首页> 外文期刊>Communications in Soil Science and Plant Analysis >Precision of the anion exchange membrane phosphorus technique when using a range of low-ionic solutions in analysis of heterogeneous mine soils.
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Precision of the anion exchange membrane phosphorus technique when using a range of low-ionic solutions in analysis of heterogeneous mine soils.

机译:当使用多种低离子溶液分析非均质矿山土壤时,阴离子交换膜磷技术的精度。

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The anion exchangeable membrane phosphorus (P) method can be used across a range of soils to analyze P for vegetation and has the potential to be applied to heterogeneous mine soils. Enhanced small-scale variability in mine soils can potentially cause enhanced and irregular P fluctuations during extraction, leading to errors in analysis of exchangeable membrane P. Anion exchange membranes in combination with low ionic solutions may be able to reduce this error and improve precision of the measurement. The authors undertake a full inorganic P fractionation to determine if the ionic solutions [deoionized water (DI), 0.01 M calcium chloride (CaCl2), potassium chloride (KCl), and ammonium fluoride (NH4F)] change the anion exchangeable membrane-extractable P and in turn the fractionation of P. In addition, the relationship between anion exchangeable membrane P and P-buffering index is analyzed to ascertain the accuracy of the methods. The precision and effect on subsequent P fractions for each extracting reagent was specific to the soil type, most likely related to cations in the soil. Use of NH4F and DI with anion exchange membranes was a precise method [coefficient of variation (CV) <20%] for measuring water exchangeable P, with no or minor changes to subsequent fractionations. Calcium chloride (CaCl2) causes significant changes to P fractionations and resulted in highly variable (CV >100%) results across all soils.
机译:阴离子交换膜磷(P)方法可用于多种土壤,以分析植被中的磷,并有可能应用于异质矿山土壤。矿土壤中小规模变异性的增加可能会导致提取过程中磷的波动增加和不规则,从而导致可交换膜P分析的误差。阴离子交换膜与低离子溶液的结合可能能够减少该误差并提高分离精度。测量。作者进行了完整的无机P分馏以确定离子溶液[去离子水(DI),0.01 M氯化钙(CaCl 2 ),氯化钾(KCl)和氟化铵(NH 4 F)]改变可阴离子交换膜的P的分离度,进而改变P的分离度。此外,分析阴离子可交换膜P与P缓冲指数之间的关系,以确保方法的准确性。每种萃取剂的后续P分数的精度和影响均取决于土壤类型,最有可能与土壤中的阳离子有关。 NH 4 F和DI与阴离子交换膜一起使用是测量可交换水的P的精确方法[变异系数(CV)<20%],随后的分馏几乎没有变化。氯化钙(CaCl 2 )引起P分馏的显着变化,并在所有土壤中产生高度可变的(CV> 100%)结果。

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