The analysis and evaluation of impurity contents in high purity nitrite is the basis of nitrite detection and the traceability of relevant reference materials. The high purity NaNO2 was selected as an example. The contents of impurity elements were determined by ion chromatography. The qualitative analysis showed that the main anionic impurities were Cl-, NO-3 and SO2-4. The contents of K, Ca and Mg were determined by inductively coupled plasma atomic emission spectrometry (ICP-AES). The contents of other cation impurity were determined by inductively coupled plasma mass spectrometry (ICP-MS). The results showed that the cation impurities mainly included B and Sr except for K, Ca and Mg. The linear correlation coefficients were all greater than 0.9990 for the tested impurities within the linear range. The limit of detection for Cl-, NO-3, SO2-4, K, Mg, Ca, B and Sr was 0.001%, 0.003%, 0.003%, 0.004%, 0.0009%, 0.00003%, 0.000015% and 0.0000074%, respectively. The contents of Cl-, NO-3, SO2-4, K, Ca, Mg, B and Sr in high purity NaNO2 were determined according to the experimental method. The relative standard deviations (RSD, n=10) of determination results were between 1.8% and 3.5%. The spiked recoveries were between 96% and 104%. The proposed method was applied to the determination of impurities in high purity NaNO2. The measured contents (mass fraction, similarly hereinafter) of Cl-, SO2-4, NO-3, K, Mg, Ca, B and Sr were 0.0054%, 0.037%, 0.033%, 0.02%, 0.0063%, 0.0035%, 0.00226% and 0.000268%, respectively. The proposed method could provide technical support for the determination and development of standard materials for nitrites. The developed reference materials could guarantee the traceability of nitrite.
徐春英,李玉中,李巧珍,等.山东潍坊地下水硝酸盐污染现状及δ15N溯源[J].生态学报,2011,31(21):6579-6587.XU Chun-ying,LI Yu-zhong,LI Qiao-zhen,et al.Nitrate contamination and source tracing from NO-3 δ15N in groundwater in Weifang,Shandong Province[J].Journal of Ecology,2011,31(21):6579-6587.
[3]
王树庆,范维江,张红平,等.水体中亚硝酸盐的来源与去除[J].食品与营养科学,2017,6(1):37-42.WANG Shu-qing,FAN Wei-jiang,ZHANG Hong-ping,et al.Origin and removal of nitrite in water[J].Hans Journal of Food and Nutrition Science,2017,6(1):37-42.
[4]
彭卫芳,凌志明,王学涛,等.亚硝酸盐测定方法的研究进展[J].中国卫生检验杂志,2007,17(8):1535-1536.PENG Wei-fang,LING Zhi-ming,WANG Xue-tao,et al.Research progress in the determination of nitrite[J].Chinese Journal of Health Laboratory Technology,2007,17(8):1535-1536.
[5]
刘新,刘霞,王爱萍,等.水中亚硝酸根离子标准物质的研制[J].化学分析计量,2018,27(5):6-10.LIU Xin,LIU Xia,WANG Ai-ping,et al.Preparation of reference material of nitrate ion in water[J].Chemical Analysis and Meterage,2018,27(5):6-10.
[6]
刘肖,蔡亚岐,牟世芬,等.超高含量氯离子基体下痕量亚硝酸盐的检测[J].分析试验室,2007,26(11):100-103.LIU Xiao,CAI Ya-qi,MOU Shi-fen,et al.Determination of trace nitrite in superhigh chloride matrix by ion chromatography[J].Chinese Journal of Analysis Laboratory,2007,26(11):100-103.
[7]
成霈,顾慧莹,刘温喜.离子色谱法同时测定饮用水中11种阴离子含量[J].分析试验室,2009,28(B12):127-130.CHENG Pei,GU Hui-ying,LIU Wen-xi.Simultaneous determination of 11 anions in drinking water by ion chromatography[J].Chinese Journal of Analysis Laboratory,2009,28(B12):127-130.
[8]
姬建生,高敬铭,符锋,等.抑制电导-离子色谱法同时测定肉制品中亚硝酸盐和硝酸盐[J].中国食物与营养,2010(10):50-52.JI Jian-sheng,GAO Jing-ming,FU Feng,et al.Simultaneous determination of nitrate in meat products by suppressed conductivity-ion chromatography[J].Food and Nutrition in China,2010(10):50-52.
[9]
陈永平,林黎明,宫庆礼,等.亚硝酸盐和硝酸盐检测方法的研究进展[J].分析试验室,2008,27(S1):193-198.CHEN Yong-ping,LIN Li-ming,GONG Qing-li,et al.Research progress of nitrite and nitrate detection methods[J].Chinese Journal of Analysis Laboratory,2008,27(S1):193-198.
刘红艳,宋秀环,朱慧.紫外分光光度法测定肉制品中亚硝酸盐[J].光谱实验室,2004,21(4):1120-1124.LIU Hong-yan,SONG Xiu-huan,ZHU Hui.Determination of nitrite in foods of meat by U spectrophotometry[J].Chinese Journal of Spectroscopy Laboratory,2004,21(4):1120-1124.
[12]
邱罡,陈宜菲.国内光度法测定亚硝酸根进展[J].光谱实验室,2010,27(3):900-905.QIU Gang,CHEN Yi-fei.Recent progress of photometric determination of nitrite in China[J].Chinese Journal of Spectroscopy Laboratory,2010,27(3):900-905.
[13]
刘茂祥,张树鹏,高娟娟,等.面向亚硝酸盐检测的电化学传感器[J].化学通报,2016,79(9):798-804.LIU Mao-xiang,ZHANG Shu-peng,GAO Juan-juan,et al.Review on sensitive electrochemical sensors for nitrite determination[J].Chemistry,2016,79(9):798-804.
[14]
黄海平,徐亮,岳亚锋,等.基于石墨烯量子点修饰电极的亚硝酸根电化学传感器[J].有色金属科学与工程,2017,8(2):47-51.HUANG Hai-ping,XU Liang,YUE Ya-feng,et al.Nitrite electro chemical sensor based on graphene quantum dots modified electrode[J].Nonferrous Metals Science and Engineering,2017,8(2):47-51.
[15]
叶小爱,章家立,关婷婷,等.二氧化锰/石墨烯/N-取代羧基聚苯胺复合修饰电极对亚硝酸根的电化学催化研究[J].分析测试学报,2018,37(1):39-44.YE Xiao-ai,ZHANG Jia-li,GUAN Ting-ting,et al.Electrocatalytic study of nitrite based on MnO2/rGO/NPAN composite film modified electrode[J].Journal of Instrumental Analysis,2018,37(1):39-44.
[16]
史乃婕,巢静波.离子色谱法测量硝酸根和亚硝酸根国际比对研究[J].分析实验室,2014,33(8):967-971.SHI Nai-jie,CHAO Jing-bo.Study on measurement of nitrate and nitrite by ion chromatography in international comparison[J].Chinese Journal of Analysis Laboratory,2014,33(8):967-971.