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Weathering of soil minerals by angiosperm and gymnosperm trees

机译:被子植物和裸子植物对土壤矿物的风化作用

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Weathering of terrestrial Ca- and Mg-bearing silicate minerals is an important control on atmospheric CO_2 on geological time scales. It has been determined that vascular plants can accelerate mineral weathering as compared to non-vascular plants or non-vegetated surfaces. This indicates that the evolution of vascular plants, particularly the deep-rooted trees, may play a large role in the long-term carbon cycle and its regulation of the atmosphere. The weathering impact of the separate evolutionary appearances of the gymnosperms in the Palaeozoic and the angiosperms in the Mesozoic, and the shifting ecological dominance from the former to the latter, is currently poorly understood. This study aims to contribute to our understanding of the quantitative weathering rates of the angiosperms and gymnosperms by examining plant-mineral interactions of the two tree types in a temperate field setting underlain by granodiorite. Results include determinations of soil element fluxes and etching of minerals. The observed root-mineral interactions resulted in only slightly more weathering of Ca-bearing minerals by the angiosperms. However, we observed significantly more weathering of the Mg-bearing minerals by the gymnosperms. These results suggest that increasing dominance of the angiosperms in forests in the Mesozoic may have had a small or neutral impact on accelerating overall mineral weathering and regulating CO_2, but that this impact may be lithology-dependent.
机译:在地质时间尺度上,陆生含钙和镁的硅酸盐矿物的风化是控制大气中CO_2的重要控制。已经确定,与非维管植物或非植被表面相比,维管植物可以加速矿物风化。这表明维管植物的进化,尤其是根深蒂固的树木,可能在长期碳循环及其对大气的调节中起重要作用。目前,人们对古生代裸子植物和中生代被子植物分别进化外观的风化影响以及生态优势从前者向后者的转移了解得很少。这项研究的目的是通过检查在花岗闪长岩下的温带环境中两种树类型的植物-矿物相互作用来帮助我们了解被子植物和裸子植物的定量风化率。结果包括确定土壤元素通量和蚀刻矿物。观察到的根矿交互作用导致被子植物对含钙矿物的风化作用仅稍多一些。但是,我们观察到裸子植物对含镁矿物的风化作用明显增加。这些结果表明,中生代森林中被子植物优势的增加可能对加速整体矿物风化和调节CO_2产生了较小或中性的影响,但这种影响可能与岩性有关。

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