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首页> 外文期刊>Revista Brasileira de Ciência do Solo >Mobility of inorganic and organic phosphorus forms under different levels of phosphate and poultry litter fertilization in soils
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Mobility of inorganic and organic phosphorus forms under different levels of phosphate and poultry litter fertilization in soils

机译:不同磷肥水平和家禽凋落物在土壤中无机和有机磷形态的迁移

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The eutrophication of aquifers is strongly linked to the mobility of P in soils. Although P mobility was considered irrelevant in a more distant past, more recent studies have shown that P, both in organic (Po) and inorganic forms (Pi), can be lost by leaching and eluviation through the soil profile, particularly in less weathered and/or sandier soils with low P adsorption capacity. The purpose of this study was to determine losses of P forms by leaching and eluviation from soil columns. Each column consisted of five PVC rings (diameter 5 cm, height 10 cm), filled with two soil types: a clayey Red-Yellow Latosol and a sandy loam Red-Yellow Latosol, which were exposed to water percolation. The soils were previously treated with four P rates (as KH2PO4 ) to reach 0, 12.5, 25.0 and 50 % of the maximum P adsorption capacity (MPAC). The P source was homogenized with the whole soil volume and incubated for 60 days. After this period the soils were placed in the columns; the soil of the top ring was mixed with five poultry litter rates of 0, 20, 40, 80, and 160 t ha-1 (dry weight basis). Treatments consisted of a 4 x 5 x 2 factorial scheme corresponding to four MPAC levels, five poultry litter rates, two soils, with three replications, arranged in a completely randomized block design. Deionized water was percolated through the columns 10 times in 35 days to simulate about 1,200 mm rainfall. In the leachate of each column the inorganic P (reactive P, Pi) and organic P forms (unreactive P, Po) were determined. At the end of the experiment, the columns were disassembled and P was extracted with the extractants Mehlich-1 (HCl 0.05 mol L-1 and H2SO4 0.0125 mol L-1) and Olsen (NaHCO3 0.5 mol L-1; pH 8.5) from the soil of each ring. The Pi and Po fractions were measured by the Olsen extractant. It was found that under higher poultry litter rates the losses of unreactive P (Po) were 6.4 times higher than of reactive P (Pi). Both the previous P fertilization and increasing poultry litter rates caused a vertical movement of P down the soil columns, as verified by P concentrations extracted by Mehlich-1 and NaHCO3 (Olsen). The environmental critical level (ECL), i.e., the P soil concentration above which P leaching increases exponentially, was 100 and 150 mg dm-3 by Mehlich-1 and 40 and 60 mg dm-3 by Olsen, for the sandy loam and clay soils, respectively. In highly weathered soils, where residual P is accumulated by successive crops, P leaching through the profile can be significant, particularly when poultry litter is applied as fertilizer.
机译:含水层的富营养化与磷在土壤中的流动性密切相关。尽管在更遥远的过去,人们认为磷的迁移率无关紧要,但最近的研究表明,无论是有机(Po)还是无机形式(Pi)的磷,都可以通过土壤剖面的淋溶和淋洗而损失,特别是在风化较弱的土壤中。 /或低磷吸附能力的沙质土壤。这项研究的目的是通过土壤柱的淋洗和淋洗来确定P形态的损失。每列由五个PVC环(直径5厘米,高10厘米)组成,填充了两种土壤类型:黏性的红黄色Latosol和砂质壤土的红色黄色Latosol,这些土壤会受到水的渗透作用。预先用4种磷(KH2PO4)处理土壤,使其达到最大磷吸附量(MPAC)的0、12.5、25.0和50%。将P源与整个土壤体积均质化,并孵育60天。在此之后,将土壤放入柱子中。顶环土壤与五种家禽垫料混合,分别为0、20、40、80和160 t ha-1(以干重计)。处理包括4 x 5 x 2阶乘方案,对应于四个MPAC水平,五个家禽垫料率,两个土壤,三个重复,以完全随机的区组设计安排。在35天内,将去离子水渗透色谱柱10次,以模拟约1,200 mm的降雨。在每列的浸出液中,确定了无机P(反应性P,Pi)和有机P形式(未反应性P,Po)。实验结束时,将色谱柱拆解,并用Mehlich-1(HCl 0.05 mol L-1和H2SO4 0.0125 mol L-1)和Olsen(NaHCO3 0.5 mol L-1; pH 8.5)萃取剂萃取P每个环的土壤。通过Olsen萃取剂测量Pi和Po馏分。发现在较高的家禽产仔率下,未反应的P(Po)的损失是反应性P(Pi)的6.4倍。先前的磷肥施用和家禽凋落物速率的增加都导致磷沿土壤柱垂直移动,这一点已通过Mehlich-1和NaHCO3(Olsen)提取的磷浓度得到证实。对于沙壤土和黏土,环境临界水平(ECL),即高于P的土壤土壤磷含量呈指数增长,Mehlich-1为100和150 mg dm-3,Olsen为40和60 mg dm-3。土壤。在高度风化的土壤中,连续的农作物会残留残留的磷,磷在整个剖面中的淋溶可能非常重要,尤其是当家禽垫料用作肥料时。

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