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Onboard Determination of Submicromolar Nitrate in Seawater by Anion-Exchange Chromatography with Lithium Chloride Eluent

机译:阴离子交换色谱-氯化锂洗脱液在船上测定海水中的亚微摩尔硝酸盐

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Ion-exchange chromatography using a high-capacity anion exchanger with UV detection was applied to the determination of nitrate in seawater. Major ions in seawater samples did not affect the peak shape and the retention time of the nitrate when an alkaline metal cation-chloride solution was used as an eluent at high concentrations (0.5 - 2 mol/l). At a wavelength of 220 nm, the peak of bromide was very small because of low absorption, while its separation from the nitrate peak was good at high concentrations. Among the eluents tested, lithium chloride gave the best separation of nitrate from bromide. It was estimated that the lithium ion had the least potential for ion-pair formation with nitrate, and its retention time was prolonged compared with the retention times when using other cations; with bromide and nitrite, such an effect was not observed. The results of shipboard seawater nitrate determination by our method in the South Pacific Ocean and Antarctic Sea showed good agreement with those by the conventional photometric method using continuous flow.
机译:使用具有紫外线检测功能的高容量阴离子交换剂进行离子交换色谱法测定海水中的硝酸盐。当使用碱金属阳离子-氯化物溶液作为高浓度(0.5-2 mol / l)的洗脱液时,海水样品中的主要离子不会影响硝酸盐的峰形和保留时间。在220 nm的波长下,由于吸收率低,溴化物的峰很小,而在高浓度时,它与硝酸盐峰的分离效果很好。在测试的洗脱液中,氯化锂能最好地将硝酸盐与溴化物分离。据估计,锂离子与硝酸盐形成离子对的可能性最低,与使用其他阳离子时相比,其保留时间延长了。对于溴化物和亚硝酸盐,则未观察到这种效果。用我们的方法在南太平洋和南极海中测定船上海水硝酸盐的结果与使用连续流的常规光度法测定的结果吻合良好。

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