首页> 外文期刊>Nutrient Cycling in Agroecosystems >Accumulation of phosphorus fractions in typic Hapludalf soil after long-term application of pig slurry and deep pig litter in a no-tillage system
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Accumulation of phosphorus fractions in typic Hapludalf soil after long-term application of pig slurry and deep pig litter in a no-tillage system

机译:在免耕系统中长期施用猪粪和深层猪粪后,典型的Hapludalf土壤中磷组分的积累

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摘要

In this paper we explore the accumulation of different phosphorus (P) fractions in soil submitted to successive applications of pig slurry (PS) and deep pig litter (DL). After 88 months of no-till crop cycles, soil samples were collected in the following treatments: control (C), PS applications equivalent to 90 and 180 kg N ha−1 (PS90 and PS180), and DL applications equivalent to 90 and 180 kg N ha−1 (DL90 and DL180). The cumulative application of P of the C, PS90, PS180, DL90 and DL180 treatment was 0, 303, 606, 825 and 1650 kg P ha−1, respectively. The soil samples were then submitted to P chemical fractionation. Successive applications of 303 and 606 kg P ha−1 in PS form and 825 and 1.650 kg P ha−1 in DL form increased P levels down to 20 cm depth, especially in the labile inorganic fraction extracted by anion exchange resin and 0.5 M NaHCO3 and to a lesser extent extracted by 0.1 M NaOH. Successive additions of PS180 and DL180 increased the levels of organic P extracted by 0.5 M NaHCO3, 0.1 M NaOH and 0.5 M NaOH, and successive applications of PS and DL caused P accumulation in the soil profile, especially in labile fractions. This increased the availability to plants, but also increases the potential for environmental contamination.
机译:在本文中,我们探索了连续施用猪粪便(PS)和深层猪粪(DL)的土壤中不同磷(P)组分的积累。在88个月的免耕种植周期后,通过以下处理收集土壤样品:对照(C),相当于90和180 kg N ha -1 的PS施用(PS90和PS180),以及DL施用量相当于90和180 kg N ha -1 (DL90和DL180)。 C,PS90,PS180,DL90和DL180处理的P累积施用量分别为0、303、606、825和1650 kg P ha -1 。然后将土壤样品进行P化学分馏。连续施用303和606 kg P ha -1 的PS形式以及825和1.650 kg P ha -1 以DL形式的连续施用可将P水平降低到20 cm深度,特别是阴离子交换树脂和0.5 M NaHCO 3 提取的不稳定无机级分中的含量较高,而0.1 M NaOH提取的含量较低。连续添加PS180和DL180可增加0.5 M NaHCO 3 ,0.1 M NaOH和0.5 M NaOH提取的有机磷的含量,而PS和DL的连续施用导致土壤剖面中P的积累,特别是不稳定的部分。这增加了植物的利用率,但是也增加了环境污染的可能性。

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