过硫酸铵消解As3+-Ce4+催化分光光度法测定尿中高浓度碘的低用量三氧化二砷方法

Ya-ping Zhang, Yan-hong Huang, Yueyue Yan, Na Li
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At the same time, improving the current standard method, the amount of arsenious acid solution was reduced from 0.100 moL/L H3AsO3 (containing NaCl 25 g/L) 2.5 ml to 0.025 mol/L H3AsO3(containing NaCl 40 g/L) 2.5 ml; amount of ceric ammonium sulfate solution was reduced from 0.076 mol/L 0.30 ml to 0.025 mol/L 0.50 ml; and photometric wavelength was changed from 420 nm to 380 nm. The new method was evaluated by standard curve linearity and linear range, sample detection precision, accuracy, and the results of urinary iodine were compared with those determined bycurrent standard method, and this new method was also tested of suitable combination of reaction temperature and reaction time of cerium arsenic in the temperature range of 20 - 30 ℃. Results The calibration relation of C =a + blgA (C: iodine concentration, A : measuring absorhance) in the new method existed when As3+- Ce4+ catalytic reaction was kept at a certain stable temperature range between 20 - 30 ℃ and in certain fixed reacting time. The linear range of the calibration curve was 300 - 1200 μg/L and the linear correlative coefficient was- 0.9999. The relative standard deviations(RSD) were 1.0%(3.2/330.3), 0.4%(2.0/517.3), 0.5%(3.9/712.6) and 0.9%(9.4/1042.3) when measuring urine samples with iodine concentration of 330.3, 517.3,712.6, and 1042.3 μg/L, respectively. The total average recovery was 98.3% with a range of 93.4% (186.8/200.0) - 101.5% (202.9/200.0) when measuring 4 urine samples containing different concentration of high iodine, and average recovery was 99.1% (148.6/150.0), 97.5% (195.0/200.0), 98.8% (395.3/400.0), and 98.2% (392.7/400.0),respectively. The test results of four urinary iodine standard materials were all within the given value range and the relative deviations(RD) were all < 2.0% at different test temperature, respectively. No significant difference was found between the results of the 16 urine samples containing high concentration of iodine determined by the new method and the current standard method (|t| =0.727, P > 0.05). The table of suitable combination of As3+-Ce4+ reaction temperature and reaction time for this method was obtained(such as 20 ℃ and 33 min, 25 ℃ and 25 min,30 ℃ and 19 min, etc). 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引用次数: 0

