首页> 外文期刊>Catena: An Interdisciplinary Journal of Soil Science Hydrology-Geomorphology Focusing on Geoecology and Landscape Evolution >Soil C:N:P stoichiometry in tropical forests on Hainan Island of China: Spatial and vertical variations
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Soil C:N:P stoichiometry in tropical forests on Hainan Island of China: Spatial and vertical variations

机译:土壤C:N:中国海南岛热带森林的P优势:空间和垂直变化

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摘要

Soil carbon (C), nitrogen (N), and phosphorus (P) are three important elements. The study of stoichiometric relationships of soil C, N, and P in tropical forests on Hainan Island, China could improve our understanding of nutrient cycling and provide valuable information for forest management. Soil samples were collected at five different depths from 0 to 100 cm at 100 sites among four different forest types on Hainan Island, and total C, N, and P concentrations were measured. Soil C and N concentrations and soil C:P and N:P ratios declined from the surface soil layer to the deeper soil layers and soil P and C:N ratio had relatively small variations among different depths, due to that soil C and N were mostly controlled by biological processes such as photosynthesis and N-2-fixation, while P was more influenced by bedrock. Large spatial variations were found for soil C, N, P concentrations and their ratios. Soil C and N concentrations were significantly influenced by longitude and vegetation cover, while soil P concentration and C:P and N:P ratios were significantly controlled by latitude. This study produced a comprehensive data set of soil C, N, and P stoichiometry, and their variation patterns and controls in the tropical forests. The information generated here could help improve ecosystem models for better understanding of forest element stoichiometry, ecosystem productivity, and plant-environment relationships.
机译:土壤碳(C)、氮(N)和磷(P)是三种重要元素。研究海南岛热带森林土壤C、N和P的化学计量关系,可以提高我们对养分循环的理解,为森林管理提供有价值的信息。在海南岛四种不同森林类型的100个地点,从0到100厘米的5个不同深度采集土壤样本,并测量总C、N和P浓度。土壤C和N浓度以及土壤C:P和N:P比率从表层到深层呈下降趋势,土壤P和C:N比率在不同深度之间的变化相对较小,因为土壤C和N主要受光合作用和N-2固定等生物过程控制,而P更受基岩的影响。土壤C、N、P浓度及其比值存在较大的空间变异。土壤C和N浓度显著受经度和植被覆盖度的影响,而土壤P浓度和C:P和N:P比值显著受纬度的控制。这项研究产生了一套关于热带森林土壤C、N和P化学计量及其变化模式和控制的综合数据集。这里产生的信息可以帮助改进生态系统模型,以便更好地理解森林元素的化学计量、生态系统生产力和植物与环境的关系。

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