Cristian Kelling Pereira, Ana Barbosa Viana, Adrean Arruda Macedo, Renan Buque Pardinho, Paula Dalla Vecchia, Valderi Luiz Dressler
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引用次数: 0
摘要
钾(K)是作物生产所需的大量营养元素之一,它通过植物根系从土壤溶液中吸收。土壤钾的补充通常是通过施肥来完成的;因此,了解土壤中这种养分的含量至关重要。目前很少有文献报道用浊度法测定钾,在土壤样本中更是如此。这项工作的目的是对一种便携式低成本系统进行评估,该系统可通过浊度测定来评估土壤中可用钾的含量。浊度法包括用四苯基硼酸钠(NaTPB)沉淀钾。时间和 Mehlich-1、Mehlich-1 稀释 1 :1 和水溶液进行了评估。此外,还评估了 pH 值、NaTPB 容量和传感器信号稳定性的影响。在优化条件下,传感器的校准显示出良好的线性(r2 = 0.9982),检测和定量限分别为 0.1 和 0.3 mg L-1 K。使用该传感器得出的结果与使用 Mehlich-1 溶液提取 K 的 MP-AES 和 ICP OES 测定结果之间没有明显差异(95% 置信度的 t 检验)。本文介绍的结果表明,使用简单的设备、少量的试剂就能测量田间土壤中的可用钾,这将使这一分析变得更加容易。
Exploring a low-cost turbidimetric sensor for available potassium determination in soil.
Potassium (K) is among the macronutrients required for crop production and it is absorbed through plant roots from the soil solution. Replenishment of soil K is usually done by fertilizer application; therefore, it is crucial to know the amount of this nutrient that's available in the soil. There's very little literature reporting a turbidimetric method for K determination, and even less in soil samples. The objective of this work is to evaluate a portable low-cost system that allows turbidimetric determination to assess the amount of available K in soil. The turbidimetric method consists of K precipitation with sodium tetraphenylborate (NaTPB). The time and Mehlich-1, Mehlich-1 diluted 1 : 1 and water solutions for the extraction procedure were evaluated. The effect of pH, along with NaTPB volume and sensor signal stability, was also evaluated. With the optimized conditions, calibration of the sensor showed a good linearity (r2 = 0.9982), and the limits of detection and quantification were 0.1 and 0.3 mg L-1 of K, respectively. No significant difference (t test with 95% confidence level) is observed between the results obtained with the sensor and the MP-AES and ICP OES determinations using Mehlich-1 solution for K extraction. The results presented here demonstrate that it is possible to use simple equipment to measure available K in soil on the field by using low amounts of reagents, which could make this analysis more accessible.