首页> 外文期刊>Talanta: The International Journal of Pure and Applied Analytical Chemistry >Green analytical method for simultaneous determination of salinity, carbonate and ammoniacal nitrogen in waters using flow injection coupled dual-channel C4D
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Green analytical method for simultaneous determination of salinity, carbonate and ammoniacal nitrogen in waters using flow injection coupled dual-channel C4D

机译:使用流注射耦合双通道C4D同时测定水中盐度,碳酸盐和氨氮的绿色分析方法

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A flow injection analysis system (FIA) for the simultaneous determination of salinity, carbonate and ammoniacal nitrogen has been developed and reported in this paper. FIA incorporating membrane units was used, not only for the separation of the gaseous carbon dioxide and ammonia, but also for on-line dilution in the salinity measurement. The sample was injected via a 10-port valve with two sample loops. One loop was used for salinity and carbonate measurements and the second loop for ammoniacal nitrogen determination. A dual-channel capacitively coupled contactless conductivity detector was assembled in a single shielding box. Input voltage from the same AC power supply was fed to the input electrodes of both C4D cells. One channel of the C4D was used to monitor the change in conductivity of an acceptor stream that carried a zone of the water sample that has passed through the on-line dilution unit. Conductivity of this zone relates directly to the salinity of the sample. The same sample zone was next acidified to generate carbon dioxide gas that diffused through a hydrophobic membrane of the first gas diffusion (GD) unit. The zone of dissolved carbon dioxide in acceptor stream of water flowed into the same C4D cell as for the salinity measurement, but arriving at a later time. Concurrently, the second channel of the C4D monitored the change in conductivity of the acceptor stream in the second GD unit due to the diffusion of ammonia gas generated by the reaction of base with the sample injected from the second sample loop. The change in conductivity at this second C4D cell correlates with the concentration of ammoniacal nitrogen present in the sample. The proposed method is low cost, simple, rapid and sensitive. The limit of quantitation for salinity, carbonate and ammoniacal nitrogen are 0.31mmolL(-1), 1.85 mu mol L-1, respectively. Throughput of 20 samples h(-1) for simultaneous analysis can be achieved with RSD of less than 3.8%. The system had been applied to t
机译:本文开发并报道了用于同时测定盐度,碳酸盐和氨氮的流动注射分析系统(FIA)。使用膜单元的FIA,不仅用于分离气态二氧化碳和氨,还用于盐度测量中的在线稀释。通过具有两个样品环的10端口阀注入样品。一种环用于盐度和碳酸盐测量和第二回路用于氨氮测定。双通道电容耦合的非接触式电导检测器组装在单个屏蔽盒中。来自相同交流电源的输入电压被馈送到两个C4D细胞的输入电极。 C4D的一个通道用于监测承受通过在线稀释单元的水样的受体流的接受率的导电性的变化。该区域的电导率直接涉及样品的盐度。接下来酸化相同的样品区以产生通过第一气体扩散(GD)单元的疏水膜扩散的二氧化碳气体。溶解二氧化碳在受体水流中流入与盐度测量相同的C4D电池,但稍后到达。同时,C4d的第二通道由于碱基产生的氨气的扩散与从第二样品环中注入的样品产生的氨气的扩散而监测了第二GD单元中受体流的导电性的变化。该第二C4D细胞的电导率的变化与样品中存在的氨基氮的浓度相关。所提出的方法成本低,简单,快速敏感。盐度,碳酸盐和氨氮的定量限分别为0.31mMMMOLL(-1),1.85μmol1-1。 20个样品H(-1)的吞吐量可以通过小于3.8%的RSD来实现同时分析。该系统已应用于t

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