首页> 外文期刊>Australian Journal of Soil Research >Spatial variability of soil carbon, nitrogen, and phosphorus content and storage in an alpine wetland in the Qinghai-Tibet Plateau, China.
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Spatial variability of soil carbon, nitrogen, and phosphorus content and storage in an alpine wetland in the Qinghai-Tibet Plateau, China.

机译:青藏高原高寒湿地土壤碳,氮,磷含量的空间变异与储量

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摘要

This study considers the spatial variability of soil organic carbon, nitrogen, and phosphorus storage in a drained alpine wetland and the possible relationships with soil properties. Top 0-0.30 m soil samples were collected in a typical alpine wetland in the south-eastern Qinghai-Tibet plateau using grid sampling. There was high spatial variability for soil organic carbon density (SOCD), soil total nitrogen density (STND), and soil total phosphorous density (STPD) in the drained alpine wetland. Spherical models best described the structure of the semivariograms for SOCD and STPD, and an exponential model for STND, with the range parameter of <4 m. Similar spatial distribution with lower or higher patches of C, N, and P storage were observed. SOCD, STND, and STPD were significantly negatively correlated with soil moisture (P<0.01), and significantly positively correlated with bulk density (P<0.01). However, no significant correlations were observed between SOCD, STND, and STPD and soil pH values. Wetland drainage might lead to higher C, N, and P densities in top 0.30 m soils due to peat compaction; thus, it is necessary to incorporate water table fluctuations or the whole depth of peat layers to estimating precisely C, N and P storage.
机译:这项研究考虑了高山流失湿地中土壤有机碳,氮和磷的存储空间变异性及其与土壤特性的可能关系。使用网格采样方法在青藏高原东南部的典型高山湿地中收集了0-0.30 m的土壤样本。排干的高山湿地中土壤有机碳密度(SOCD),土壤总氮密度(STND)和土壤总磷密度(STPD)具有很大的空间变异性。球形模型最能描述SOCD和STPD的半变异函数的结构,以及STND的指数模型,其范围参数<4 m。观察到相似的空间分布,其中C,N和P的存储量较低或较高。 SOCD,STND和STPD与土壤水分呈显着负相关( P <0.01),而与容重呈显着正相关( P <0.01)。但是,在SOCD,STND和STPD与土壤pH值之间未发现显着相关性。由于泥炭的压实,湿地排水可能导致最高0.30 m的土壤中较高的C,N和P密度。因此,有必要考虑地下水位的波动或泥炭层的整个深度,以精确估算C,N和P的储量。

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