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On-Line Photo-Oxidative Decomposition of Phosphorus Compounds to Orthophosphate and Its Application to Flow Injection Spectrophotometric Determinations of Total Phosphorus in River and Waste Waters

机译:磷化合物的在线光氧化分解为正磷酸盐及其在流动注射分光光度法测定河流和废水中总磷中的应用

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A simple and mild on-line photo-oxidative decomposition method for the highly sensitive flow-injection spectrophotometric determination of total phosphorus in river and waste waters was developed for the first time by using low pressure mercury lamps. Organic and inorganic phosphorus compounds in sample solutions were injected into a carrier solution, which merged with the decomposition solution containing sulfuric acid and potassium peroxodisulfate. The solution components were decomposed oxidatively to orthophosphate while flowing in a photo-reactor. After the decomposition, orthophosphate was determined spectrophotometrically based on the formation of Molybdenum Blue. The photo-reactor consisted of two low pressure mercury lamps, a poly(terafluoroethylene) (PTFE) tubing and a reflection mirror. The PTFE tubing was wound directly around the mercury lamps, which were covered with reflection mirror. The detection limit for phosphorus was about 0.001 mg l-1, and the sample throuphput was about 20 samples per hour for total phosphorus determination. By using the photo-reactor, most of the phosphorus compounds were decomposed completely, whereas some condensed phosphates were less susceptible to photo-oxidation. The analytical results for practical samples obtained by the proposed method showed a good correlation with those obtained by using a heat-oxidation method, which indicates that the content of the condensed phosphates difficult to be decomposed was very scarce in the practical samples.
机译:首次使用低压水银灯开发了一种简单,温和的在线光氧化分解方法,用于高灵敏的流动注射分光光度法测定河流和废水中的总磷。将样品溶液中的有机和无机磷化合物注入到载液中,并与含有硫酸和过二硫酸钾的分解液合并。溶液组分在光反应器中流动时被氧化分解为正磷酸盐。分解后,根据钼蓝的形成用分光光度法测定正磷酸盐。该光反应器由两个低压汞灯,一个聚四氟乙烯(PTFE)管和一个反射镜组成。 PTFE管直接缠绕在水银灯周围,并用反射镜覆盖。磷的检出限约为0.001 mg l-1,样品总磷每小时约为20个样品,用于测定总磷。通过使用光反应器,大多数磷化合物被完全分解,而一些缩合的磷酸盐不易受到光氧化。通过该方法得到的实际样品的分析结果与通过热氧化法获得的结果具有良好的相关性,这表明在实际样品中很难分解的缩合磷酸盐的含量非常少。

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