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Phosphorus sorption capacity of alkaline Manitoba soils and its relationship to soil properties

机译:马尼托巴碱性土壤对磷的吸附能力及其与土壤性质的关系

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摘要

The establishment of the P retention capacity of soil in Manitoba is essential for effective management of P in the region. However, the methods for determining the P retention capacity for neutral to calcareous soils in the Eastern Prairies are not well developed. The objectives of this study were to determine the P retention capacity of Manitoba soils and to generate equations that relate these capacities to other soil properties. One hundred and fifteen archived surface soils were selected and their physico-chemical properties were measured. These soils were used to generate a single-point P adsorption index by equilibrating 2 g of soil in 20 mL of 0.01 M KCl solution containing either 150 (P150) or 400 (P400) mg P L-1. A subset of 26 of these soils was used for multipoint isotherms with P concentrations in the range of 0–1000 mg P L-1. The data obtained were fitted to the Langmuir isotherm and the adsorption indices were correlated with the various soil properties that were then used to developed predictive equations of the P retention capacity of the soil. The values of the adsorption index, P150, obtained from the single point adsorption study using 150 mg P L-1, ranged between 88 and 891 mg P kg-1, while that of P400 ranged between 100 and 1250 mg P kg-1. A better correlation was obtained between P150 and soil properties compared with P400. For the 26 soil subset, the adsorption indices, Smax1 to Smax 6, obtained from the Langmuir isotherm, ranged from 300 to 1330 mg kg-1. A good correlation was obtained between the single point index and the multipoint isotherm (r = 0.93). Hence, Smax for the 115 soils was estimated from the relationship between P150 and Smax 3 of the 26 soils. The best relationships between the adsorption parameters, P150 and Smax, and the soil properties were obtained with the sum of Mehlich-3 extractable Ca and Mg (R2= 0.66) and the sum of exchangeable Ca and Mg (R2= 0.64). Mehlich-3-Ca and -Mg each explained 56% of the variation, while clay content explained 40% of the variation in the P retention capacity of these soils. Unlike the widely reported influence of Al and Fe in acid soils, our study showed that the retention of P in Manitoba soils was influenced more by Ca and Mg and soil texture.
机译:在马尼托巴建立土壤的磷保持能力对于有效管理该地区的磷至关重要。但是,测定东部草原中中性至钙质土壤中磷保持能力的方法尚不完善。这项研究的目的是确定马尼托巴土壤的磷保持能力,并生成将这些能力与其他土壤特性相关的方程。选择了115个已存档的表层土壤,并对其理化性质进行了测量。通过将2 g土壤在20 mL含150(P150)或400(P400)mg P L-1的0.01 M KCl溶液中平衡,将这些土壤用于产生单点P吸附指数。这些土壤中有26个子集用于P点浓度在0–1000 mg P L-1范围内的多点等温线。将获得的数据拟合到Langmuir等温线,并将吸附指数与各种土壤特性相关联,然后将其用于建立土壤P保持能力的预测方程。从使用150 mg P L-1的单点吸附研究获得的吸附指数P150的值在88至891 mg P kg-1之间,而P400的吸附值在100至1250 mg P kg-1之间。与P400相比,P150与土壤特性之间具有更好的相关性。对于26个土壤子集,从Langmuir等温线获得的吸附指数Smax1至Smax 6为300至1330 mg kg-1。单点索引与多点等温线之间具有良好的相关性(r = 0.93)。因此,根据P150和26种土壤的Smax 3之间的关系估算了115种土壤的Smax。吸附参数P150和Smax与土壤性质之间的最佳关系是通过Mehlich-3可提取的Ca和Mg的总和(R2 = 0.66)和可交换的Ca和Mg的总和(R2 = 0.64)获得的。 Mehlich-3-Ca和-Mg分别解释了56%的变化,而粘土含量解释了这些土壤中P保持能力的40%的变化。与广泛报道的铝和铁在酸性土壤中的影响不同,我们的研究表明,马尼托巴土壤中磷的保留受钙,镁和土壤质地的影响更大。

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