University of South Australia, UniSA STEM, Scarce Resources and Circular Economy (ScaRCE), SA, 5095, Australia; School of Civil Engineering (ETSICCP), Universitat Politècnica de València, Camino de Vera S/n, E-46022, Valencia, Spain.
University of South Australia, UniSA STEM, Scarce Resources and Circular Economy (ScaRCE), SA, 5095, Australia; University of South Australia, Future Industries Institute, SA, 5095, Australia.
Chemosphere. 2021 Apr;269:128704. doi: 10.1016/j.chemosphere.2020.128704. Epub 2020 Nov 5.
A new colorimetric technique for the measurement of labile phosphate in soils using the diffusive gradients in thin films (DGT) technique was developed in this study. This technique can determine the mass of phosphate accumulated on the precipitated Zr-oxide based binding gel by forming the blue colour following the standard molybdate-ascorbic acid method. The optimal reaction temperature and coloration time were 20 °C (room temperature) and 26 min. After determining a well-fitted calibration equation, the technique was able to measure phosphate concentration up to 2.5 mg/L for 24 h deployment with a detection limit of 10.1 μg/L. Two-dimensional quantitative visualisation of phosphate diffusion in three phosphorus (P) fertilised soils were obtained using the colorimetric technique. The results from the colorimetric DGT technique were compared to the elution DGT technique and Colwell P extraction. The DGT techniques (colorimetric and elution) and Colwell P measurements demonstrated similar patterns of phosphate diffusion in soil. Both DGT techniques showed similar phosphate concentration along the concentric rings around the fertiliser application. A new, convenient, and fast DGT colorimetric technique was developed, and successfully used to measure the distribution of potentially available phosphate in soils. The new technique is less laborious than current techniques as it does not require any pre-treatment of the binding gel layers or heating during scanning, thus providing faster results. Therefore, the technique may be more suitable for in-field applications and can be used to investigate the in situ diffusion of potentially available phosphate from fertilisers, and relate this to the plant uptake of P.
本研究开发了一种使用薄膜扩散梯度技术(DGT)测量土壤中活性磷酸盐的比色技术。该技术通过形成蓝色,根据标准钼酸-抗坏血酸法测定沉淀的基于氧化锆的结合凝胶上积累的磷酸盐量。最佳反应温度和显色时间分别为 20°C(室温)和 26 分钟。在确定拟合良好的校准方程后,该技术能够测量长达 24 小时部署的 2.5 毫克/升的磷酸盐浓度,检测限为 10.1 微克/升。使用比色技术获得了三种磷(P)施肥土壤中磷酸盐扩散的二维定量可视化。比色 DGT 技术的结果与洗脱 DGT 技术和 Colwell P 提取进行了比较。DGT 技术(比色和洗脱)和 Colwell P 测量显示了土壤中磷酸盐扩散的相似模式。两种 DGT 技术都显示了在肥料施用周围的同心环中相似的磷酸盐浓度。开发了一种新的、方便和快速的 DGT 比色技术,并成功用于测量土壤中潜在有效磷酸盐的分布。与当前技术相比,新技术的劳动强度更低,因为它不需要对结合凝胶层进行任何预处理或在扫描过程中加热,因此提供了更快的结果。因此,该技术可能更适合现场应用,可用于研究肥料中潜在有效磷酸盐的原位扩散,并将其与植物对 P 的吸收相关联。