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Assessing the Effects of Climate Change and Air Pollution on Soil Properties and Plant Diversity in Northeastern U.S. Hardwood Forests: Model Setup and Evaluation

机译:评估气候变化和空气污染对美国铁林森林东北地区土壤性质及植物多样性的影响:模型设置与评价

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摘要

The integrated forest ecosystem model ForSAFE-Veg was used to simulate soil processes and understory vegetation composition at threesugar maple, beech, yellow birchhardwood forest sites in the Northeastern United States (one at Hubbard Brook, NH, and two at Bear Brook, ME). Input data were pooled from a variety of sources and proved coherent and consistent. While the biogeochemical component ForSAFE was used with limited calibration, the ground vegetation composition module Veg was calibrated to field releves. Evaluating different simulated ecosystem indicators (soil solution chemistry, tree biomass, ground vegetation composition) showed that the model performed comparably well regardless of the site's soil condition, climate, and amounts of nitrogen (N) and sulfur (S) deposition, with the exception of failing to capture tree biomass decline at Hubbard Brook. The model performed better when compared with annual observation than monthly data. The results support the assumption that the biogeochemical model ForSAFE can be used with limited calibration and provide reasonable confidence, while the vegetation community composition module Veg requires calibration if the individual plant species are of interest. The study welcomes recent advances in empirically explaining the responses of hardwood forests to nutrient imbalances and points to the need for more research.
机译:Forsafe-veg的综合森林生态系统模型用于在美国东北部(哈贝德布鲁克,NH,NH和Bear Brook,Me)的山毛榉木,黄色Birchhardwood森林景点的土壤过程和林下植被组成。从各种来源汇集输入数据,并证明了连贯和一致。虽然生物地球化学元件FORSAFE与有限的校准一起使用,但地面植被组合模块VEG被校准到现场相关性。评估不同的模拟生态系统指标(土壤溶液化学,树生物质,地面植被组成)表明,无论现场的土壤条件,气候和氮气量和硫(S)沉积,均外,该模型均比较好在Hubbard Brook捕获树生物量下降。与年度数据相比,该模型比每月数据更好。结果支持假设生物地球化学模型FORSAFE可以与有限的校准一起使用,并提供合理的置信度,而植被群落组成模块veg需要校准,如果个体植物物种感兴趣。该研究欢迎近期对实验解释硬木森林对养分失衡的反应,并指出更多研究的需求。

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