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Effect Of Leaching On Loss Of Soil Phosphorus In Different Types Of Sand Dune In Horqin Sandy Land, China

机译:浸出对水域不同类型沙丘土壤磷损失的影响

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We simulated P leaching on active dune (AD), semi-stabilized dune (SSD) and stabilized dune (SD) under 140, 700 and 1400 mm of rainfall in Horqin Sandy Land Inner Mongolia, China. The results showed that the available phosphorus (AP) pool decreased by 5–50% in topsoil (0–10 cm), and increased by -5–220% in subsoil (10–20 cm) in AD, SSD, and SD soil. The total P (TP) pool in topsoil (0–10 cm) decreased by 1.8–5.0%, and increased by -5–4.6% in subsoil (10–20 cm) in AD, SSD, and SD soil. The P loss in the soils (0-20 cm) was 0.5–4.5% in AD, SSD, and SD soil. These data indicated that significant downward movement of P occurred during soil leaching. And, the movement of soil P by leaching can cause P loss and changes in vertical distribution of P. Moreover, the difference in P concentration, drawn up by plant roots, between topsoil and subsoil can buffer the P loss at the start of leaching. Therefore, vegetation restoration is essential to reduce P loss in sandy lands.
机译:我们在Horqin Sandy Land Mand Mongolia的140,700和1400毫米降雨的140,700和1400毫米下,在640,700和1400毫米以下的稳定的沙丘(SD)上模拟了P浸出。结果表明,可用的磷(AP)池在甲状腺炎中(0-10厘米)下降5-50%,在Ad,SSD和SD土壤中替补(10-20cm)增加-5-220% 。 TOPSOIL(0-10cm)中的P(TP)池(0-10cm)降低1.8-5.0%,AD,SSD和SD土壤中底土(10-20cm)增加-5-4.6%。土壤(0-20cm)的P损失在AD,SSD和SD土壤中为0.5-4.5%。这些数据表明,在土壤浸出过程中P的显着向下移动。而且,土壤P通过浸出的运动可能导致P的垂直分布的P损失和变化。此外,植物根部的P浓度的差异在植物和底土之间可以在浸出开始时缓冲P损失。因此,植被恢复对于减少桑迪土地的P损失至关重要。

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