首页> 外文期刊>Journal of chromatography, A: Including electrophoresis and other separation methods >Simultaneous determination of total nitrogen and total phosphorus in environmental waters using alkaline persulfate digestion and ion chromatography
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Simultaneous determination of total nitrogen and total phosphorus in environmental waters using alkaline persulfate digestion and ion chromatography

机译:碱性过硫酸盐消化和离子色谱法同时测定环境水中的总氮和总磷

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An ion chromatography (IC) method was developed for the simultaneous determination of total nitrogen and total phosphorus after alkaline persulfate digestion. This study takes advantage of advances in construction of high-resolution, high-capacity anion-exchange columns that can better tolerate the matrices typically encountered when a determination of total nitrogen and total phosphorous is required. Here, we used an electrolytically generated hydroxide eluent combined with a high-capacity, hydroxide-selective, anion-exchange column for the determination of total nitrogen (as nitrate-N) and total phosphorus (as phosphate-P) in environmental samples by IC. This method yielded LODs for nitrate-N and phosphate-P of 1.0 and 1.3 μg/L, respectively. The LOQs determined for these analytes were 3.4 and 4.2 μg/L, respectively. Due to the dilution factor required and the blank nitrate-N concentration after the persulfate digestion, the quantification limits increased for nitrate-N and phosphate-P to 171 and 63 μg/L, respectively. The suitability of the method was evaluated by determining the nitrogen and phosphorus concentrations from known concentrations of organic-containing nitrogen and phosphorus compounds. In addition, environmental samples consisting of six different wastewaters and 48 reservoir samples were evaluated for total nitrogen and phosphorus. The recoveries of nitrogen and phosphorus from the organic-containing compounds ranged from 93.1 to 100.1% and 85.2 to 97.1%, respectively. In addition, good correlation between results obtained by the colorimetric method and IC was also observed. The linearity, accuracy, and evaluation of potential interferences for determining TN and TP will be discussed.
机译:开发了一种离子色谱法(IC),用于同时测定碱性过硫酸盐消化后的总氮和总磷。这项研究利用了高分辨率,高容量阴离子交换色谱柱的构建进展,该色谱柱可以更好地耐受需要测定总氮和总磷时通常遇到的基质。在这里,我们将电解产生的氢氧化物洗脱液与高容量,对氢氧化物有选择性的阴离子交换柱结合使用,通过离子色谱法测定环境样品中的总氮(以硝酸盐-N形式)和总磷(以磷酸盐-P形式) 。此方法得出的硝酸盐-N和磷酸盐-P的LOD分别为1.0和1.3μg/ L。这些分析物的定量限分别为3.4和4.2μg/ L。由于所需的稀释倍数和过硫酸盐消化后空白的硝酸盐-N浓度,硝酸盐-N和磷酸盐-P的定量限分别提高到171和63μg/ L。通过从已知浓度的含有机氮和磷化合物中确定氮和磷的浓度,评估该方法的适用性。此外,评估了由六种不同废水和48个储层样品组成的环境样品中的总氮和磷。从含有机化合物中回收的氮和磷分别为93.1%至100.1%和85.2%至97.1%。另外,还观察到通过比色法获得的结果与IC之间的良好相关性。将讨论确定TN和TP的线性,准确性和潜在干扰的评估。

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