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Spectrophotometric determination of low levels of bromate in drinking water after reaction with fuchsin

机译:与品红反应后分光光度法测定饮用水中低含量的溴酸盐

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A simple spectrophotometric procedure for the determination of trace levels of bromate in drinking water is described, which uses metabisulfite reduction to form bromine and reaction with reduced fuchsin to form a bromurated red coloured product absorbing at 530 nm, The present procedure is free of known interferences (Cl-, ClO3-, SO42-) Which affect other commonly used analytical techniques, such as ion chromatography, and thus require time consuming steps for separation with additional costs, Cationic interferences from heavy metals and major elements are removed by passage through a strong cationic resin (Na+ form), The sample is then mixed with a little volume of fuchsin solution decoloured with excess of metabisulfite in HCl medium and 1-2 ml of citrate buffer solution (pH 3.4), Bromate is converted to bromine by metabisulfite and subsequently reacts with fuchsin regenerating the quinoide structure absorbing at 530 nm, Maximum colour development occurs at about 26 min after reagent addition and absorbance is stable for at least 30 min, The response is linear up to 20 mu g l(-1) of bromate, The detection limit (propagation of errors approach) is 1 mu g l(-1) (40 mm path length) and the precision (short term relative standard deviation) is 6% at 5 mu g l(-1) level of bromate (n = 10), This method allows a low detection limit to be reached making it particularly attractive for accurate control of bromate level in drinking water in accordance to the European standard. [References: 11]
机译:描述了一种用于测定饮用水中痕量溴酸盐的简单分光光度法,该方法使用偏亚硫酸氢盐还原形成溴,然后与还原的品红反应,形成在530 nm处吸收的溴化红色产物。本方法不受已知干扰(Cl-,ClO3-,SO42-)会影响其他常用的分析技术(例如离子色谱法),因此需要耗时的步骤进行分离,但需要支付额外的费用,而重金属和主要元素的阳离子干扰可通过强阳离子树脂(Na +形式),然后将样品与少量的品红溶液混合,在HCl介质中用过量的亚硫酸氢盐脱色,并加入1-2 ml柠檬酸盐缓冲溶液(pH 3.4),溴酸根通过亚硫酸氢盐转化为溴与品红反应,再生在530 nm吸收的喹啉结构,最大的显色发生在反应素后约26分钟加入量和吸光度至少在30分钟内保持稳定,对溴酸盐的响应最大为20 mu gl(-1),检测极限(误差传播法)为1 mu gl(-1)(光程40 mm ),且在5μggl(-1)溴酸盐(n = 10)浓度下的精密度(短期相对标准偏差)为6%,此方法允许达到较低的检测限,因此对精确控制溴酸盐特别有吸引力饮用水水平符合欧洲标准。 [参考:11]

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