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首页> 外文期刊>Scandinavian Journal of Forest Research >A review of the challenges and opportunities in estimating above ground forest biomass using tree-level models
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A review of the challenges and opportunities in estimating above ground forest biomass using tree-level models

机译:使用树级模型评估地上森林生物量的挑战和机遇

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摘要

Accurate biomass measurements and analyses are critical components in quantifying carbon stocks and sequestration rates, assessing potential impacts due to climate change, locating bio-energy processing plants, and mapping and planning fuel treatments. To this end, biomass equations will remain a key component of future carbon measurements and estimation. As researchers in biomass and carbon estimation, we review the present scenario of aboveground biomass estimation, focusing particularly on estimation using tree-level models and identify some cautionary points that we believe will improve the accuracy of biomass and carbon estimates to meet societal needs. In addition, we discuss the critical challenges in developing or calibrating tree biomass models and opportunities for improved biomass. Some of the opportunities to improve biomass estimate include integration of taper and other attributes and combining different data sources. Biomass estimation is a complex process, when possible, we should make use of already available resources such as wood density and forest inventory databases. Combining different data-sets for model development and using independent data-sets for model verification will offer opportunities to improve biomass estimation. Focus should also be made on belowground biomass estimation to accurately estimate the full forest contribution to carbon sequestration. In addition, we suggest developing comprehensive biomass estimation methods that account for differences in site and stand density and improve forest biomass modeling and validation at a range of spatial scales.
机译:准确的生物量测量和分析是量化碳储量和封存率,评估由于气候变化造成的潜在影响,确定生物能源加工厂的位置以及绘制和规划燃料处理的关键组成部分。为此,生物量方程式将仍然是未来碳测量和估算的关键组成部分。作为生物量和碳估算的研究人员,我们回顾了地上生物量估算的当前情况,尤其侧重于使用树级模型进行估算,并确定了一些警告点,我们认为这将提高生物量和碳估算的准确性以满足社会需求。此外,我们讨论了开发或校准树木生物量模型的关键挑战以及改进生物量的机会。改善生物量估计的一些机会包括锥度和其他属性的集成以及组合不同的数据源。生物量估计是一个复杂的过程,在可能的情况下,我们应利用已经可用的资源,例如木材密度和森林清单数据库。结合不同的数据集进行模型开发并使用独立的数据集进行模型验证将提供改善生物量估算的机会。还应将重点放在地下生物量估算上,以准确估算整个森林对碳固存的贡献。此外,我们建议开发综合的生物量估算方法,以解决站点和林分密度的差异,并在一定的空间范围内改善森林生物量的建模和验证。

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