摘要

目的建立过硫酸铵消解As3+- ce4 +催化分光光度法测定尿中300 ~ 1200 μg/L高浓度碘的低用量三氧化二砷新方法,方便高碘地区尿碘监测,减少环境砷污染。方法按现行尿碘标准检测方法(WS/T 107-2006)消化校准器和尿样(各0.20 ml)。同时,对现行标准方法进行改进,将亚砷酸溶液的用量由0.100 moL/L H3AsO3(含NaCl 25 g/L) 2.5 ml减少到0.025 moL/L H3AsO3(含NaCl 40 g/L) 2.5 ml;硫酸铈铵溶液用量由0.076 mol/L 0.30 ml降至0.025 mol/L 0.50 ml;光度波长由420 nm变为380 nm。对新方法进行了标准曲线线性度和线性范围评价,并与现行标准法测定尿碘的精密度、准确度进行了比较,同时对新方法在20 ~ 30℃范围内反应温度和反应时间的适宜组合进行了测试。结果当As3+- Ce4+催化反应在20 ~ 30℃的稳定温度范围内,在一定的固定反应时间内,新方法中存在C =a + blgA (C:碘浓度,a:测量吸光度)的标定关系。校准曲线的线性范围为300 ~ 1200 μg/L,线性相关系数为- 0.9999。测定碘浓度为330.3、517.3、712.6、1042.3 μg/L时,相对标准偏差(RSD)分别为1.0%(3.2/330.3)、0.4%(2.0/517.3)、0.5%(3.9/712.6)、0.9%(9.4/1042.3)。4份不同浓度高碘尿液样品的总平均回收率为98.3%,范围为93.4%(186.8/200.0)~ 101.5%(202.9/200.0),平均回收率分别为99.1%(148.6/150.0)、97.5%(195.0/200.0)、98.8%(395.3/400.0)和98.2%(392.7/400.0)。4种尿碘标准材料在不同检测温度下的检测结果均在给定范围内,相对偏差(RD)均< 2.0%。新方法测定的16份高碘尿样与现行标准法测定结果无显著差异(|t| =0.727, P > 0.05)。得到了该方法适宜的As3+-Ce4+反应温度和反应时间组合表(如20℃- 33 min、25℃- 25 min、30℃- 19 min等)。结论该方法大大降低了废物中砷的含量,减少了污染,节省了试剂,操作简便,精密度和准确度较高,适用于尿液中高浓度碘的测定。关键词:碘;尿;分光光度法;砷
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Method with low usage amount of arsenic trioxide for measuring high concentration iodine in urine by As3+-Ce4+ catalytic spectrophotometry using ammonium persulfate digestion
Objective To establish a new method with low usage amount of arsenic trioxide for measuring 300 - 1200 μg/L high concentration iodine in urine by As3+-Ce4+ catalytic spectrophotometry using ammonium persulfate digestion, which would be convenient for monitoring urinary iodine in excessive iodine regions and to reduce environmental arsenic pollution. Methods Calibrators and urine samples(0.20 ml each) were digested according to the current standard detection method of urinary iodine(WS/T 107-2006). At the same time, improving the current standard method, the amount of arsenious acid solution was reduced from 0.100 moL/L H3AsO3 (containing NaCl 25 g/L) 2.5 ml to 0.025 mol/L H3AsO3(containing NaCl 40 g/L) 2.5 ml; amount of ceric ammonium sulfate solution was reduced from 0.076 mol/L 0.30 ml to 0.025 mol/L 0.50 ml; and photometric wavelength was changed from 420 nm to 380 nm. The new method was evaluated by standard curve linearity and linear range, sample detection precision, accuracy, and the results of urinary iodine were compared with those determined bycurrent standard method, and this new method was also tested of suitable combination of reaction temperature and reaction time of cerium arsenic in the temperature range of 20 - 30 ℃. Results The calibration relation of C =a + blgA (C: iodine concentration, A : measuring absorhance) in the new method existed when As3+- Ce4+ catalytic reaction was kept at a certain stable temperature range between 20 - 30 ℃ and in certain fixed reacting time. The linear range of the calibration curve was 300 - 1200 μg/L and the linear correlative coefficient was- 0.9999. The relative standard deviations(RSD) were 1.0%(3.2/330.3), 0.4%(2.0/517.3), 0.5%(3.9/712.6) and 0.9%(9.4/1042.3) when measuring urine samples with iodine concentration of 330.3, 517.3,712.6, and 1042.3 μg/L, respectively. The total average recovery was 98.3% with a range of 93.4% (186.8/200.0) - 101.5% (202.9/200.0) when measuring 4 urine samples containing different concentration of high iodine, and average recovery was 99.1% (148.6/150.0), 97.5% (195.0/200.0), 98.8% (395.3/400.0), and 98.2% (392.7/400.0),respectively. The test results of four urinary iodine standard materials were all within the given value range and the relative deviations(RD) were all < 2.0% at different test temperature, respectively. No significant difference was found between the results of the 16 urine samples containing high concentration of iodine determined by the new method and the current standard method (|t| =0.727, P > 0.05). The table of suitable combination of As3+-Ce4+ reaction temperature and reaction time for this method was obtained(such as 20 ℃ and 33 min, 25 ℃ and 25 min,30 ℃ and 19 min, etc). Conclusions This method greatly reduces the amount of arsenic in waste, reduces pollution, saves reagents, and this method is easier to be performed with better precision and accuracy, which is suitable for measuring high concentration of iodine in urine. Key words: Iodine;  Urine;  Spectrophotometry;  Arsenic
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来源期刊
中华地方病学杂志
中华地方病学杂志 我国对人类健康危害特别严重的地方性疾病:克山病、大骨节病、碘缺乏病、地方性氟中毒、地方性砷中毒、鼠疫、布鲁氏菌病、寄生虫、新冠肺炎等疾病,同时还报道多发性自然疫源性疾病。
CiteScore
1.60
自引率
0.00%
发文量
8714
期刊介绍: The Chinese Journal of Endemiology covers predominantly endemic diseases threatening health of the people in the areas affected by the diseases including Keshan disease, Kaschin-Beck Disease, iodine deficiency disorders, endemic fluorosis, endemic arsenism, plague, epidemic hemorrhagic fever, brucellosis, parasite diseases and the diseases related to local natural and socioeconomic conditions; and reports researches in the basic science, etiology, epidemiology, clinical practice, control as well as multidisciplinary studies on the diseases.
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