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首页> 外文期刊>Catena: An Interdisciplinary Journal of Soil Science Hydrology-Geomorphology Focusing on Geoecology and Landscape Evolution >Spatial distribution of phosphorus in marsh soils of a typical land/inland water ecotone along a hydrological gradient.
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Spatial distribution of phosphorus in marsh soils of a typical land/inland water ecotone along a hydrological gradient.

机译:典型陆地/内陆水域过渡带沼泽地土壤中磷的空间分布沿水文梯度。

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Profile samples from 0 to 70 cm depth were collected in five plant zones along a hydrological gradient in a typical land/inland water ecotone, Northeast China. Total phosphorous (TP), organic phosphorous (OP), inorganic phosphorous (IP) and available phosphorous (AP) were measured to study their horizontal and vertical distribution patterns in the land/inland water ecotone, as well as their important influencing factors such as soil organic carbon (SOC) and water level. Our results demonstrated that the levels of TP, OP, IP and AP were generally higher in the flooding zone (zone A), the over-wetted zone (zone B) and the drying and wetting zone (zone C), but the drying zones (zones D and E) contained lower P concentrations. Soil P was mainly concentrated in upper soils (0-30 cm) and the P levels decreased with depth, except for small accumulative peaks in the 50 to 70 cm soil increment for TP and OP in zone C and for IP and AP in zone A. Surface soils in zones D and E had a lower mean SOC:OP ratio than zones A, B and C, reflecting the higher probability of OP mineralization in the drying zones. However, higher mean values of the IP:OP and AP:TP ratios were found in zone A (P<0.05), indicating that increasing soil moisture may be the most important agent determining IP release rate and biological availability. The significantly positive correlations with soil organic matter (SOM) and clay content would contribute to P retention in zones A, B and C (P<0.01) where the soils contained relatively high organic matter and clay content. The results obtained in this study suggest that the distributions and dynamics of P forms in soil, especially in the land/inland water ecotone, can be significantly impacted by various biogeochemical and environmental factors (i.e., soil moisture, SOM, and clay content).
机译:在中国东北典型的陆地/内陆水域生态交错带中,沿着水文梯度从五个植物区中收集了深度为0至70 cm的剖面样本。对总磷(TP),有机磷(OP),无机磷(IP)和有效磷(AP)进行了测量,以研究其在陆地/内陆水域交错带中的水平和垂直分布模式,以及它们的重要影响因素,例如土壤有机碳(SOC)和水位。我们的结果表明,在淹水区(A区),过湿区(B区)和干燥和湿润区(C区),TP,OP,IP和AP的含量通常较高,但干燥区(D区和E区)的P含量较低。土壤P主要集中在上层土壤(0-30 cm)中,P水平随深度降低,但C区TP和OP以及A区IP和AP在50至70 cm土壤增量中出现小的累积峰。D和E区的表层土壤的SOC:OP平均比A,B和C区低,这反映了干燥区OP矿化的可能性更高。然而,在A区发现IP:OP和AP:TP比率的平均值更高(P <0.05),这表明增加土壤水分可能是决定IP释放速率和生物利用度的最重要因素。与土壤有机质(SOM)和粘土含量的显着正相关将有助于土壤,有机质和粘土含量较高的A,B和C区的磷保持(P <0.01)。这项研究获得的结果表明,土壤中P形态的分布和动态,特别是在陆地/内陆水生生态交错带中,可能受到各种生物地球化学和环境因素(即土壤湿度,SOM和粘土含量)的显着影响。

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