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首页> 外文期刊>Journal of the Korean Chemical Society >A Study on the Determination of N(NO2-), N(NO3-) and N(NH4+) in Environmental Samples by Flow Injection Analysis
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A Study on the Determination of N(NO2-), N(NO3-) and N(NH4+) in Environmental Samples by Flow Injection Analysis

机译:流动注射分析法测定环境样品中N(NO2-),N(NO3-)和N(NH4 +)的研究

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A rapid and sequential method was studied, which can determine nitrite, nitrate and ammonium ion in soil or water samples with flow injection analysis. Geometric factors including injection volume, length of the reaction coil and flow rate of carrier solution were investigated prior to sample measurement. Nitrite was determined at 540 nm by Griess reaction producing azo dye between N-(1-naphthylethylenediamine dihydrochloride) and sulfanilamide. Nitrate was also measured under the help of reduction mechanism toward nitrite with hydrazine. Ammonium was analyzed at 440 nm with Nessler's reagent. At the optimum condition, the detection limit(S/N=3) has been shown 0.1 §?/mL N(NO2-), 0.4 §?/mL N(NO3-) and 0.3 §?/mL N(NH4+) respectively. The results measured by colorimetry, ion chromatography and FIA were compared showing 80%-125% reasonable match each other. Injection throughput rate could be performed better than 30 times per hour.
机译:研究了一种快速连续的方法,该方法可以通过流动注射分析法测定土壤或水样中的亚硝酸根,硝酸根和铵离子。在样品测量之前,研究了几何因素,包括进样量,反应盘管的长度和载体溶液的流速。通过Griess反应在540nm处测定亚硝酸盐,该反应在N-(1-萘乙二胺二盐酸盐)和磺酰胺之间产生偶氮染料。硝酸盐还通过肼还原为亚硝酸盐的机理进行了测定。用Nessler试剂在440 nm处分析铵。在最佳条件下,检出限(S / N = 3)分别显示为0.1§?/ mL N(NO2-),0.4§?/ mL N(NO3-)和0.3§?/ mL N(NH4 +) 。通过比色法,离子色谱法和FIA测得的结果进行了比较,显示出80%-125%的合理匹配。进样吞吐速率可以每小时进行30次以上。

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