De Marco Roland, Phan Cam
Department of Applied Chemistry, Curtin University of Technology, Perth, WA 6845, Australia.
Talanta. 2003 Aug 29;60(6):1215-21. doi: 10.1016/S0039-9140(03)00229-7.
The direct flow injection potentiometric (FIP) analysis of phosphate in hydroponic nutrient solution has been carried out using a cobalt-wire ion-selective electrode (ISE). Synthetic hydroponic nutrient solution, commercial hydroponic nutrient solution and working hydroponic farm nutrient solution were analysed for phosphate using the FIP technique. It is shown that FIP results compare favourably to standard methods of analysis such as spectrophotometry and indirect photometric ion-pair chromatography. Reproducible FIP response curves with a slope of -(47.57+/-0.03) mV per decade and intercept of -(169.7+/-0.1) mV were obtained for four separate calibrations in the concentration range 5.0 x 10(-4)-1.0 x 10(-2) M H(2)PO(4)(-). Anion corrections for interferences by Cl(-), NO(3)(-) and SO(4)(2-) were applied to all samples using the selectivity coefficients determined independently using a fixed interference method. Nevertheless, it was found that anion corrections were not necessary, as the deviations fell within the bounds of experimental error for the cobalt-wire ISE technique (i.e.+/-2-5% R.S.D.). The proposed FIP method enables the direct determination of phosphate in hydroponic nutrient solutions.
使用钴丝离子选择性电极(ISE)对水培营养液中的磷酸盐进行了直接流动注射电位分析(FIP)。采用FIP技术对合成水培营养液、商业水培营养液和实际水培农场营养液中的磷酸盐进行了分析。结果表明,FIP分析结果与分光光度法和间接光度离子对色谱法等标准分析方法相比具有优势。在5.0×10⁻⁴ - 1.0×10⁻² M H₂PO₄⁻浓度范围内进行了四次单独校准,得到了可重现的FIP响应曲线,斜率为每十倍浓度变化-(47.57±0.03) mV,截距为-(169.7±0.1) mV。使用固定干扰法独立测定的选择性系数,对所有样品中的Cl⁻、NO₃⁻和SO₄²⁻干扰进行了阴离子校正。然而,发现阴离子校正没有必要,因为偏差在钴丝ISE技术的实验误差范围内(即±2 - 5%相对标准偏差)。所提出的FIP方法能够直接测定水培营养液中的磷酸盐。