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Simultaneous Analysis of Soil Macronutrients Using Ion-Selective Electrodes

机译:使用离子选择电极同时分析土壤中的大量营养素

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摘要

Automated sensing of soil macronutrients would be useful in mapping soil nutrient variability for variable-rate nutrient management. Ion-selective electrodes (ISEs) are a promising approach because of their small size, rapid response, and ability to directly measure the analyte. This study reports on the laboratory evaluation of a sensor array including three different ISEs, based on TDDA-NPOE and valinomycin-DOS membranes, and Co rod, for the simultaneous determination of NO3-N, available K, and available P in soil extracts. Thirty-seven Illinois and Missouri soils were extracted using the Kelowna soil extractant (0.25 mol L-1 CH3COOH + 0.015 mol L-1 NH4F). The response of each electrode type in mixed solutions of NO3, K, and P ions was modeled based on the Nikolskii-Eisenman equation with all coefficients of determination (r2) >or= 0.95 (P < 0.001). In soil extracts, the NO3 ISEs provided concentrations similar to those obtained with standard laboratory methods (r2 = 0.89, P < 0.001). Concentrations obtained with the K ISEs were about 50% lower than those obtained with standard methods due to lower K extraction by the Kelowna solution (r2 = 0.85, P < 0.001). The P ISEs provided concentrations about 64% lower than those obtained with standard methods due to a combination of decreased P estimates in soil extracts and lower P extraction by the Kelowna solution; however, there was a strong linear relationship (r2 = 0.81, P < 0.001). Although P and K concentrations were low in comparison to standard laboratory procedures, a calibration factor could address this issue. These results show that ISE technology can be implemented successfully for NO3-N, available K, and available P measurement with the Kelowna extractant.
机译:自动感应土壤中的大量养分将有助于绘制土壤养分变异性,以进行可变速率的养分管理。离子选择电极(ISE)由于其体积小,响应速度快和直接测量分析物的能力而成为一种有前途的方法。这项研究报告了基于TDDA-NPOE和valinomycin-DOS膜以及Co棒的包括三种不同ISE的传感器阵列的实验室评估,用于同时测定土壤提取物中的NO3-N,有效钾和有效磷。使用Kelowna土壤提取剂(0.25 mol L-1 CH3COOH + 0.015 mol L-1 NH4F)提取了37个伊利诺伊州和密苏里州的土壤。基于Nikolskii-Eisenman方程,以所有测定系数(r2)>或= 0.95(P <0.001),对每种电极类型在NO3,K和P离子混合溶液中的响应进行建模。在土壤提取物中,NO3 ISEs的浓度与标准实验室方法获得的浓度相似(r2 = 0.89,P <0.001)。由于使用Kelowna溶液降低了钾的提取(r2 = 0.85,P <0.001),所以用K ISE获得的浓度比用标准方法获得的浓度低约50%。 P ISE的浓度比标准方法低约64%,这是由于土壤提取物中的P估算值降低和Kelowna溶液中的P提取值降低所致。但是,存在很强的线性关系(r2 = 0.81,P <0.001)。尽管与标准实验室程序相比,磷和钾的浓度较低,但校准因子可以解决此问题。这些结果表明,使用基洛纳萃取剂可以成功地将ISE技术用于NO3-N,有效钾和有效P的测量。

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