Application of UV-Visible Spectroscopy in Kinetic Study of Molybdate Complexation Reactions and Phosphate Content Quantitation

Josphat Kipkoech, Jonathan O. Adongo
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Abstract

UV-visible spectroscopic measurements were used to characterize the formation of two ammonium-molybdate complexes, to elucidate its kinetics, and to carry out spectrophotometric quantitation of percent phosphate content in selected commercially available fertilizers. The kinetic study of ammonium-molybdate [(NH3)6Mo7O24] reaction with hydrazine (N2H2) yielding ammonium-hydrazine-molybdate complex (AHM) and that of reaction of AHM with phosphate [PO4]3- to give phospho-ammonium-hydrazine-molybdate (AHPM) complex revealed that both proceed via zero-order kinetics (R2= 0.99) with rate constants in the order of 10-5 and 10-4 M/s respectively. The kinetic experiments revealed that the rate of formation of the AHM complex is sensitive to an increase in N2H2 ligand concentration. For both reactions, the highest complexation rates were observed within the first 1000 s. Complex dissociation and association equilibria events were observed at extended reaction periods in the kinetic experiments. The AHPM system (containing complexed phosphates) used in spectrophotometric quantitation of phosphate levels in fertilizer samples was found to obey the Beer-Lambert equation in the visible region at λ max. = 820 nm within the concentration range of 5 – 90% phosphate content (R2 = 0.99). Of the fertilizer randomized sampled from Nakuru Municipality in Kenya, and analyzed the percent phosphate content among the inorganic fertilizers was found to range between 61.7% - 82% with a mean of 72.86% +/- 6.98 SD. Whereas in the organic fertilizer samples investigated, it was found to range between 43.8% - 58.2% with means of 52.55% +/- 6.77 SD. The organic fertilizers were found to have significantly lower phosphate levels based on an unpaired t-test revealing that the mean percent concentrations between the two groups of fertilizer samples tested are significantly different at 95% CI (P value < 0.05).
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紫外可见光谱法在钼酸盐络合反应动力学研究及磷酸盐含量定量中的应用
紫外可见光谱测量用于表征两种钼酸铵配合物的形成,阐明其动力学,并在选定的市售肥料中进行磷酸盐含量百分比的分光光度定量。对钼酸铵[(NH3)6Mo7O24]与肼(N2H2)反应生成钼酸铵配合物(AHM)和AHM与磷酸[PO4]3-反应生成磷-氨-肼-钼酸铵配合物(AHPM)的动力学研究表明,两者均为零级动力学(R2= 0.99),反应速率常数分别为10-5和10-4 M/s。动力学实验表明,AHM配合物的形成速度对N2H2配体浓度的增加很敏感。对于这两种反应,在前1000秒内观察到最高的络合速率。在动力学实验中,在较长的反应周期内观察到复杂的解离和缔合平衡事件。AHPM系统(含络合磷酸盐)用于分光光度法定量肥料样品中的磷酸盐水平被发现服从Beer-Lambert方程在可见光区域在λ max。= 820 nm,磷酸盐含量为5 ~ 90% (R2 = 0.99)。在肯尼亚纳库鲁市随机抽样的肥料中,分析发现无机肥料中磷酸盐含量的百分比在61.7% - 82%之间,平均值为72.86% +/- 6.98 SD。在有机肥样品中,其变化范围为43.8% ~ 58.2%,平均值为52.55% +/- 6.77 SD。根据非配对t检验,有机肥的磷酸盐水平显著降低,两组肥料样品的平均百分比浓度在95% CI下显著不同(P值< 0.05)。
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