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Sensitivity Improvement of Ammonia Determination Based on Flow-Injection Indophenol Spectrophotometry with Manganese(II) Ion as a Catalyst and Analysis of Exhaust Gas of Thermal Power Plant

机译:锰离子(II)催化流动注射靛酚分光光度法测定氨的灵敏度的提高及火电厂废气分析

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The sensitivity improvement of a flow-injection spectrophotometric method for the determination of ammonia was examined based on an indophenol blue coloration reaction with salicylate and hypochlorite in the presence of manganese(II) as a reaction promotion catalyst. The optimal conditions for achieving higher sensitivity of ammonia determination were examined using a three-line flow system. The limit of detection corresponding to a signal-to-noise ratio (S/N) of 3 was 0.005 mg l-1 (≡ 5 ppb) of NH4+. A calibration graph was linear in the range from 5 ppb to 1000 ppb of ammonium ion. The relative standard deviations (n = 9) for 50 ppb and 100 ppb of ammonium ion were 6.4% and 2.2%, respectively. The proposed method was applied to the determination of ammonia in the exhaust gas of a thermal power plant. Prior to the FIA determination, ammonia in the exhaust gas was absorbed into a boric acid solution; the absorption solution was then analyzed by the proposed FIA.
机译:在锰(II)作为反应促进催化剂的条件下,以水杨酸盐和次氯酸盐与吲哚酚蓝显色反应为基础,研究了流动注射分光光度法测定氨的灵敏度的提高方法。使用三线流动系统检查了实现更高氨测定灵敏度的最佳条件。对应于3的信噪比(S / N)的检测极限为0.005 mg l-1(≡5 ppb)NH4 +。校准曲线在5 ppb至1000 ppb的铵离子范围内呈线性关系。 50 ppb和100 ppb铵离子的相对标准偏差(n = 9)分别为6.4%和2.2%。该方法用于火电厂废气中氨的测定。在进行FIA测定之前,废气中的氨被吸收到硼酸溶液中。然后,通过建议的FIA对吸收溶液进行分析。

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