了68%和427%。在基于DBH的测长方程中添加高度变量并没有增加局部水平上的测长方程的可靠性。除东方侧柏的平均地上碳储量为69.7 Mg C / ha外,城市街树的平均地上C储量为24.9 Mg C / ha,大邱市的城市街树的地上C总储量为10.6 GgC。可替代地,可以将编译了物种特定方程式的广义异速方程用于大规模估计。在这项研究中开发的广义方程和在文献中发现的那些方程可能会为广义方程中的比例指数提出一个恒定值(〜2.3-2.4)。从天然林或人工林开发的异速方程可能会高估城市街道树木的体积;因此,估算城市树木生物量和碳储量需要特定于城市的异速方程。

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