东亚马逊河下游瓜马河河间高原和漫滩演替森林凋落物的物理性质

Julia Isabella de Matos Rodrigues, Walmer Martins Bruno Rocha, Felipe Cardoso de Menezes, F. de Assis Oliveira, Tirza Teixeira Brito
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引用次数: 0

摘要

亚马逊生物群系的森林生态系统对气候调节和提供服务不可或缺。其中,河流平原(ESFpf)因其控制侵蚀和水质的作用而脱颖而出。然而,与河流间高原(ESFpi)相比,这一生态系统的信息有限。因此,本研究旨在评价和比较东部亚马逊流域演替生态系统的凋落物储量和储水量。研究生态系统(ESFpf和ESFpi)位于瓜阿姆河下游地区的帕尔贝尔萨姆市。在每个生态系统中,设置了12个永久地块(100 m²),在降雨量高和低的时期,随机收集3个亚单位的凋落物样本。雨季各生态系统间储水量无显著差异,而少雨季ESFpi(245.91±73.19%)高于ESFpi(182.31±77.25%)。凋落物存量不受季节的影响,两个时期的ESFpi平均值均较高。由此推断,由于有利的环境条件,ESFpf凋落物接触面积减小,蓄水量增大。在ESFpf中发现的较小的存量可以推断出营养物质的有效循环,因为这些生态系统的特点是大量凋落物沉积。因此,研究结果有助于了解亚马逊河平原生态系统的功能过程。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Physical properties of the litter in successional forests of interfluvial plateau and floodplain in the lower Guamá river, Eastern Amazonia
The forest ecosystems of the Amazonia biome are indispensable for climate regulation and service provision. Among them, the fluvial plains (ESFpf) stand out, due to their role in erosion control and water quality. However, the limited information available on this ecosystem is evident when compared to interfluvial plateaus (ESFpi). Thus, this study aimed to evaluate and compare the litter stock and water storage capacity in successional ecosystems in the Eastern Amazonia. The study ecosystems (ESFpf and ESFpi) are located in the municipality of Belém, Pará, in the region of the lower Guamá River. In each ecosystem, 12 permanent plots (100 m²) were installed, where in the periods of higher and lower rainfall, three subunits of litter samples were randomly collected. Water storage in the rainy season did not differ between ecosystems, while in the less rainy season ESFpf (245.91 ± 73.19%) was higher than ESFpi (182.31 ± 77.25%). For the litter stock, there was no influence of seasonality and in both periods the ESFpi averages were higher. Infer that due to the favorable conditions for the action of the edaphic fauna in the ESFpf, there was a reduction in the contact area of the litter, increasing the water storage capacity. The smaller stock found in the ESFpf allow to infer that there was an efficient cycling of nutrients, since these ecosystems are characterized by high litter deposition. Therefore, the results contribute to the understanding of the functional processes of the Amazon river plains ecosystems.
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