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Estimation of annual spatial variations in forest production and crop yields at landscape scale in temperate climate regions

机译:在温带气候区景观规模上森林产量和作物产量的年度空间变化估计

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摘要

Simulating regional variations in gross primary production (GPP) and yields of major land cover types is complex due to differences in plant physiological properties, landscape topography, and climate gradients. In our study, we analyzed the inter-annual and inter-regional variation, as well as the effect of summer drought, on gross primary production and crop yields of 9 major land uses within the state-funded Bioenergy Region Bayreuth in Germany. We developed a simulation framework using a process based model which accounts for variations in both CO_2 gas exchange, and in the case of crops, growth processes. The results indicated a severe impact of summer drought on GPP, particularly of forests and grasslands. Yields of winter crops, early planted summer grain crops as well as the perennial 2nd generation biofuel crop Silphium perfoliatum, on the other hand, were buffered despite drought by comparatively mild winter and spring temperatures. We estimated regional yield increases from SW to NE, suggesting a comparative advantage for these crops in the cooler and upland part of the region. In contrast, grasslands and annual summer crops such as maize and potato did not exhibit any apparent regional pattern in the simulations. The 2nd generation bioenergy crop exhibited significantly higher GPP and yields compared to the conventional bioenergy crop maize, suggesting that cultivation of S. perfoliatum should be increased for economic and environmental reasons, but additional study of the growth of S. perfoliatum is still required.
机译:由于植物生理特性,景观地形和气候梯度的差异,因此模拟主要初级生产(GPP)和主要土地覆盖类型的产量的区域变化非常复杂。在我们的研究中,我们分析了国家资助的德国拜罗伊特生物能源地区内9种主要土地利用的年际和区域间变化以及夏季干旱对9种主要土地利用的总初级生产和作物产量的影响。我们使用基于过程的模型开发了一个模拟框架,该模型考虑了CO_2气体交换以及农作物生长过程中的变化。结果表明夏季干旱严重影响了GPP,特别是森林和草原。另一方面,尽管冬季和春季温度相对温和,尽管干旱,冬季作物,早期播种的夏季谷物作物以及多年生第二代生物燃料作物Silphium perfoliatum的产量仍受到缓冲。我们估计从西南部到东北部地区的单产增加,表明这些作物在该地区较凉爽和高地部分具有比较优势。相反,在模拟中,草地和诸如玉米和马铃薯的夏季作物没有表现出任何明显的区域格局。与常规生物能源作物玉米相比,第二代生物能源作物表现出显着更高的GPP和单产,这表明出于经济和环境原因,应增加对满叶葡萄链球菌的种植,但仍需要对满叶葡萄链球菌生长的进一步研究。

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