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Determination of Ammonium in Seawater by Purge-and-Trap and Flow Injection with Fluorescence Detection

机译:捕集流动注射荧光法测定海水中的铵。

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An improved method for the determination of ammonium in seawater was established using purge-and-trap pretreatment coupled with flow injection fluorescence. An appropriate volume of sodium hydroxide was added to seawater to convert ammonium to gaseous ammonia that was purged from the solution to the vapor phase by argon at 350mL/min for 15min at 80 degrees C and trapped in hydrochloric acid. The solution was analyzed based on the fluorescence detection of the reaction product of o-phthaldialdehyde, sulfite, and ammonium. Parameters affecting the purge-and-trap efficiency and determination were optimized, and the matrix effects of seawater were investigated. The influence of primary amines and amino acids was tested and negligible effects were found. The detection limit was 7.4 nmol/L. The relative standard deviation was 4.4% for a seawater fortified with 200 nmol/L ammonium. Compared to the use of gas diffusion cell, this approach offers higher sensitivity, higher collection efficiency, and negligible effects from salinity. In addition, deionized water was used for standard preparation instead of matrix-matched standards.
机译:建立了吹扫捕集预处理-流动注射荧光法测定海水中铵的一种改进方法。将适量的氢氧化钠添加到海水中,以将铵转化为气态氨,然后在80摄氏度下通过350mL / min的氩气将其从溶液吹扫至气相,历时15分钟,然后捕集到盐酸中。基于邻苯二甲醛,亚硫酸盐和铵的反应产物的荧光检测分析溶液。优化了影响吹扫捕集效率和测定的参数,并研究了海水的基质效应。测试了伯胺和氨基酸的影响,发现影响可忽略不计。检出限为7.4 nmol / L。对于用200 nmol / L铵强化的海水,相对标准偏差为4.4%。与使用气体扩散池相比,该方法具有更高的灵敏度,更高的收集效率以及盐度的影响可忽略不计。此外,用去离子水代替基质匹配的标准液进行标准制备。

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