Spectrophotometric determination of trace amounts of nitrite based on the nitrosation reaction with N,N-bis(2-hydroxypropyl)aniline and its application to flow injection analysis
Shoji Motomizu, Shi Rui, Mitsuko Oshima, Kyoji Tôei
Abstract
Shoji Motomizu, Shi Rui, Mitsuko Oshima, Kyoji Tôei
Abstract
The spectrophotometric determination of nitrite using a new colour reagent was examined and was applied to the determination of nitrite by flow injection analysis (FIA). N,N-Bis(2-hydroxypropyl)aniline reacts with nitrite in an acidic medium to form a reddish product (λmax.= 500 nm), which gradually changes to a yellowish product (λmax.= 370 nm). The reddish product was used for the spectrophotometric determination of nitrite. The apparent molar absorptivity was about 2 × 104 l mol–1 cm–1. In FIA, the calibration graph was linear from 3 to 64 µg l–1 of nitrite-nitrogen, and the relative standard deviation for nine determinations was 0.7% when using a solution containing 16 µg l–1 of nitrite-nitrogen. The sampling rate was 50 h–1.
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The spectrophotometric determination of nitrite using a new colour reagent was examined and was applied to the determination of nitrite by flow injection analysis (FIA). N,N-Bis(2-hydroxypropyl)aniline reacts with nitrite in an acidic medium to form a reddish product (λmax.= 500 nm), which gradually changes to a yellowish product (λmax.= 370 nm). The reddish product was used for the spectrophotometric determination of nitrite. The apparent molar absorptivity was about 2 × 104 l mol–1 cm–1. In FIA, the calibration graph was linear from 3 to 64 µg l–1 of nitrite-nitrogen, and the relative standard deviation for nine determinations was 0.7% when using a solution containing 16 µg l–1 of nitrite-nitrogen. The sampling rate was 50 h–1.
Key concepts: Nitrite, Chemistry, Molar absorptivity, Reagent, Aniline, Spectrophotometry, Flow injection analysis, Nitrosation