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Effects of the continuous use of organic manure and chemical fertilizer on soil inorganic phosphorus fractions in calcareous soil

机译:连续施用有机肥和化肥对石灰性土壤中无机磷组分的影响

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摘要

A 4-year field trial with three treatments and three types of annually rotated vegetables was conducted in calcareous soil in a greenhouse using a phosphorus (P) fractionation method based on the inorganic P fraction classification system described by Jiang-Gu. With the same nutrient input, vegetable yields and P uptake were more stable under the chemical fertilizer (CF) treatment than under the organic manure (OM) treatment, and the average utilization rate of P fertilizer (URP) values were 5.27% and 11.40% under the OM and CF treatments, respectively, over the 4 years. Compared with the values in 2009, the values of the inorganic P (Pi) fractionation, including Ca-P, Al-P and Fe-P, significantly increased over time by 310.89 mg·kg−1, 36.21 mg·kg−1, and 18.77 mg·kg−1, respectively, with OM treatment and by 86.92 mg·kg−1, 175.87 mg·kg−1, and 24.27 mg·kg−1 with CF treatment. These results suggest that 1) large amounts of P were released from Ca2-P, Ca8-P and Al-P and were taken up by vegetables in the calcareous soil, and 2) the excessive application of P fertilizer, especially OM, resulted in a substantial accumulation of Pi (Ca2-P, Ca8-P and Al-P), which increased the risk of pollution from organic farming diffusing into the surface water.
机译:根据江谷所描述的无机P组分分类系统,采用磷(P)分级方法,在温室石灰性土壤中,对石灰性土壤进行了为期4年的田间试验,其中三种处理方法和三种类型的年轮换蔬菜。在相同养分投入的条件下,化学肥料(CF)处理的蔬菜产量和磷素吸收比有机肥(OM)处理更为稳定,平均磷肥(URP)利用率分别为5.27%和11.40%。分别在OM和CF处理中使用了4年。与2009年的值相比,包括Ca-P,Al-P和Fe-P在内的无机P(Pi)分离值随时间显着增加310.89.mg·kg -1 , OM处理分别为36.21 mg·kg -1 和18.77 mg·kg -1 ,经86.92 mg·kg -1 , CF处理分别为175.87 mg·kg -1 和24.27 mg·kg -1 。这些结果表明:1)Ca2-P,Ca8-P和Al-P释放大量磷,并被石灰性土壤中的蔬菜吸收; 2)过量施用磷肥,尤其是OM大量的Pi(Ca2-P,Ca8-P和Al-P)积累,这增加了有机耕作扩散到地表水中的污染风险。

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