首页> 外文期刊>Geoscientific Model Development >CoupModel (v6.0): an ecosystem model for coupled phosphorus, nitrogen, and carbon dynamics – evaluated against empirical data from a climatic and fertility gradient in Sweden
【24h】

CoupModel (v6.0): an ecosystem model for coupled phosphorus, nitrogen, and carbon dynamics – evaluated against empirical data from a climatic and fertility gradient in Sweden

机译:COUPMODEL(V6.0):用于偶联磷,氮和碳动力学的生态系统模型 - 从瑞典的气候和生育梯度的经验数据评估

获取原文
获取外文期刊封面目录资料

摘要

This study presents the integration of the phosphorus (P) cycle into CoupModel (v6.0, referred to as Coup-CNP). The extended Coup-CNP, which explicitly considers the symbiosis between soil microbes and plant roots, enables simulations of coupled carbon (C), nitrogen (N), and P dynamics for terrestrial ecosystems. The model was evaluated against observed forest growth and measured leaf C∕P , C∕N , and N∕P ratios in four managed forest regions in Sweden. The four regions form a climatic and fertility gradient from 64 ° ?N (northern Sweden) to 56 ° ?N (southern Sweden), with mean annual temperature varying from 0.7–7.1? ° C and soil C∕N and C∕P ratios varying between 19.8–31.5 and 425–633, respectively. The growth of the southern forests was found to be P-limited, with harvested biomass representing the largest P losses over the studied rotation period. The simulated P budgets revealed that southern forests are losing P, while northern forests have balanced P budgets. Symbiotic fungi accounted for half of total plant P uptake across all four regions, which highlights the importance of fungal-tree interactions in Swedish forests. The results of a sensitivity analysis demonstrated that optimal forest growth occurs at a soil N∕P ratio between 15–20. A soil N∕P ratio above 15–20 will result in decreased soil C sequestration and P leaching, along with a significant increase in N leaching. The simulations showed that Coup-CNP could describe shifting from being mostly N-limited to mostly P-limited and vice versa. The potential P-limitation of terrestrial ecosystems highlights the need for biogeochemical ecosystem models to consider the P cycle. We conclude that the inclusion of the P cycle enabled the Coup-CNP to account for various feedback mechanisms that have a significant impact on ecosystem C sequestration and N leaching under climate change and/or elevated N deposition.
机译:本研究介绍了磷(P)循环到CoupModel(V6.0,称为COUP-CNP)的整合。扩展的COUP-CNP,其明确地考虑了土壤微生物和植物根系之间的共生,能够模拟陆地生态系统的偶联碳(C),氮气(N)和P动力学。在瑞典的四个管理林区中评估了观察到的森林生长和测量叶C / P,C / N和N / P比的模型。这四个地区从64°(瑞典北部)到56°(瑞典南部),形成了气候和生育率梯度,平均年温度从0.7-7.1改变? °C和土壤C / N和C / P比分别在19.8-31.5和425-633之间变化。发现南部森林的生长是P限制的,采集的生物质代表研究的旋转周期上最大的P损失。模拟的P预算显示南方森林正在失去P,而北方森林有平衡的P预算。 Symbiotic真菌占所有四个地区的植物总量的一半,这凸显了瑞典森林中真菌树互动的重要性。敏感性分析的结果表明,在15-20之间的土壤n / p比率下发生最佳森林生长。在15-20高于15-20的土壤n / p比率将导致土壤中的螯合和p浸出减少,以及N浸出的显着增加。模拟表明,COUP-CNP可以描述转移大多数限制为主要是P限制,反之亦然。陆地生态系统的潜在限制突出了对生物地球化学生态系统模型的需求来考虑P循环。我们得出结论,包含P循环使COUP-CNP能够考虑各种反馈机制,这些反馈机制对生态系统C螯合作用显着影响,并且在气候变化和/或升高的N沉积下浸出。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号