首页> 外文期刊>Talanta: The International Journal of Pure and Applied Analytical Chemistry >Simultaneous determination of nanomolar nitrite and nitrate in seawater using reverse flow injection analysis coupled with a long path length liquid waveguide capillary cell
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Simultaneous determination of nanomolar nitrite and nitrate in seawater using reverse flow injection analysis coupled with a long path length liquid waveguide capillary cell

机译:反向流动注射分析-结合长程液体波导毛细管池同时测定海水中的亚硝酸盐和硝酸盐

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摘要

A reverse flow injection analysis (rFIA) method coupled with 1 m liquid waveguide capillary cell and spectrophotometric detection for simultaneous determination of nanomolar nitrite and nitrate in seawater was developed. The design of two analytical channels sharing the same detection system in the proposed method allowed the analysis of both nitrite and nitrate with single sample injection. Different strategies of reagent injection were investigated to obtain a higher sensitivity and a better peak shape. A dual-wavelength detection mode was chosen to eliminate the light source shifting and sample matrix interference. Experimental parameters were optimized based on a univariate experimental design and the matrix effect from seawater was preliminarily investigated. The proposed method had high sensitivity with detection limit of 0.6 nmol L~(-1) for both nitrite and nitrate. The linearity was 2-500 nmol L~(-1) for both analytes, and the upper limit could be extended by choosing a lower sensitivity detection wavelength. The analytical results of 26 surface seawater samples obtained with the proposed method showed good agreement with those using a reference method operated using an automated segmented flow analyzer. The proposed method could greatly minimize the trouble introduced by bubbles in the segmented flow analyzer. It also had the advantages of high precision and high sample throughput (nitrite and nitrate detected in triplicate; 5 h~(-1)). Compared to normal flow injection analysis, the rFIA method is superior due to its lower reagent consumption, less dispersion of sample, as well as higher sensitivity.
机译:建立了反向流动注射分析(rFIA)方法,结合1 m液体波导毛细管池和分光光度检测法,可同时测定海水中的纳摩尔亚硝酸盐和硝酸盐。所设计方法中两个共享相同检测系统的分析通道的设计允许一次进样即可分析亚硝酸盐和硝酸盐。对试剂注入的不同策略进行了研究,以获得更高的灵敏度和更好的峰形。选择了双波长检测模式以消除光源偏移和样本矩阵干扰。基于单变量实验设计优化了实验参数,并初步研究了海水对基质的影响。该方法灵敏度高,亚硝酸盐和硝酸盐的检出限均为0.6 nmol L〜(-1)。两种分析物的线性均为2-500 nmol L〜(-1),可以通过选择较低的灵敏度检测波长来扩展上限。用所提出的方法获得的26个地表海水样品的分析结果与那些使用自动分段流量分析仪的参考方法得到的结果吻合良好。所提出的方法可以极大地减少由分段流动分析仪中的气泡引起的麻烦。它还具有高精度和高样品通量的优势(一式三份地检测到亚硝酸盐和硝酸盐; 5 h〜(-1))。与常规流动注射分析相比,rFIA方法具有更低的试剂消耗,更少的样品分散以及更高的灵敏度,因此具有优越性。

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