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Application of chromatographic techniques in the analysis of total nitrosamines in water

机译:色谱技术在水中总亚硝胺分析中的应用

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摘要

The use of ozone, chloramine and chlorine dioxide for water treatment results in the formation N-nitrosamines in the treated water. These groups of chemicals and other nitrogen-containing compounds have been described as disinfection by-products (DBPs) which are known for their toxicity. Nitrosamines are a potential source of nitric oxide (NO) which can bind with metals present in the sample matrix leading to formation of metal – nitrosyl complexes and dissolved metals have the potential to increase the total nitrosamines in water. This phenomenon has not received the desired attention and determination of metal-nitrosyl complexes lack standard analytical technique. Chromatography linked to various detectors is the commonest of the techniques for nitrosamine analysis but it is beset with reduced sensitivity as a result of inappropriate choice of the column. Incidentally, chromatographic techniques have not been really adapted for the analysis of metal-nitrosyl complexes. Therefore, there is need for the survey of existing techniques vis-à-vis metal-nitrosamine analysis and to suggest possible areas for method optimization.
机译:将臭氧,氯胺和二氧化氯用于水处理会导致在处理过的水中形成N-亚硝胺。这些种类的化学物质和其他含氮化合物已被描述为消毒副产物(DBP),其毒性众所周知。亚硝胺是一氧化氮(NO)的潜在来源,它可以与样品基质中存在的金属结合导致形成金属-亚硝酰络合物,而溶解的金属则有可能增加水中的总亚硝胺。这种现象尚未引起人们的关注,金属-亚硝酰基配合物的测定缺乏标准的分析技术。与各种检测器相连的色谱是亚硝胺分析的最常用技术,但由于色谱柱选择不当,其灵敏度降低。顺便说一下,色谱技术尚未真正适用于分析金属-亚硝酰基配合物。因此,有必要针对金属亚硝胺分析对现有技术进行调查,并提出可能的方法优化领域。

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