Liquid Chromatography–High‐Resolution Mass Spectrometric Determination of Nitrite Ion Concentration in the Natural Water Resources

化学 亚硝酸盐 检出限 衍生化 甲酸 质谱法 化学电离 离子 色谱法 环境化学 分辨率(逻辑) 自来水 大气压化学电离 分析化学(期刊) 每个符号的零件数 离子源 选择性离子监测 水质 电离 污染
作者
Sai Krishna Ganji,Kalpana Talari,Rama Krishna Maloth,Satya Sri Dharmika Kanakala,Nagaraju Rajana,Satyanarayana Gnv,Nagaraju Maddala,Chemalamarri Chandrashekhar,Sunitha Reddy M,Vijayasarathi V. R. Upadhyayula
出处
期刊:Rapid Communications in Mass Spectrometry [Wiley]
卷期号:40 (16): e70101-e70101
标识
DOI:10.1002/rcm.70101
摘要

RATIONALE: Nitrite anion is among the highly reactive anions and converts the secondary amines to their corresponding carcinogenic N-nitroso metabolites in the human body. Nitrite ion is highly abundant in natural waters and enters the body mainly through the consumption of water and beverages. The concentration of nitrite ion varies according to the nature of the soil, habitat and pollution in various geographical locations. Hence, it is important to assess the quality of water using novel analytical techniques. METHODS: In the present work, the concentration of nitrite ion from the collected water samples was monitored by N-nitrosation reaction with 1,2,3,4-tetrahydroquinoline (THQ) followed by quantification by liquid chromatography-high-resolution mass spectrometry using atmospheric chemical ionization on octadecyl stationary phase using water:methanol (both contain 0.2% formic acid) gradient elution. The N-nitroso THQ levels were specifically monitored using high resolution selected ion monitoring. RESULTS: > 0.9996) and precision with a relative standard deviation less than 7% ranging from 3.2% to 6.2%. The water samples collected across 60 different areas showed nitrite ion concentrations ranging from 28.5 to 3177.0 ng/mL. CONCLUSION: The derivatization procedure adopted in the present method is rapid and converts THQ to a stable NTHQ derivative in a single step. The results showed that water samples collected from residential areas, oceans, and mountains had the highest nitrite ion concentration. However, the clean, continuously flowing waters showed the lowest contamination, as the river beds act as effective filters for nitrite anions; hence, the water collected from these regions might be relatively clean compared to other regions.

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