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基于 GC/LRMS 的分析方法研究韩国地表水的亚硝胺生成情况。

Nitrosamine occurrence at Korean surface water using an analytical method based on GC/LRMS.

机构信息

Busan Water Authority, Busan, Republic of Korea.

出版信息

Environ Monit Assess. 2013 Feb;185(2):1657-69. doi: 10.1007/s10661-012-2658-1. Epub 2012 May 9.

DOI:10.1007/s10661-012-2658-1
PMID:22569988
Abstract

The survey of nitrosamine occurrence at Korean surface water of Nakdong river is conducted in this study. For this purpose, the nitrosamine analytical method based on more affordable GC/LRMS (low resolution mass spectrometry) has been developed. According to the study results, six nitrosamine compounds (NDEA as N-nitrosomethylethylamine, NDPA as N-nitrosodi-n-propylamine, NDMA as N-nitrosodimethylamine, NMEA as N-nitrosomethylethylamine, NDBA as N-nitrosodi-n-butylamine, and NDPHA as N-nitrosodiphenylamine) were detected at the Nakdong river. Among these, NDEA and NDPA are the most important compounds in terms of the nitrosamine contamination of the Nakdong river. The detected concentration of NDEA exceeded the CDHCS (California Department of Health Care Services) response level of 100 ng/L at several sites. The detected concentration of NDPA approached the response level (500 ng/L) at a few sites. When all nitrosamine concentrations were summed up, the maximum concentration of 735.7 ng/L was detected at the Nakdong river. An equation describing a decrease in total nitrosamine concentration along downstream sampling sites was proposed in this study. The equation can be used to predict the downstream nitrosamine contamination at the Nakdong river. Among various water quality parameters, T-N showed a good correlation with total nitrosamine concentration.

摘要

本研究对韩国那川江地表水的亚硝胺生成情况进行了调查。为此,开发了一种基于更实惠的 GC/LRMS(低分辨质谱)的亚硝胺分析方法。根据研究结果,在那川江检测到六种亚硝胺化合物(NDEA 为 N-亚硝基甲基乙基胺、NDPA 为 N-亚硝基二正丙胺、NDMA 为 N-亚硝基二甲胺、NMEA 为 N-亚硝基甲基乙基胺、NDBA 为 N-亚硝基二正丁胺和 NDPHA 为 N-亚硝基二苯胺)。在这些化合物中,NDEA 和 NDPA 是那川江亚硝胺污染最重要的化合物。在几个地点,NDEA 的检测浓度超过了 CDHCS(加利福尼亚州卫生保健服务部)的 100ng/L 反应水平。在少数几个地点,NDPA 的检测浓度接近反应水平(500ng/L)。当所有亚硝胺浓度相加时,在那川江检测到的最大浓度为 735.7ng/L。本研究提出了一个描述总亚硝胺浓度随下游采样点降低的方程。该方程可用于预测那川江下游的亚硝胺污染。在各种水质参数中,T-N 与总亚硝胺浓度相关性较好。

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