Spectrophotometric determination of phosphate in presence of arsenate

M. R. Pokhrel, Sujata Adhikari, Krishna Subedi, Sabin Dhungana, B. R. Poudel
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Abstract

A simple and sensitive spectrophotometric method has been optimized for the determination of phosphate in the presence of arsenate. This method is based on the formation of phosphomolybdate complex from phosphate and added molybdate ion in an acidic medium, followed by the reduction of the complex with hydrazine hydrate. The system obeys Lambert-Beer’s law in the concentration range 60-1080 ppb. The optimized volume of different reagents was 3.5 mL of 0.25% ammonium molybdate, 1.5 mL of 0.25 N sulfuric acids, and 1 mL of 0.5 M of hydrazine hydrate. The time required for the full-color development was 15 minutes at 30oC. The arsenate interference was successfully removed by using sodium thiosulphate and sodium metabisulfite below the arsenic concentration of 100 ppb. 0.2 mL of 1 M sodium metabisulfite and 1 mL of 0.1 M sodium thiosulphate were found to be the optimum volume for inhibiting arsenate interference below 100 ppb arsenate concentration.
砷酸盐中磷酸盐的分光光度法测定
优化了一种简便、灵敏的分光光度法测定砷酸盐存在下的磷酸盐。该方法是在酸性介质中由磷酸盐和加入钼酸盐形成磷钼酸盐络合物,然后用水合肼还原络合物。该系统在60-1080 ppb的浓度范围内遵循兰伯特-比尔定律。不同试剂的最佳用量为0.25%钼酸铵3.5 mL、0.25 N硫酸1.5 mL、0.5 M水合肼1 mL。在30℃下,全彩显影所需时间为15分钟。采用低于100 ppb砷浓度的硫代硫酸钠和焦亚硫酸钠成功地去除了砷酸盐干扰。当砷酸盐浓度低于100 ppb时,0.2 mL的焦亚硫酸钠和0.1 mL的硫代硫酸钠是抑制砷酸盐干扰的最佳体积。
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