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Spectrophotometric determination of ammonia nitrogen in water by flow injection analysis based on NH3- o- phthalaldehyde -Na2SO3 reaction

机译:NH 3 -邻苯二甲醛-Na 2 SO 3 反应流动注射分光光度法测定水中的氨氮

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Abstract The product of the NH3- o-phthalaldehyde (OPA) -Na2SO3 reaction is rose red at pH more than 10.4, and its maximum absorption wavelength is 550?nm. Based on this, a novel spectrophotometric method with flow injection analysis has been established to determine ammonia nitrogen in water. Experimental parameters related to the flow injection method and the reaction were optimized throughout the experiments based on univariate experimental design. The length of coil is optimized as 1.6?m for storing up standard or sample solution. The optimal value is 8.20?mL/min for loading flow rate of coloring solution. The {OPA} concentration, sulfite concentration and reaction pH are chosen as 1.06?g/L, 0.050?g/L and 10.80, respectively. The reaction temperature and stop flow time affects the performances of the method. The linearity range and detection limit of the proposed method are 0.100–0.700?mmol/L and 0.007?mmol/L at the reaction temperature of 55?°C and stop flow time of 340?s, respectively. The sample throughput is more than 8 h?1. Under the optimal experimental conditions, the recovery is 100.4%, 95.2%, 101.7% and 92.4% for the lake water, river water, groundwater and sewage, respectively. Two lake water samples were analyzed using both the proposed method and indophenol blue method, the results show no significant difference between these two methods. In comparison with other spectrophotometric determination method of ammonia nitrogen, the main merits of the proposed method are simplicity, reliability, reproducibility and high sample throughput.
机译:摘要NH3-邻苯甲醛(OPA)-Na2SO3反应的产物在pH大于10.4时呈玫瑰红色,最大吸收波长为550?nm。在此基础上,建立了一种新型的流动注射分光光度法测定水中的氨氮。基于单变量实验设计,在整个实验过程中优化了与流动注射方法和反应相关的实验参数。线圈的长度优化为1.6?m,用于存储标准溶液或样品溶液。对于着色溶液的加载流量,最佳值为8.20mLmL / min。 {OPA}浓度,亚硫酸盐浓度和反应pH分别选择为1.06μg/ L,0.050μg/ L和10.80。反应温度和停止流动时间影响该方法的性能。该方法在55℃的反应温度和340μs的停止流动时间下的线性范围和检出限分别为0.100-0.700?mmol / L和0.007?mmol / L。样品通量大于8 h?1。在最佳实验条件下,湖水,河水,地下水和污水的回收率分别为100.4%,95.2%,101.7%和92.4%。用本文提出的方法和吲哚酚蓝方法分析了两个湖水样品,结果表明这两种方法之间没有显着差异。与其他分光光度法测定氨氮相比,该方法的主要优点是简单,可靠,重现性好,样品通量高。

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