Comparison of fractionation methods for soil phosphorus with soils subjected to various long-term fertilization regimes on a calcareous soil

Xin Jin, Changlu Hu, A. Khan, Shulan Zhang, Xueyun Yang, Li-ge Jia, Ruipu Sun
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Abstract

Diverse phosphorus (P) fractionation procedures presented varying soil P fractions, which directly affected P contents and forms, and their biological availability. To facilitate the selection of phosphorus (P) fractionation techniques, we compared two procedures based on a long-term experiment on a calcareous soil. The soils containing a gradient P levels were sampled from seven treatments predictor under various long-term fertilizations. The P fractions were then separated independently with both fractionation procedures modified by Tiessen-Moir and Jiang-Gu. The results showed that the labile P in Jiang-Gu is significantly lower than that in Tiessen-Moir. The iron and aluminium-bounded P were greater in Jiang-Gu by a maximum of 46 mg kg−1 than Tiessen-Moir. Jiang-Gu fractionation gave similar Ca bounded P to that Tiessen-Moir did at low P level but greater contents at high P level. The two methods extracted much comparable total inorganic P. However, Tiessen-Moir method accounted less total organic P than ignition or Jiang-Gu method (the organic P (Po) estimated by subtract the total inorganic P (Pi) in Jiang-Gu fractionation from the total). P uptake by winter wheat was significantly and positively correlated with all phosphorus fractions in Jiang-Gu; Resin-P, NaHCO3-Pi, D. HCl-P, C. HCl-Pi, NaOH-Po, total-Po in Tiessen-Moir; P fraction categories of Ca-P, Fe & Al-P and total-Pi in both fractionations. Path coefficients indicated that Ca2-P in Jiang-Gu, NaHCO3-Pi and D. HCl-P in Tiessen-Moir had the higher and more significant direct contributions to P uptake among P fractions measured. Our results suggested that Jiang-Gu procedure is a better predictor in soil P fractionation in calcareous soils, although it gives no results on organic P fractions.
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钙质土壤中不同长期施肥制度土壤磷分馏方法的比较
不同的磷分馏方式导致不同的土壤磷组分,直接影响土壤磷的含量、形态及其生物有效性。为了方便磷(P)分馏技术的选择,我们在钙质土壤上进行了长期试验,比较了两种分馏技术。在不同长期施肥条件下,选取了7种不同处理的含磷梯度土壤。采用Tiessen-Moir和Jiang-Gu改进的分离方法独立分离P组分。结果表明,江区土壤中不稳定磷含量显著低于蒂森莫尔。江区的铁和铝结合磷比Tiessen-Moir最高高46 mg kg - 1。江沟分选在低磷水平下的钙界磷与Tiessen-Moir分选相似,但在高磷水平下含量更高。两种方法提取的总无机磷含量相当,但Tiessen-Moir法的总有机磷含量低于点火法和江谷法(总有机磷(Po)减去江谷分馏分中总无机磷(Pi))。冬小麦吸磷量与江区各磷组分呈极显著正相关;树脂- p, NaHCO3-Pi, D. HCl-P, C. HCl-Pi, NaOH-Po, Tiessen-Moir中总poCa-P, Fe和Al-P的P分数类别和两个分数中的总pi。通径系数表明,江谷的Ca2-P、Tiessen-Moir的NaHCO3-Pi和D. HCl-P对所测磷组分中磷吸收的直接贡献更高且更显著。结果表明,江沟法能较好地预测钙质土壤磷的分异,但不能预测有机磷的分异。
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